3.1 GENERAL
3.1.1 Purpose
The purpose of this chapter is to provide minimum standards for regulating and controlling the design, construction, installation, quality of materials, location, operation, maintenance and use of air-conditioning, heating and ventilation systems to ensure public health, safety and welfare.3.1.2 Scope
3.1.2.1
The provisions of this Code shall apply to erection, installation, alteration, repair, relocation, replacement, addition to, use and maintenance of any air-conditioning, heating and ventilation systems.3.1.2.2
Additions, alterations, repairs and replacement of equipment or systems shall comply with the provisions for new equipment and systems except as otherwise provided in Sec. 3.1.3.1.3.1.2.3
Where, in any specific case, different sections of this Code specify different materials, methods of construction or other requirements, the most restrictive one shall govern. Where there is a conflict between a general requirement and a specific requirement, the specific requirement shall be applicable.3.1.2.4
The regulations of this Code are not intended, and shall not be understood to permit violation of the provisions of other ordinances, regulations or official requirements in force.3.1.3 Application
It shall be unlawful to install, extend, alter, repair or maintain air-conditioning, heating and ventilation systems in or adjacent to buildings except in compliance with this Code.3.1.3.1 Existing Systems
a) Existing Installations: Air-conditioning, heating and ventilation systems in existence at the time of adoption of this Code may have their use, maintenance or repair continued if the use, maintenance or repair is in accordance with original design and location and no hazard to life, health or property has been created by such system. b) Additions, Alterations or Repairs: Additions, alterations or repairs may be made to any air-conditioning, heating or ventilation system without requiring the existing system to comply with all the requirements of this Code, provided the addition, alteration or repair conforms to the requirements of a new system. Additions, alterations or repairs shall not make an existing system unsafe, create unhealthily or overloaded conditions. c) Changes in Building Occupancy: Air-conditioning, heating and ventilation systems which are a part of any building or structure undergoing a change in use or occupancy, as defined in the Building Code, shall comply with all requirements of this Code which may be applicable to the new use or occupancy. d) Maintenance: All air-conditioning, heating and ventilation systems, materials and appurtenances, both existing and new, and all parts thereof shall be maintained in proper operating condition in accordance with the original design and in a safe and hazard free condition. All devices or safeguards which are required by this Code shall be maintained in conformance with this Code. The owner or the owner’s designated agent shall be responsible for maintenance of the systems and equipment. e) Moved Buildings: Air-conditioning, heating and ventilation systems or equipment which are a part of buildings or structures moved to another premises shall comply with the provisions of this Code for new installations.3.1.3.2 Alternative Materials and Methods of Construction
The provisions of this code are not intended to prevent the use of any material or method of construction not specifically prescribed by this Code, provided any such alternative material and/or method of construction has been approved and the use authorized by the Authority. The Authority shall require that sufficient evidence or proof be submitted to substantiate any claims made regarding the use of alternatives.3.1.3.3 Modifications
Whenever there are practical difficulties involved in carrying out any of the provisions of this Code, the Authority, within the limitations set forth in Part 2, may allow modifications for individual cases. The modifications shall be in conformity with the intent and purpose of this Code and that such modification shall not lessen health, life and fire safety requirements.3.1.4 Terminology
This section provides an alphabetical list of the terms used in and applicable to this chapter of the Code. In case of any conflict or contradiction between a definition given in this section and that in Part 1, the meaning provided in this section shall govern for interpretation of the provisions of this chapter. ABSORPTION: A process whereby a material extracts one or more substances present in an atmosphere or mixture of gases or liquids accompanied by the material’s physical and/or chemical changes. ABSORPTION REFRIGERATING SYSTEM: A refrigerating system in which refrigerant gas evaporated in the evaporator is absorbed in the absorber by an absorbent solution. This also includes a generator for separation of refrigerant from the absorbent solution, a condenser to liquefy the refrigerant and an expansion device. ADSORPTION: The action, associated with the surface adherence, of a material in extracting one or more substances present in an atmosphere or mixture of gases and liquids, unaccompanied by physical or chemical change. AIR CHANGE: Introducing new, cleansed, or recirculated air to conditioned space, measured by the number of complete changes per unit time. AIR TERMINALS: A round, square, rectangular, or linear air outlet or inlet device used in the air distribution system. AIR, OUTSIDE: External air; atmosphere exterior to refrigerated or conditioned space; ambient (surrounding) air. AIR, RECIRCULATED: The part of return air passed through the air-conditioner before being resupplied to the conditioned space. Also known as AIR, RETURN. AIR, RETURN: See AIR, RECIRCULATED. AIR-CONDITIONING: The process of treating air so as to control simultaneously its temperature, humidity, cleanliness and distribution to meet the requirements of the conditioned space. AIR-HANDLING UNIT: An equipment comprised of cooling and/or heating coil and a blower or fan with electric motor used for the purpose of cooling/heating and distributing supply air to a room, space or area. BLOWER: A fan used to force air under pressure. BOILER: A closed vessel in which a liquid is vaporized. BRINE: Any liquid cooled by the refrigerant and used for the heat transmission without a change in its state. This also includes chilled water. CHIMNEY: Primarily a vertical shaft enclosing at least one flue for conducting flue gases to the out-doors. COIL: A cooling or heating element made of pipe or tubing. CONDENSER (Refrigerant): A heat exchanger in which the refrigerant, compressed to a suitable pressure, is condensed by rejecting heat to an appropriate external cooling medium. CONTROL: Any device for regulating a system or component in normal operation, manual or automatic. COOLING TOWER: An enclosed device for evaporatively cooling water by contact with air. DAMPER: A device for regulating the flow of air or other fluid. DEHUMIDIFICATION: Condensation of water vapour from air by cooling below the dew point. DEW POINT TEMPERATURE: The temperature at which condensation of water vapour in a space begins for a given state of humidity and pressure as the vapour temperature is reduced; i.e. the temperature corresponding to saturation (100% relative humidity) for a given absolute humidity at constant pressure. DUCT SYSTEMS: An assembly of all ducts, duct fittings, dampers, plenums and fans to form a continuous passageway for the distribution of air. EVAPORATIVE AIR COOLING: The removal of sensible heat from the air by the adiabatic exchange of heat between air and a water spray or wetted surface, wherein the evaporating water absorbs the sensible heat of air. EVAPORATOR (Refrigerant): A heat exchanger in which liquid refrigerant, after reducing its pressure (expansion), is evaporated by absorbing heat from the medium to be cooled. FAN: An air moving device comprising a wheel or blade, and housing or orifice plate. FAN, TUBEAXIAL: A propeller or disc type wheel within a cylinder and including driving mechanism supports for either belt drive or direct connection. FILTER: A device to remove solid particles from a fluid. FIRE DAMPER: A closure which consists of a normally held open damper installed in an air distribution system or in a wall or floor assembly and designed to close automatically in the event of a fire in order to isolate the conditioned space from the fire zone. FIRE SEPARATION: A construction assembly that acts as a barrier against spread of fire and may not be required to have a fire resistance rating or fire protection rating. GLOBAL WARMING POTENTIAL: Global warming potential of a chemical compound is its relative contribution to global warming compared to CFC-11. HUMIDITY: Water vapour within a space. HUMIDITY, RELATIVE: The ratio of the partial pressure or density of the water vapour in the air to the saturation pressure or density, respectively, of water vapour at the same temperature. HYDRONIC: Of, relating to, or being a system of heating or cooling that involves transfer of heat by a circulating fluid (as water or vapour) in a closed system of pipes. INSULATION, THERMAL: A material having a relatively high resistance to heat flow and used principally to retard heat flow. MECHANICAL REFRIGERATION EQUIPMENT: A refrigerating system in which the gas evaporated in the evaporator is compressed by mechanical means usually by a compressor. This also includes condenser and expansion device. OVERALL HEAT TRANSFER COEFFICIENT (U): The time rate of heat transfer per unit area (normal to the flow) from the fluid on the warm side of a barrier to the fluid on the cold side, per unit temperature difference between the two fluids. OZONE DEPLETION POTENTIAL: Ozone depletion potential of a chemical compound is its relative contribution to the depletion of the ozone layer compared to CFC-11. PACKAGED AIR-CONDITIONER: An encased assembly as a self-contained unit primarily for floor mounting, wall mounting or ceiling mounting, designed to provide free delivery of conditioned air to an enclosed space, room or zone (conditioned space). It includes a prime source of refrigeration for cooling and dehumidification and means for the circulation and cleaning of air, with or without external air distribution ducting. It may also include means for heating, humidifying or ventilating air. These machines are equipped with a water cooled or air cooled condenser. For the purpose of this definition, a split air-conditioner for which the air cooled condenser or condensing unit is built as a separate package for remote field installation and interconnection unit is built as a packaged air-conditioner. PLENUM: An air compartment or chamber to which one or more ducts are connected and which forms part of an air distribution system. REFRIGERANT: The fluid used for heat transfer in a refrigerating system, which absorbs heat at a low temperature and a low pressure of the fluid and rejects heat at a higher temperature and a higher pressure of the fluid, usually involving changes of phase of the fluid. REHEATING: The process by which air, which has been cooled down in order to condense out part of the moisture it contains, is heated again in order to raise its temperature to a suitable level. RETURN AIR GRILLE: These are fittings fixed at the openings through which air is taken out from the air-conditioned enclosure by an air-conditioning plant or unit. ROOM AIR-CONDITIONER: A factory made, encased assembly designed as a self-contained unit primarily for mounting in a window or through the wall or as a console. It is designed to provide free delivery of conditioned air to an enclosed space, room or zone (conditioned space). It includes a prime source of refrigeration for cooling and dehumidification and means for the circulation and cleaning of air. It may also include means for heating, humidifying, ventilating or exhausting air. SUPPLY AIR DIFFUSERS/GRILLES: These are fittings fixed at the openings through which air is delivered into the air-conditioned enclosure by an air-conditioning plant or unit. TEMPERATURE, DRY BULB: The temperature of air as registered by a thermometer. TEMPERATURE, WET BULB: The temperature at which water, by evaporating into air, may bring the air to saturation adiabatically at the same temperature. Wet-bulb temperature (without qualification) is the temperature indicated by a wet bulb psychrometer constructed and used according to specifications. VENTILATION: The process of supplying and/or removing air by natural or mechanical means to or from any space. Such air may not have been conditioned.3.1.5 General Provisions
3.1.5.1
Air-conditioning, heating and ventilation system shall be designed, constructed and installed in accordance with good engineering practice such as described in the ASHRAE (American Society of Heating, Refrigerating and Air-conditioning Engineers) Handbooks, HRA (Heating, Refrigerating and Air-conditioning Institute of Canada) digest, HI (Hydraulic Institute of USA) manuals and IHVe (Institute of Heating and Ventilation Engineers, UK) Guide.3.1.5.2
All electrical work in connection with air-conditioning, heating and ventilation system shall be carried out in accordance with the provisions of latest Bangladesh Electricity Act and the provisions of any of its regulations and bye-laws, and shall also comply with the requirements of Chapter 2 of Part 8.3.1.5.3
All plumbing work in connection with air-conditioning, heating and ventilation system shall be carried out in accordance with the provisions of Chapter 6.3.1.5.4
All gas and fuel piping in connection with air-conditioning, heating and ventilation system shall be carried out in accordance with the provisions of Chapter 7 of Part 8.3.1.5.5
Fire Safety: Installations of equipment of air-conditioning, heating and ventilation system shall conform to the requirements of Part 4.3.2 PLANNING
3.2.1 General
3.2.1.1
All relevant aspects of air-conditioning, heating and ventilation system installations shall be analysed and evaluated properly during the planning stage of the building in order to determine the necessary provisions to be kept in the building for proper and safe installation of the system machinery, equipment and other facilities.3.2.1.2
Necessary particulars of electrical requirements of air-conditioning, heating or ventilation system shall be determined early in the planning stage to include it in the electrical provisions of the building.3.2.1.3
Where necessary, all plans, calculations, specifications and data for air-conditioning, heating and ventilation system serving all buildings and all occupancies within the scope of the Code shall be supplied to the Authority, for review purposes.3.2.2 Building Planning
3.2.2.1 Orientation of Building
Effect of orientation of building and arrangement of rooms/spaces shall be analysed in the planning stage of the building to find out the most effective plan of the building in terms of building use, application of air-conditioning, heating and ventilation system and reduction of energy consumption.3.2.2.2 Building Design and Use of Materials
Analysis shall be carried out in the design stage for selection of appropriate shading devices and other materials as set forth in Sec 3.3.1 so as to take advantage of reduction in energy consumption related air-conditioning, heating and ventilation system.3.2.2.3 Equipment Space
Requirements of space for erection and installation of air-conditioning, heating and ventilation system equipment and machinery (ducting, cooling, heating and air-conditioning equipment; refrigerating machinery, boiler etc.) shall be determined during the planning stage of the building so that it can be incorporated in the building planning effectively. Requirements of equipment/machinery space shall be determined taking consideration of actual equipment and machinery space: clearance space for operation, maintenance and fire prevention requirement; access space and other requirements of this Code. building plan shall also include adequate provisions for transportation of equipment and machinery to and from equipment/machinery room, installation of outdoor air inlets and exhaust air outlets.3.2.2.4 Building Structural Design
Structural design requirements for air-conditioning, heating and ventilation systems, bearing of pipe risers and duct risers; concrete ducts etc. shall be determined during the planning stage, as required by provisions in the structural design and to keep such provisions in the building. The structural design shall consider static and dynamic loads of equipment and machinery including distribution of machinery.3.2.2.5 Design Drawings
For the purpose of effective installation of air-conditioning, heating and ventilation system, working drawings showing layout of machinery, equipment, ducts, pipes etc., details of builders’ works, holes and/or punches in roof, floors, walls, supports for machinery/equipment etc. shall be prepared prior to finalization of building design drawings. Such drawings/documents shall be properly stored for future reference.3.3 AIR-CONDITIONING
3.3.1 Building Design Requirements
3.3.1.1 Glazing
a) Building design shall consider all the aspects for reduction of heat transfer through the glazing. Building orientation shall be such that, if possible, glazing in walls subject to direct and intensive sun exposure should be avoided. In case where it is not possible to do so, necessary protective measures shall be taken to reduce heat transfer through the glazing. Such protective measures may be in the form of sun breakers, double glazing, heat resistant glass or application of other shading devices. b) When sun breakers are used, it shall preferably be 1 m away from the wall face, with free ventilation, particularly from bottom to top, being provided for cooling of sun breakers and window by free convection. Conduction from sun breakers to main building shall be minimum. Sun breakers shall shade the maximum glazed area possible, especially for the altitude and azimuth angle of the sun. Sun breakers shall preferably be light and bright in colour so as to reflect back as much of the sunlight as possible. c) Where the above protection is in the form of reflective surfaces, adequate care shall be taken to avoid any hazard to the traffic surrounding the building and people on the road because of the reflected light from the surfaces. d) Application of any protection shall not restrict entry of light to a limit demanding artificial lights.3.3.1.2 Roof Insulation
Construction of exposed roofs shall be such that the heat transmission through the roof is not excessive. Where required the overall heat transfer coefficient (U) of the roof exposed to sun shall be reduced effectively by using appropriate construction materials and/or proper type of insulation material (s). The insulation shall be properly waterproofed to prevent loss of insulating properties.3.3.2 Design Conditions
3.3.2.1 Inside Design Conditions
a) For comfort air-conditioning, the inside design conditions shall be selected with an objective to reduce energy consumption in the operation of the air-conditioning system. Acceptable values of inside design conditions for summer are provided in Table 8.3.1. Unless otherwise specifically required, the design calculations shall be based on the normal practice values of Table 8.3.1. b) To avoid thermal shock, the difference between the dry bulb temperatures of outdoor air and indoor air shall not exceed 11°C. If it is absolutely necessary to have a difference more than 11°C, there shall have adequate provision for ante-room to reduce the effect of thermal shock. c) For air-conditioning systems other than comfort air-conditioning, design conditions required by the specific processes involved or applications may be adopted. When required proper protective measures shall be taken for persons working therein. d) Velocity of air in an air-conditioned space, in the zone between the floor level and the 1.5 m level, shall be within 0.12 m/s and 0.25 m/s for comfort applications for commercial buildings, and for other applications it shall not exceed 0.5 m/s. Table 8.3.1: Inside Design Conditions for Summera
Note: a The room design dry bulb temperature should be reduced when hot radiant panels are adjacent to the occupant and increased when cold panels are adjacent, to compensate for the increase or decrease in radiant heat exchange from the body. A hot or cold panel may be unshaded glass or glass block windows (hot in summer, cold in winter) and thin partitions with hot or cold spaces adjacent. Hot tanks, furnaces, or machines are hot panels.
b Temperature swing is above the thermostat setting at peak summer load conditions.
3.3.2.2 Outside Design Conditions
a) The outside design conditions for summer months for different cities are provided in Table 8.3.2. Selection of outside design conditions from this table shall be based on requirements of the application and the per cent of time the outside air temperature is allowed to exceed the outside design conditions. b) In case of stringent design conditions a meteorologist with experience in applied climatology may be consulted to evaluate conditions such as; the formation of heat sinks in urban areas; the duration of extreme temperatures; project sites located remotely from reporting stations. Table 8.3.2: Outside Design Conditions for Major Citiesa
Note: a This table has been prepared by statistical analysis of weather data of ten years, recorded three hourly by trained observers of Bangladesh Meteorological Department.
b The dry bulb temperatures presented represent values which have equalled or exceeded by 1%, 2.5%, and 5% of the total hours during the summer months of April though August. The coincident wet bulb temperatures listed with each design dry bulb temperature is the mean of all wet bulb temperatures occurring at the specific dry bulb design temperatures. These values shall be used for cooling load calculation.
c Mean daily range temperatures are the difference between the average daily maximum and average daily minimum temperatures during the warmest months at each station.
d Wet bulb temperatures presented represent values which have been equalled or exceeded by 1%, 2.5% and 5% of the total hours during the summer months of April through August. These values shall be used for selection of Cooling Tower and other similar equipment.
3.3.2.3 Ventilation Air
a) Every space served by the air-conditioning system shall be provided with outside fresh air not less than the minimum amount mentioned in Table 8.3.3. If adequate temperature regulation along with efficient filtration of air and absorption of odour and gas are provided, the amount of fresh air requirement may be reduced. However, in no case the outdoor air quantity shall be lower than 2.5 l/s per person. Table 8.3.3: Outdoor Air Requirements Outdoor Air Quantity (l/s per Person Unless Otherwise Indicated)
Note: a Return air shall be exhausted.
b Outdoor air quantity per m² of floor area.
c Installed capacity for intermittent use.
b) In hospital operation theaters, all outdoor air supply should be complemented to overcome explosion hazard of anesthetics and to maintain sterile condition. However, if adequate filtration with efficient absorption of anesthetics and laminar flow of supply air is provided, the outside air requirement may be substantially reduced. Recirculation of air shall comply with the requirements of Sec 3.7.3.6(b).
3.3.3 Noise and Vibration
3.3.3.1 General
Air-conditioning, heating and ventilation system design and installations shall consider all the aspects of noise and vibration control related to the system and shall conform to the requirements of Chapter 4. Selection and installation of equipment for air-conditioning, heating and ventilation system shall be in accordance with Sec 3.3.3.3.3.3.2 Equipment Room
Equipment room for installation of air handling units, refrigeration machinery, pumps, boilers, blowers and other equipment, shall produce sound and vibration. Such sound and vibration shall not perceptibly be located adjacent to any acoustically sensitive area. Location of the equipment room shall be such that direct transmission of noise and vibration from the equipment room to acoustically sensitive area do not occur. Where necessary, appropriately designed sound barriers shall be used to restrict transmission of noise from equipment room to any acoustically sensitive area. Similarly adequate measures shall be taken to restrict transmission of vibration from equipment room to other rooms.3.3.3.3 Selection of Equipment
Where possible, the equipment shall be selected which produce low sound power level consistent with the required performance and ensuring operation at maximum efficiency. If necessary noise levels shall be reduced by appropriate shrouding of the equipment. Equipment shall be so oriented that the noise will be radiated away from the likely areas of complaint.3.3.3.4 Noise Control
a) Air Ducts: Air ducts shall be so designed and installed to avoid any transmission of noise and vibration which may be picked up by the duct system from equipment room or adjoining rooms. Duct system shall not allow cross talk or noise transfer from one occupied space to another. Duct system shall be appropriately designed, constructed and installed to obtain adequate attenuation of noise required to maintain recommended noise level in the air-conditioned space. Duct construction and installation shall be such that drumming effect of duct walls and noise transmission through the duct walls can be minimized to approved level. b) Plenum Chamber: If required, properly designed plenum chamber, lined with approved sound absorbed material, and/or sound attenuators shall be used for attenuation of noise. c) Flow Control Devices: Air dampers and other flow control devices shall be so selected that noise generation do not exceed approved levels. d) Air Terminals: Air terminals shall be selected for the approved noise generation characteristics. e) Piping: Velocity of fluids in piping shall be so selected that noise generation do not exceed approved levels.3.3.3.5 Vibration Control
Appropriately designed vibration isolators shall be installed under the machinery to restrict vibration transmission to structures. Similarly vibration isolators shall also be used between a machinery and all pipe work and duct work including the supports when applicable.3.4 AIR DISTRIBUTION SYSTEM
3.4.1 Duct Work
3.4.1.1 General
a) Supply air, return air and outside air for air-conditioning, heating and ventilation systems shall be conducted through duct systems. Ducts and plenums shall be of independent construction or shall be formed by parts of the building structure. b) Supply and return air plenums shall be limited to uninhabited crawl spaces, areas above a ceiling or below the floor, or attic spaces. Plenums shall be limited to one fire area. Fuel-fired equipment shall not be installed within a plenum. Venting systems and exhaust ducts shall not be extended into or through ducts or plenums. c) Prohibited Use: Exits and exit access corridors shall not be used as supply or return air ducts or plenums. Exception: The restriction on the use of the space between the corridor ceiling and the floor or roof structure above as return air plenum shall not apply when the corridor is not required to be of fire resistance rated construction or is located within a dwelling unit. d) Flood Proofing: For building located in a flood hazard zone, plenum spaces shall be either placed above the base flood elevation or protected so as to prevent water from entering or accumulating within the plenum space during floods up to the base flood elevation.3.4.1.2 Material
a) All ducts, duct connectors, associated fittings and plenums used to convey supply air, return air, and outdoor air for air-conditioning, heating and ventilation system shall be constructed of steel, aluminum alloy or some other approved metal. Ducts, plenums and fittings may be constructed of concrete, clay or ceramics when installed in the ground or in a concrete slab, provided the joints are tightly sealed. b) When gypsum products are exposed in ducts or plenums, the air temperature shall neither be higher than 52°C and the moisture content shall be controlled so as not to adversely affect the material. Gypsum products shall not be exposed in ducts serving evaporative coolers.3.4.1.3 Combustibles within Ducts or Plenums
Plenums shall be constructed with non-combustible materials. Materials exposed within ducts or plenums shall have a flame spread index of not more than 25 and smoke developed rating of not more than 50 when tested in accordance with ASTM E84. Exceptions: i) Return air and outside air ducts, plenums and concealed spaces which serve a dwelling unit may be of combustible construction. ii) Air filters serving dwelling unit. iii) Air filters used as water evaporation medium in an evaporative cooler. iv) Charcoal filters when protected with an approved fire suppression system. v) Exposed electric cables installed in concealed space used as plenums exhibit a flame propagation of not more than 1.5 m and products smoke having a peak optical density not greater than 0.5 and average optical density not greater than 0.15 when tested in accordance with UL1910. vi) Nonmetallic fire sprinkler piping in the plenum exhibit a flame propagation of not more than 1.5 m and shall produce smoke having a peak optical density not greater than 0.5 and average optical density not greater than 0.15 when tested in accordance with UL1820.3.4.1.4 Duct Construction
a) Ducts shall be of square, rectangular, round or oval cross-section. Construction of required size of duct shall be as per good practice described in ASHRAE Handbooks and SMACNA (Sheet Metal and Air-conditioning Contractors’ National Association, USA) duct construction standards. b) Bends of duct systems shall be made substantially airtight by means of tapes, mastics, gasketing or other means and shall have no opening other than those required for proper operation and maintenance of the system. Access openings shall be provided in the duct system for periodic cleaning of the system. Removable grilles requiring only the loosening of catches or screws for removal may be considered as access openings. Walk in access doors shall be so constructed that the door may be readily opened from the inside without the use of keys. c) Vibration isolators installed between equipment and metal ducts (or casings) or between two sections of the ducts where ducts cross sliding expansion joint, shall be made of an approved flame retardant fabric or shall consist of sleeve joints with packing of approved material having flame spread rating of not more than 25 and a smoke developed rating of not more than 50 when tested in accordance with ASTM E84. Vibration isolation connectors constructed of fabric shall not exceed 250 mm in length.3.4.1.5 Duct Coverings
a) Supply and return air ducts and plenums of a cooling or heating system shall be insulated with approved quality insulating material of adequate thickness required as per location of the duct system and temperatures of air inside and around the duct system. Insulation shall be of such quality and thickness to prevent the formation of condensation on the exterior or interior walls of any duct. b) Materials used within the ducts and plenums for insulation, sound absorption or other purposes shall have a high humidity and erosion resistant face that meets the requirements of accepted standards. These materials when exposed to air velocities within the ducts in excess of 10 m/s shall be fastened with both adhesive and mechanical fasteners, and exposed edges shall have adequate treatment to withstand the operating velocity. c) Duct coverings, duct linings, vapour barrier facings, tapes, adhesives used in duct system shall have a flame spread index not higher than 50 and a smoke development rating no higher than 50 when tested as a composite installation. Exceptions: i) Duct coverings shall not be required to meet these requirements where they are located entirely outside of the building, do not penetrate a wall or roof, and do not create an exposure hazard. ii) Duct coverings having a flame spread index not exceeding 50 and a smoke density not greater than 100 may be used in dwelling or apartment houses where the duct system serves not more than one dwelling unit. d) Duct coverings, linings, including associated tapes and adhesives shall be interrupted at least 1 m from heat source in a duct system such as electric resistance heaters, fuel burning heaters or furnaces and at the area of a fire damper or fire door, where the duct penetrates a fire separation. Interior insulation and acoustical linings shall be placed so as not to interfere with positive closing of fire dampers or other closures. e) Service openings shall not be concealed.3.4.1.6 Duct Installation
a) An air distribution system shall be designed and installed as per good practice described in ASHRAE Handbooks and SMACNA Handbooks to meet the requirements of proper distribution of air as per provisions of this Code. The installation of an air distribution system shall not affect the fire protection requirements specified in this Code. b) Ducts and all parts of the duct system shall be substantially supported and securely fastened to the structural members of the building with approved devices of noncombustible material designed to carry the required loads. Duct supports shall not lessen the fire protections of structural members. Ducts shall be braced and guyed to prevent lateral or horizontal swing. c) Hangers shall have sufficient strength and durability to properly and safely support the duct work. Hangers shall have sufficient resistance to the corrosive effect of the atmosphere to which they will be exposed. Hangers shall not be used in direct contact with a dissimilar metal that would cause galvanic action in the hanger, duct, fasteners, or structure. d) Ducts shall not be hung from or supported by suspended ceilings. e) Metal ducts shall not usually be installed within 100 mm of the ground. Metal ducts not having an approved protective coating, when installed in or under concrete slab shall be encased in at least 50 mm of concrete. Metallic ducts having an approved protective coating and nonmetallic ducts shall be installed in accordance with the manufacturer’s installation instructions. f) When ducts penetrate any masonry wall, it shall either be lined with felt to isolate it from the masonry, or an air gap shall be left around it. g) All underground ducts located in a flood hazard zone shall be capable of resisting hydrostatic and hydrodynamic loads and stresses, including the effects of buoyancy, during the occurrence of flooding to the base flood elevation. h) Ducts installed in locations where they are subject to mechanical damage by vehicles or from other causes shall be protected by approved barriers.3.4.1.7 Fire Damper
a) Fire dampers shall be provided at locations where air distribution systems penetrate assemblies that are required to be fire resistance rated by this Code. Exceptions: Fire dampers are not required in the following cases: i) Where an exhaust duct penetrates a fire resistance rated shaft wall and the subduct extends not less than 560 mm vertically upward. ii) All penetrations of tenant separation and corridor walls in buildings equipped throughout with an automatic sprinkler system installed in accordance with the Building Code. iii) Where the ducts are constructed of steel and are part of an engineered smoke removal system. iv) At penetration of corridor walls where the ducts are constructed of steel and do not have openings which communicate the corridor with adjacent spaces or rooms. v) At penetrations of a roof assembly where ducts are open to the atmosphere. vi) In hazardous exhaust systems. vii) Where ceiling dampers are installed in accordance with the building code. viii) In garage exhaust or supply shafts which are separated from all other building shafts by not less than 2-hour fire resistance rated fire separation assembly. ix) In ducted air-conditioning, heating and ventilation systems penetrating walls with a 1 hour fire resistance rating or less. Where fire dampers will interfere with the operation of the smoke control systems, approved alternative protective devices shall be utilized. b) Fire dampers shall comply with UL555 and bear the label of an approved agency. Fire dampers shall be installed in accordance with the manufacturing installation instructions. c) Fire dampers shall be accessible. Suitable openings with tightly fitted covers shall be provided to make fire dampers accessible for inspection and this shall be large enough to permit maintenance and resetting of the damper. d) Ductwork shall be connected to fire damper sleeves or assemblies in such a way that collapse of the ductwork will not dislodge the damper.3.4.1.8 Automatic Shutoff
a) Each single air distribution system providing air-conditioning, heating or ventilation air in excess of 1000 l/s in Group A, Division 5; Group B; Group C; Group D; Group E, Division 1, 2 and 3; Group F, Division 1, 2 and 3; and Group H occupancies shall be equipped with an automatic shutoff provision activated by smoke detectors. When the system serves more than one occupancy, automatic shutoff shall be provided. Exceptions: i) Automatic shutoff need not be installed when all rooms have direct exit to the exterior of the building. ii) Automatic shutoff need not be installed in systems specifically designed for smoke control. b) Smoke Detection: Smoke detectors required by Sec 3.4.1.8(a) shall be installed in the main return-air duct ahead of any outside air inlet or they may be installed in each room or space served by the return air duct. Detectors shall also be installed in the supply duct, downstream of the filters. Activation of any detector shall cause the air moving equipment to automatically shut down.3.4.2 Air Terminals
3.4.2.1 Registers, Grilles and Diffusers
Supply air registers, grilles and diffusers; and return air grills shall be installed in accordance with the manufacturer’s installation instructions. Selection and installation of registers, grilles and diffusers shall comply with the requirements of air distribution system.3.4.2.2 Ventilating Ceilings
Perforated ceilings may be used for air supply except in exit corridors which are required to be of fire resistive construction. Ceiling material shall be of Class-I flame spread classification on both sides in accordance with requirements of this Code. All wiring shall be in enclosures regardless of the voltage carried. Suspended ventilating ceiling supports shall be of non combustible materials.3.4.2.3 Visual Duct Openings
Duct openings in bathrooms, toilets and changing rooms shall prevent visual observation from adjoining rooms.3.4.2.4 Capped Opening
All duct openings shall be capped during construction.3.4.2.5 Return Air Intake and Outside Air Intake
Return air and outside air intake openings shall be located in accordance with the requirements of Sec 3.5.2.7 (b).3.4.2.6 Exhaust Openings
Outside exhaust openings shall be located so as not to create nuisance. Exhaust air shall not be directed onto walkways.3.4.2.7 Opening Protection
Outside air intake and exhaust openings shall be protected with corrosion-resistant screens, louvers or grilles. Openings shall have provision to prevent back draft under wind conditions. Exhaust openings shall have provision to prevent back draft under wind conditions.3.4.3 Exhaust Air Systems
3.4.3.1 General
a) Exhaust air systems serving kitchens or toilets and/or bathrooms shall be independent exhaust systems and shall not be combined with exhaust air ducts serving other areas, except at immediately before the point of final delivery to the outside, such as at the base of a roof ventilator or when all interconnected systems are equipped with suitable back pressure devices to prevent passage of odours from one system to another when the fan is not in operation. b) Exhaust ducts shall have provision for removal of condensates where this may be a problem, such as for swimming pools and shower exhausts and for these applications duct joints shall be water tight. c) Construction and installation of exhaust air ducts for toilet, bathrooms and swimming pools shall be in accordance with the provisions of Sec 3.4.1. d) Design, construction and installation of exhaust air systems for exhaust of harmful and hazardous gases and industrial/process exhaust gases shall be in accordance with the provisions of Sec 3.7.4. e) Design, construction and installation of kitchen exhaust system shall be in accordance with the provisions of Sec 3.7.5.3.5 AIR-CONDITIONING EQUIPMENT
3.5.1 General
3.5.1.1 Scope
Air-conditioning, heating and ventilation equipment shall conform to the requirements of this Code. Equipment shall not be installed or altered in violation of this Code. Defective materials or parts shall be replaced in such a manner as not to invalidate any approval.3.5.1.2 Approval
When required each appliance shall be approved by the building official for safe use or comply with approved nationally recognized standard. For this purpose installers shall furnish satisfactory evidence that the appliance is constructed in conformity with the requirements of this Code. The permanently attached label of an approved agency may be accepted as such evidence.3.5.1.3 Labelling
All mechanical equipment and appliances shall bear permanent and legible factory applied name plate on which shall appear construction and operation data including safety requirements.3.5.1.4 Testing
Where required an approved agency shall test a representative sample of the mechanical equipment or appliance being labelled to the standard or standards pertinent to the equipment or appliance. The approved agency shall maintain a record of all tests performed. The records shall provide sufficient detail to verify compliance with the test standard.3.5.1.5 Equipment Installation
a) General: Mechanical equipment and appliances shall be installed in accordance with the manufacturer’s installation instructions for the labelled equipment. Connections to mechanical equipment or appliances, such as fuel supply, electrical, hydronic piping, vent and ducts shall conform to the requirements of this Code.3.5.1.6 Access
All mechanical equipment and appliances shall be accessible for inspection, service, repair and replacement without removing permanent construction. Unless otherwise specified not less than 750 mm of working space and platform shall be provided to service the equipment or appliance. Appliance controls, gauges, filters, blowers, motors and burners shall be accessible. The operating instructions shall be clearly displayed near the appliance where they can be read easily.3.5.1.7 Location
a) Remote Location: Where an appliance is located in a remote location, a walkway having a minimum width of 600 mm shall be provided, leading from the access opening to the appliance. b) Hazardous Location: Appliances installed in garages, warehouses, or other areas where they may be subject to mechanical damage shall be installed behind suitable protective barriers or at a suitable height above the floor or located out of the normal path of vehicles to guard against such damages. Air-conditioning or heating equipment located in a garage and which generates a glow, spark or flame capable of igniting flammable vapours shall be installed in such a way that the pilots and burners or heating elements and switches are at least 450 mm above the floor level. Where such appliances installed within a garage are enclosed in a separate approved compartment having access only from outside of the garage such appliances may be installed at floor level, provided the required combustion air is taken from and discharged to the exterior of the garage. Heating equipment located in rooms where cellulose nitrate plastic or other explosive materials are stored or processed shall comply with the requirements of Part 4. c) Outdoor Installation: Mechanical equipment and appliance located outdoors shall be approved for outdoor installation. Mechanical equipment and appliances installed outdoors shall conform to the requirements of Sec 3.5.1.5. Where appliances are located within 3 m of a roof edge or open side of a drop greater than 600 mm, guards shall be provided. Height of the guard shall be a minimum of 900 mm and a maximum of 1050 mm above the surface. Equipment that are located outdoors and may be adversely affected by sun and/or water shall be adequately protected. Access shall be possible under all weather conditions. All outdoor installed equipment shall be so located that the sound level shall not be more than 65 dB when measured anywhere on the property boundary line.3.5.1.8 Electrical Installations
a) Equipment regulated by this code requiring electrical connections of more than 50 volts shall have a positive means of disconnect adjacent to and in sight from the equipment served. A 230 volt AC grounding type receptacle shall be located within 8 m of the equipment for service and maintenance purposes. The receptacle need not be located on the same level as the equipment. Low voltage wiring of 50 volts or less within a structure shall be installed in a manner to prevent physical damage. b) Permanent lighting shall be provided to illuminate the area in which an appliance is located. For remote locations, the light switch shall be located near the access opening leading to the appliance. Exceptions: Lighting fixtures need not be installed when the fixed lighting for the building will provide sufficient light for safe servicing of the equipment.3.5.2 Cooling Equipment
3.5.2.1 General
a) Scope: All cooling system and equipment using refrigerant coils, chilled water coils and brine coils shall conform to the requirements of this section and to the applicable requirements of Sec 3.5.1 and 3.6. b) Use of Group 2 Refrigerants: Direct refrigerant systems containing Group 2 refrigerants shall not serve an air-cooling or air-conditioning system used for human comfort.3.5.2.2 Installation
a) Clearance From Ground: When cooling equipment other than ducts and piping is suspended from the under floor construction, a clearance of at least 150 mm shall be provided between the base of the equipment and the ground. b) Exterior Wall Installation: All equipment mounted on exterior wall at a height of 6 m or more above the ground shall be provided on a platform not less than 750 mm in depth, with 1 m high handrails on operation and control side of the equipment. The platform shall be accessible through catwalk not less than 450 mm wide and handrail of 1 m high from inside the building or from roof access. Exceptions: Equipment located on exterior wall but removable from inside may not require platform and catwalk.3.5.2.3 Access
a) Cooling Units: Except for piping, ducts and similar equipment that does not require servicing or adjusting, an unobstructed access and passageway not less than 600 mm in width and 2 m in height shall be provided to every cooling units installed inside buildings. Exception: The access opening to a cooling unit located in an attic space may be reduced to 750 mm in length and width, provided the unit can be replaced from this opening or another opening into this space or area. b) Attic or Furred Space Installation: Access to and working platforms for cooling units or cooling system compressors located in an attic or furred space shall be provided with a solid continuous flooring not less than 600 mm in width from the access opening to the required working space and platform in front of the equipment when access opening is located more than 1 m away from working space. c) Filters, Fuel Valves and Air Handlers: An unobstructed access space not less than 600 mm in width and 750 mm in height shall be provided to filters, fuel control valves and air handling units. Refrigerant, chilled water and brine piping control valves shall be accessible. Exception: An access opening from the unobstructed access space which opens directly to such equipment may be reduced to 375 mm in the least dimension if the equipment can be serviced, repaired and replaced from this opening without removing permanent construction. d) Refrigeration Machinery Room Installations: Access to equipment located in a refrigeration machinery room shall comply with Sec 3.6. e) Roof or Exterior Wall Installation i) Equipment installed on the roof or on an exterior wall shall be accessible under all weather conditions. A portable ladder or other portable temporary means may be used for access to equipment located on the roof, or on exterior wall of a single-storey portion of the building. ii) Platform: When the roof has a slope greater than 4 in 12 a level working platform at least 750 mm in depth shall be provided along the control or servicing sides of the unit. Sides of a working platform beside the roof edge below shall be protected by a substantial railing of minimum 1 m in height with vertical rails not more than 525 mm apart, except that parapets at least 600 mm in height may be utilized in lieu of rails or guards. iii) Catwalk: On roofs having slopes greater than 4 in 12, a catwalk at least 400 mm in width with substantial cleats spaced not more than 400 mm apart shall be provided from the roof access to the working platform at the appliance.3.5.2.4 Working Space
Equipment requiring access thereto, as specified in Sec 3.5.2.3, shall be provided with an unobstructed space on the control or servicing side of the equipment of not less than 750 mm in depth and 2 m in height. Working space for equipment located in a machinery room shall comply with Sec 3.6. Exception: The height of the working space may be reduced to 750 mm for an air handling unit, air filter or refrigerant, chilled water piping and brine piping control valves.3.5.2.5 Lighting in Concealed Spaces
When access is required to equipment located in an under floor space, attic or furred space, a permanent electric light outlet and lighting fixture shall be installed in accordance with Sec 3.5.1.8(b).3.5.2.6 Condensate Control
When a cooling coil or cooling unit is located in the attic or furred space where damage may result from condensate overflow, an additional water tight pan of corrosion resistant metal shall be installed beneath the cooling coil or unit to catch the overflow condensate due to clogged primary condensate drain, or one pan with a standing overflow and a separate secondary drain may be provided in lieu of the secondary drain pan. The additional pan or the standing overflow shall be provided with a drain pipe, minimum 19 mm nominal pipe size, discharging at a point which can be readily observed. This requirement is in addition to the requirements for condensate waste piping set forth in Sec 3.5.1.9.3.5.2.7 Return Air and Outside Air
a) Source: A cooling unit shall be provided with outside air, return air, or both. Cooling systems regulated by this Code and designed to replace required ventilation shall be arranged to deliver into the conditioned space not less than the amount of outside air specified in Building Code. b) Prohibited Sources: The outside air or return air for a cooling system or cooling unit shall not be taken from the following locations: i) Closer than 3 m from an appliance vent outlet, a vent opening or a plumbing drainage system or the discharge outlet of an exhaust fan, unless the outlet is 1 m above the outside air inlet. ii) Where it will pick up objectionable odours, fumes or flammable vapours; or where it is less than 3 m above the surface of any abutting public way or driveway; or where it is in a horizontal position in a street, alley or street, alley or driveway. iii) A hazardous or insanitary location or a refrigeration machinery room; iv) An area the volume of which is less than 25 per cent of the entire volume served by such system, unless there is a permanent opening to an area the volume of which is equal to 25 per cent of the entire volume served. v) A room or space having any fuel burning appliances therein, except when 75 of the conditioned air is discharged back into the same room or space and air inlets are not located within 3 m of firebox or draft diverter of fuel burning appliance and the room has a volume exceeding 1 m3 for each 100 watts fuel input rate of all fuel burning appliance therein. vi) A closet, bathroom, toilet or kitchen. c) Return Air Limitation: Return air from one dwelling unit shall not be discharged into another dwelling unit through the cooling system.3.5.2.8 Air Velocity
Cooling systems shall be designed and constructed so that velocity through filters does not exceed the filter manufacturer’s recommendation.3.5.2.9 Screen
Required outside air inlets shall be covered with screen having 6 mm openings. Exception: An outside air inlet serving a nonresidential portion of a building may be covered with screen having opening larger than 6 mm but not larger than 25 mm.3.5.2.10 Duct System
If ducts are required for circulation of air, the duct system shall be constructed and installed in accordance with Sec 3.4.1. Selection and installation of registers, diffusers and grilles shall conform to the requirements of Sec 3.4.2.3.5.3 Evaporative Cooling
3.5.3.1 General
a) Scope: Where possible evaporative cooling system may be installed. Evaporative cooling systems shall comply with this section. b) Outside Air: Evaporative cooling system shall be provided with outside air as specified in Sec 3.5.2.73.5.3.2 Location
Evaporative cooler shall normally be installed outdoor. It may be installed indoor if duct is provided between cooler and outside air intake. Evaporative cooling systems shall be installed in a manner to minimize the probability of damage from an external source.3.5.3.3 Access
Evaporative coolers shall be accessible for inspection, service and replacement without removing permanent construction.3.5.3.4 Installation
An evaporative cooler supported by the building structure shall be installed on a substantial level base and shall be secured directly or indirectly to the building structure by suitable means to prevent displacement of the cooler. An evaporative cooler supported directly by the ground shall rest on a level concrete slab. The upper surface of the concrete slab shall not be less than 75 mm above the adjoining ground level. An evaporative cooler supported on an above ground platform shall be elevated at least 150 mm above the adjoining ground level. Openings in the exterior walls shall be flushed in an approved manner in accordance with this code.3.5.4 Heating Equipment
3.5.4.1 General
a) Scope: Provisions of this section shall apply to all electric, hot water or steam air heating systems. b) Outside Air: Heating system shall be provided with outside air as specified in Sec 3.5.2.7. c) Air Ducts: Air ducts for heating systems shall comply with the applicable provisions of Sec 3.4.1.3.5.4.2 Location
a) Steam shall not be used in heating coil of air handling unit when it is located inside the building but not installed in a machinery room. b) All fuel burning equipment such as boilers shall not be installed inside a building and shall be installed inside a machinery room. c) Appliances generating a glow, spark or flame capable of igniting flammable vapours shall not be located in places where such vapours exist.3.5.4.3 Access
All appliances shall be accessible for inspection, services, repair and replacement without removing permanent construction. An unobstructed working space of not less than 750 mm in width and 1250 mm in height shall be provided on control and servicing side(s) of the appliance.3.5.4.4 Installation
All heating appliances shall be installed as per applicable provisions of Sec 3.5.1.5.3.5.4.5 Controls
a) In case of air-conditioning plants where heating or reheating is required, a safety device shall be incorporated in the installation to cut off automatically the source of heating, such as steam, hot water or electricity by means of a suitable thermostat or some other device, as soon as the temperature of the room reaches a predetermined level not exceeding 44°C, unless a higher temperature is required for an industrial process carried out in the air-conditioned enclosure. In no case the outlet temperature of the heater shall exceed 90°C. b) In the case of air-conditioning plants where heating or reheating by means of an electrical heater designed to operate in an air current is done, the system shall be equipped with a safety device to cut off the electricity to the heating device whenever there is failure of the air flow in which the heater is required to operate. The surface temperature of all electrical heaters used in air-conditioning systems shall be limited preferably to 400°C; and in no case more than 538°C when measured in still air.3.5.4.6 Boilers and Furnaces
a) Steam and hot water boilers and furnaces used for air-conditioning systems shall be designed, constructed and installed in conformance with the requirements of acceptable standards in this regard and the appropriate Boiler Code. b) Boilers and furnaces shall be installed in a machinery room having: i) A sufficiently large floor area to permit accessibility for inspection and servicing of the appliance and to provide adequate clearance to satisfy requirements of fire safety. The volume of the room for housing central heating furnaces shall be at least 12 times the total volume of the furnace. The volume of the room for housing central heating boilers shall be at least 16 times the total volume of the boiler. If the ceiling height of the room or space is greater than 2.5 m, the volume shall be calculated on the basis of 2.5 m height. ii) A permanent opening or opening connecting with the outdoors or with some space that freely connects with outdoors, iii) A knockout panel to act as explosion relief panel to prevent damage to structure in case of any explosion in boiler rooms, iv) Boiler rooms and furnace rooms shall be protected with an automatic fire suppression system installed in accordance with the Code. c) Before commissioning of the boiler a certificate of compliance from the Chief Inspector of Boiler shall be obtained.3.5.5 Air Handling Unit
3.5.5.1 General
Air handling units shall comply with the applicable requirements as set forth in Sec 3.5.1 and 3.5.2.3.5.5.2 Location
Air handling unit rooms shall, as far as possible, be centrally located with the equipment room contiguous to the corridors or other spaces for running of air ducts. Air handling unit rooms shall be located in areas where reasonable sound levels can be tolerated. Air handling unit rooms shall preferably be located adjacent to conference rooms, sound recording studios, broadcasting studios, bed rooms and recording studios in hospitals. If it is absolutely necessary to locate air handling unit room near such areas, adequate acoustic treatment in the air handling unit rooms shall be provided. In such cases, the access door to the air handling unit room shall be of single leaf type properly acoustically treated and shall have a door sill. The door shall open outwards. In case of multi-storied buildings and for large capacity plant, independent air handling unit room(s) shall be provided for each floor when design calls for the same. The area served by each air handling unit shall conform to the fire protection measures adopted.3.5.5.3 Access
Floor area of the air handling unit room shall be sufficient to allow proper layout of equipment with adequate access space and working space for proper operation and maintenance.3.5.5.4 Installation
Air handling units shall be installed on vibration isolators to restrict transmission of vibration to the building structure. The base of the air handling unit shall be minimum 75 mm above the adjoining floor level. All air handling unit rooms shall be properly installed floor drains.3.5.6 Packaged Air-conditioners
3.5.6.1 General
Packaged air-conditioners shall comply with the applicable requirements set forth in Sec 3.5.1 and 3.5.2.3.5.6.2 Prohibited Use
Packaged air-conditioners shall not be used for, a) Operation theatres where provisions for 100 per cent fresh air and high quality filtration of air are required. b) Special applications like sterile rooms for hospitals and clean rooms where high efficiency filtration is required. c) Sound recording studios and other areas where criteria for acoustics are stringent. Exceptions: Single package units when installed far away from the air-conditioned space and are provided with properly designed sound attenuators which can maintain the desired sound level inside the conditioned space. d) Area requiring close and independent control of temperature and relative humidity. Exception: Computer room air-conditioning. e) Internal zones where no exposed wall is available for installation of room air-conditioners or no external platform is available for installation of outdoor installed unit. f) The width of the area is such that throw of air from the air-conditioner cannot cover the required area.3.5.7 Piping System
3.5.7.1 General
Piping material for air-conditioning, heating and ventilation system shall be metallic only. Exception: Condensate drain and waste water drain piping for cooling units may be nonmetallic.3.5.7.2 Support and Anchors
Adequately designed piping supports shall be used at approved space intervals to prevent undue stress on the pipe and building structure. Piping shall also be adequately anchored. Pipes shall not be supported or hung from another pipe.3.5.7.3 Expansion and Contraction
Piping shall be installed with provisions to take care of expansion and contraction of the piping because of temperature changes of the fluid it conveys.3.5.7.4 Pipe Covering
a) All pipes likely to achieve a surface temperature during normal operation exceeding 70°C and are exposed to human contact or surface temperature lower than the dew point temperature of the surrounding air, shall be installed with approved material suitable for the operating temperature of the surrounding air, shall be installed with approved material suitable for the operating temperature of the surrounding air. The insulating material and its thickness shall be as recommended in ASHRAE Handbook. b) Insulation and covering on pipes in which the temperature of the fluid exceeds 120°C: i) Shall be of noncombustible material. ii) Shall not produce flame and smoke, glow or smoulder when tested in accordance with the latest standard in this regard at the maximum temperature to which such insulation or covering is to be exposed in service. Combustible insulation and covering shall have a flame spread rating throughout the material, not exceeding 25 units in buildings of noncombustible construction, when pipes run in a horizontal or vertical service space. When pipes run in a room or space other than service space, the pipe covering shall have a flame spread rating not exceeding that required for the interior finish of the room or space. Exception: Pipe coverings may have a flame spread rating more than 25 and smoke developed index more than 100 when pipes are enclosed within walls, floor slabs or non-combustible raceways or conduits.3.5.7.5 Steam or Hot Water Bare Pipes Passing Through a Storage Space
Bare pipes containing steam or fluid at temperature above 120°C and passing through a combustible floor, ceiling or wall, shall have a sleeve of metal at least 50 mm larger in diameter than pipe, packed with noncombustible material. Bare pipes containing steam or fluid at temperature above 120°C and passing through a combustible floor, ceiling or wall, shall have a sleeve of metal at least 50 mm larger in diameter than pipe, packed with noncombustible material. Minimum clearance between bare pipe and combustible materials shall not be less than 15 mm when temperature of steam or water in the pipe does not exceed 120°C and shall not be less than 25 mm for temperatures exceeding 120°C.3.5.7.6 Piping Markings
All piping shall be marked with approved makings for type of fluid carrying with direction of flow.3.6 REFRIGERATING EQUIPMENT
3.6.1 General
3.6.1.1 Scope
In addition to other provisions of this code, refrigerating systems and equipment shall conform to the requirements of this section.3.6.1.2 Approval
Each refrigerating equipment and its components shall comply with relevant internationally recognized standards. The listing and label of an approved agency which is attached to the equipment, may be accepted as evidence that the equipment complies with applicable internationally recognized standards.3.6.1.3 Installation
A refrigerating equipment shall be installed to conform with the provisions of Sec 3.5.1 and the manufacturer’s installation instructions.3.6.1.4 Access
Access for refrigerating units shall be provided as for cooling units and cooling systems set forth in Sec 3.5.1.6 and 3.5.2.3.3.6.1.5 Working Space and Working Platform
Working space and working platform shall be provided as for cooling units and cooling systems set forth in Sec 3.5.2.4.3.6.1.6 Prohibited Location
Refrigerating systems and portion thereof shall not be located in an elevator shaft, dumb waiter shaft or a shaft having moving objects therein, or in a location where it will be subject to mechanical damage.3.6.1.7 Condensate Control
Piping and fittings which convey refrigerant, brine, chilled water or coolant, which generally reach a surface temperature below the dew point of the surrounding air and which are located in spaces or areas where condensation could cause a hazard to the building occupants, structure, electrical or other equipment shall be insulated to prevent such damage.3.6.2 Absorption Refrigerating Equipment
3.6.2.1 Location
Fuel burning absorption systems shall not be installed in the following locations: a) In any room or space less than 300 mm wider than the units installed therein, with a minimum clear working space of not less than 75 mm along the sides, back and top of the unit. b) In a hazardous location. c) In a surgical operating room or medical treatment room. d) In any occupancy group unless separated from the rest of the building by not less than a one hour fire resistive occupancy separation. Exceptions: A separation shall not be required for equipment serving only one dwelling unit. e) In a room used or designed to be used as a bedroom, bathroom, closet or in any enclosed space with access only through such room or space. f) In a room from where noise and vibration may be transmitted to acoustically sensitive areas. Absorption systems containing Group 2 refrigerants shall not be located in any building unless installed within a refrigeration machinery room provided as per Sec 3.6.3.3. Absorption systems containing more than 9 kg of a Group 2 refrigerant shall be located not less than 6 m from any door, window or ventilating air inlet to a building.3.6.2.2 Installation
Fuel burning absorption systems located outside of a building shall be completely enclosed in a weather proof housing of approved materials, unless approved for outdoor installation. The housing shall not be larger than necessary to properly cover and provide a minimum 150 mm clearance around the unit or units enclosed therein, including all controls and draft diverters. An absorption system supported from the ground shall rest on a concrete slab. The upper surface of the concrete slab shall be at least 75 mm above the adjoining ground level.3.6.2.3 Pressure Relief Devices
An absorption system shall be equipped with a factory installed pressure relief device, either a fusible plug, a rupture member or a pressure relief valve.3.6.2.4 Combustion Air
A fuel burning absorption system shall be provided with adequate combustion air including venting applianccs.3.6.2.5 Steam or Hot Water Absorption System
All absorption systems using steam or hot water as energy source shall be installed in a machinery room unless the manufacturer has certified it suitable for outdoor installation. The machinery room shall comply with the provisions of Sec 3.6.3.3.3.6.3 Mechanical Refrigerating Equipment
3.6.3.1 General
a) Scope: Mechanical refrigerating equipment shall comply with the provisions of Sec 3.6.1. Refrigerating systems and equipment, including the replacement of parts and alteration, shall comply with the provisions of this section. b) Supports: Supports for compressors, condensing units and chillers shall be designed to safely carry the equipment. Supports from buildings or parts of buildings that are of noncombustible construction shall be noncombustible. A compressor or portion of condensing unit supported from the ground shall rest on a concrete or other approved base. The upper surface of the concrete base shall be at least 75 mm above the adjoining ground level. c) Ventilation of Rooms Containing Condensing Units: Rooms or spaces other than a refrigeration machinery room complying with the requirements of this section, in which any refrigerant containing portion of a condensing unit is located, shall be provided with one of the following means of ventilation: i) Permanent gravity ventilation openings of not less than 0.2 m² net free area opening directly to the outside of the building or extending to the outside of the building by continuous ducts, ii) A mechanical exhaust system arranged to provide at least 3 complete air change per hour and to discharge to the outside of the building. Exception: Mechanical exhaust system shall not be required if the room or space has a volume exceeding 40 m³ per kW of the unit or where such room or space has permanent gravity ventilation openings of 0.2 m² minimum total area to the other rooms or spaces exceeding 40 m³ per kW. d) Compressor Near Exits: Refrigerant compressors of more than 4 kW rating shall be located at least 3 m from an exit unless separated by a one hour fire resistive occupancy separation.3.6.3.2 Refrigerants
a) Classification: Refrigerants listed in Table 8.3.4 and Table 8.3.5 or other refrigerants equivalent in safety to life, limb, health or property shall only be used in refrigerating equipment. Note: Bangladesh is a signatory to the Montreal Protocol which proclaims phasing out of the use of some refrigerants viewed as responsible for depletion of the ozone layer and/or causing global warming. If at the time of using this Code, any of the refrigerants mentioned in Table 8.3.4 and 8.3.5 is prohibited from use by the Government, the relevant row or rows of these two tables shall be deemed to be deleted. Likewise, if any safer substitutes to these refrigerants are available and permitted by the Government, these shall be included in the list of refrigerants permitted by this Code. In general, preference shall be given to equipment using refrigerants having relatively lower Ozone Depletion Potential and Global Warming Potential. b) Group 1 Refrigerants i) Direct Systems: The maximum amount of Group 1 refrigerants in direct systems shall not exceed that set forth in Table 8.3.4. ii) Indirect Systems: The amount of Group 1 refrigerants used in indirect systems shall be unlimited. iii) General: Condensing units or combinations of refrigerant interconnected condensing units totalling 75 kW or more rating which contain a Group 1 refrigerant shall be enclosed in a refrigeration machinery room. Table 8.3.4: Group 1 Refrigerants
Table 8.3.5: Group 2 Refrigerants
Exception: The requirement shall not apply when the condensing unit is located outside of a building or on the roof of a building and not less than 6 m from a door, window or ventilating air opening in a building or when the condensing unit located in the building is exclusively used for ice making or cold storage together with the usual accessory rooms in connection therewith.
c) Group 2 Refrigerants: A mechanical refrigerating system or unit refrigerating system containing a Group 2 refrigerant shall not be located within a building unless with all refrigerant containing portions of the system are enclosed in a refrigeration machinery room. Such system when installed outside of a building shall be located at least 6 m from an exit door, window or ventilating air inlet in a building.
Exception:
This shall not apply to a building used exclusively for ice making, cold storage or for the manufacturing or processing of food or drink, provided the occupant load does not exceed one person per 10 m² of floor area served by such system. Portions of refrigerating systems containing Group 2 refrigerants shall not be located in any air inlet.
Direct refrigeration systems containing Group 2 refrigerants shall not serve an air cooling or air-conditioning system used for human comfort.
3.6.3.3 Refrigeration Machinery Room
a) General: Required refrigeration machinery rooms shall be of at least one hour fire resistive construction. All doors shall be clearly labelled “Machinery Room”. The room shall have no openings that will permit the passage of escaping refrigerant to the other parts of the building. There shall be no direct opening between a refrigeration machinery room containing Group 2 refrigerant and a room or space in which there is an open flame, spark producing device or heating surface hotter than 426°C. A refrigeration machinery room containing Group 2 refrigerants shall have at least two means of escape located at least one-fifth the perimeter of the room apart. Refrigeration machinery rooms containing Group 1 refrigerant shall have at least one exit door. Size of the exit door shall be at least 1 m by 2 m. A refrigeration machinery room door shall open in the direction of escape. An unobstructed working space of at least 750 mm in width and at least 2100 mm in height shall be provided around two adjacent sides of all moving machinery in a refrigeration machinery room. b) Refrigeration Machinery Room Ventilation: Refrigeration machinery room shall be provided with either mechanical or gravity ventilation. i) Mechanical exhaust system shall be a separate and individual system of ventilation serving no other area and exhaust air to outdoors at the rate of 12 air changes per hour. Exhaust air outlet shall not be located within 6m from any exterior door, window or ventilation air inlet in any building. Provisions shall be made for makeup air to replace that being exhausted. Control switch for exhaust system shall be located within the machine room and shall be readily accessible. ii) Area of gravity ventilation openings to outside of the building shall not be less than one twentieth of the floor area of the machinery room but shall be more than 0.65 m². Approximately one half of the openings shall be located within 300 mm of the floor and one half within 300 mm of the ceiling of the machinery room. c) Equipment in a Refrigeration Machinery Room: Combustion air shall not be taken from a refrigeration machinery room. Electrical equipment, switch or control panel other than those used exclusively for air-conditioning, heating and ventilation system shall not be located in a refrigeration machinery room. This provision shall not apply to electrical lighting fixtures for machinery room and switches thereof. A readily accessible single emergency refrigeration control switch shall be provided to shut off all electrically operated machineries in a refrigeration machinery room, except for the exhaust ventilation system complying with Sec 3.6.3.3 (b). Such switch shall be located outside the machinery room, within a distance of 3 m from the machinery room exit. d) First Aid Facility: Each refrigeration machinery room shall be provided with first aid boxes. Refrigeration machinery room containing Group 2 refrigerants shall be provided with two gas masks.3.6.3.4 Refrigerant Piping and Equipment
a) Materials: Materials used in the construction and installation of refrigerating systems shall be suitable for the refrigerant in the system, and no material or equipment shall be installed which will deteriorate due to the chemical action of the refrigerant or the compressor oil, or combination of both. b) Erection of Refrigerant Piping: Refrigerant piping and tubing shall be installed in such a way so as to prevent excessive vibration and strains at joints and connections. Adequate type of supports shall be used at points as required but not exceeding 4.5 m apart. Refrigerant piping and tubing shall be installed in such a way so that it is not subject to damage from an external source. Copper tubing containing other than Group 1 refrigerant shall not be located in a public hallway, lobby or stairway or a building unless enclosed in iron or steel piping and fittings or in rigid metal conduit. Iron or steel refrigerant piping placed underground shall be coated with sufficient asphalt paint or equivalent material to inhibit corrosion. c) Refrigerant Containers: A refrigerant receiver or evaporator or condenser shall be constructed in accordance with approved standards. d) Valves and fittings: All valves and fittings shall be of approved type rated for the maximum operating pressure of the system. e) Pressure Limiting Device: A pressure limiting device shall be installed on a positive displacement refrigerant compressor which is a portion of : i) A refrigerating system containing Group 2 refrigerant. ii) An air cooled refrigerating system containing Group 1 refrigerant of 7.5 kW or more rating. iii) A water cooled refrigerating system containing Group 1 refrigerant of 2.25 kW or more rating. A stop or shutoff valve shall not be placed between a pressure limiting device required by this section and the compressor it serves. f) Pressure Relief Valves: The following compressors of the positive displacement type shall be equipped with a pressure relief valve: i) A compressor of 15 kW or more rating which is a portion of a refrigeration system containing Group 1 refrigerant and operating at a pressure exceeding 103 kPa in the high pressure side of the system. ii) A compressor which is a portion of a refrigerating system containing a Group 2 refrigerant.3.7 VENTILATION SYSTEMS
3.7.1 General
3.7.1.1 Scope
The provisions of this section shall govern the ventilation of spaces within a building intended for human occupancy.3.7.1.2 Where Required
Every space intended for human occupancy shall be provided with ventilation by natural or mechanical means during the periods when the room or space is occupied.3.7.2 Natural Ventilation
3.7.2.1 Sources
Natural ventilation of an occupied space shall be through windows, doors, louvers, skylights or other openings to the outdoor. Such ventilating openings shall open to the sky or a public street, space, alley, park, highway, yard, court, plaza or other approved space which complies with the requirements of the building code.3.7.2.2 Area of Ventilating Openings
The minimum ventilating opening to the outdoors shall be four per cent of the floor area being ventilated. a) Adjoining Spaces: Where rooms and spaces without openings to the outdoors are ventilated through an adjoining room, the unobstructed opening to the adjoining rooms shall be at least eight per cent of the floor area of the interior room or space, but not less than 2.33 m². The ventilation openings to the outdoors shall be based on the total floor area being ventilated. b) Opening Below Grade: Openings below grade shall be acceptable for natural ventilation provided the outside horizontal clear space measured perpendicular to the opening is one and one-half times the depth below the average adjoining grade.3.7.2.3 Contaminants Exhausted
Naturally ventilated spaces having contaminants present shall comply with the requirements of Sec 3.7.4.3.7.2.4 LP-gas Distribution Facilities
LP-gas distribution facilities shall be provided with air inlets and outlets arranged so that air movement across the floor of the facility will be uniform. The total area of both inlet and outlet openings shall be at least 0.70 per cent of the floor area. The bottom of such openings shall not be more than 150 mm above the floor.3.7.3 Mechanical Ventilation
3.7.3.1 Where Required
Mechanical ventilation shall be provided in all occupiable rooms or spaces where the requirements for natural ventilation are not met; in all rooms or spaces where the nature of their use or occupancy, involve the presence of dust, fumes, gases, vapours, or other noxious or injurious impurities, or substances which create a fire hazard, and rooms or areas as indicated in footnote b in Table 8.3.6 shall have air exhausted to the outdoors in accordance with this section.3.7.3.2 Ventilation System
Mechanical ventilation shall be provided by a method of supply air and return or exhaust air. The amount of supply air shall be approximately equal to the amount of return and exhaust air; however, the system shall not be prohibited from producing a negative or positive pressure. The ventilation system ducts and equipment shall be designed and installed in accordance with Sec 3.4.3.7.3.3 Ventilation Air Quantity
The minimum ventilation air required shall be determined based on the occupant load and use of the building in accordance with Table 8.3.6. The ventilation rate specified in the Table 8.3.6 shall equal the combined total of outside air and recirculated air. The occupant load shall be determined in accordance with the building Code. Table 8.3.6: Required Mechanical Ventilation Air Required Ventilation Air (l/s per Person Unless Otherwise Indicated)
Note: a Return air shall be exhausted in accordance with Sec 3.7.4.1.
b Recirculation shall be in accordance with Sec 3.7.3.6 except that nonpublic bathrooms with a bathtub and/or shower shall not be recirculated and shall be mechanically exhausted.
3.7.3.4 Minimum Outdoor Air
The minimum amount of the outdoor air shall be in accordance with Table 8.3.3. However in no case it shall be lower than 2.5 l/s per person.3.7.3.5 Air temperature
The temperature differential between ventilation air and air in the conditioned space shall not exceed 5.5°C. Exception: Ventilation air that is part of the air-conditioning system.3.7.3.6 Recirculation
a) Amount of Recirculation: Not more than 67 per cent of the required ventilation air specified in Table 8.3.6 shall be permitted for recirculation when the concentration of particulates is less than specified in Table 8.3.7. Air in excess of the required ventilation air shall be permitted to be completely recirculated. Not more than 85 per cent of the required ventilation air shall be permitted for recirculation when the system is equipped with effective adsorption or filtering equipment so that the condition of the air supplied to the room or space is within the quality limitations of Table 8.3.7. Air in excess of the required ventilation air shall be permitted to be completely recirculated. Table 8.3.7: Maximum Allowable Contaminant Concentrations
Note: a Judged unobjectionable by 60 per cent of a panel of 10 untrained subjects.
b) Prohibited Use of Recirculated Air: Air drawn from mortuary rooms, bathrooms or toilets or any space where an objectionable quantity of flammable vapours, dust, odours, or noxious gases is present shall not be recirculated. Air drawn from rooms that must be isolated to prevent the spread of infection shall not be recirculated.
Exception:
Air drawn from hospital operating rooms may be recirculated, if the following requirements are met:
i) A minimum of twenty five total air changes per hour shall be provided, of which five air changes per hour shall be outdoor air.
ii) All fans serving exhaust systems are located at the discharge end of the system.
iii) Outdoor air shall be located at least 7.5 m from exhaust outlets of ventilation systems, combustion equipment stacks, medical surgical vacuum systems, plumbing vent stacks or from areas which may collect vehicular exhaust and other noxious fumes. The bottom of outdoor air intakes serving central systems shall be located at least 2 m above ground level, or if installed above roof, at least 1 m above roof level.
iv) Positive air pressure shall be maintained at all times in relation to adjacent areas.
v) All ventilation or air-conditioning systems serving such rooms shall be equipped with a filter bed of twenty five per cent efficiency upstream of air-conditioning equipment and a filter bed of ninety per cent efficiency downstream of the supply fan, any recirculating spray water systems and water reservoir type humidifiers. All filter efficiencies shall be tested in accordance with the latest ASHRAE standard.
vi) Air supplied shall be delivered at or near the ceilings and all exhaust air shall be removed near floor level, with at least two exhaust outlets not less than 75 mm above the floor.
c) Swimming Pool Area Recirculation: Return air from a swimming pool and deck area shall be permitted to be recirculated in accordance with Sec 3.7.3.6(a) when such air is dehumidified to maintain the relative humidity of the area at 70 per cent or less. The return air shall only be recirculated to the area from which it was removed.
