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ing) This whole matter is further complicated by the knowledge that outdoor air quality may not be acceptable in many indoor environments, so that special treatment to remove contaminants may be necessary (see Chaps 5 and 21) Thus, while the ventilation load is not a part of the space load, it is re ected in the air-handling unit and central plant capacity For heating, it is the minimum outside air quantity multiplied by the design temperature difference and the proper air factor Thus, qh where qh ti to CFMoa 108 CFMoa 108 (ti to ) (37)
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ventilation load for heating, Btu/h design inside temperature, heating design outside temperature, heating outside-air quantity, ft3 /min air factor, Btu/h/[(ft3 /min) F] (for standard air must be adjusted for higher elevations)
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For cooling, the ventilation load is the minimum outside air quantity multiplied by the design enthalpy difference Thus, qt where qt ho hi 0075 60 CFMoa (ho hi ) 0075 60 (38)
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total cooling load for ventilation, Btu/h enthalpy at design outside conditions, Btu/lb enthalpy at design inside conditions, Btu/lb air density, lb/ft3 (for standard air must be adjusted for higher elevations) min/h
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The sensible cooling load is calculated from the design temperature difference Thus, qs where qs to ti CFMoa (to ti ) 108 (39)
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sensible cooling for ventilation, Btu/h outside design temperature, cooling inside design temperature, cooling
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If the AHU capacity is calculated from a psychrometric chart analysis, as shown in Chap 4, the ventilation load is automatically included Notice that interior zones, with no heat loss, can make use of outside air for winter cooling if the air-handling system is so designed This will result in some reduction of the ventilating heating load
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Downloaded from Digital Engineering Library @ McGraw-Hill (wwwdigitalengineeringlibrarycom) Copyright 2004 The McGraw-Hill Companies All rights reserved Any use is subject to the Terms of Use as given at the website
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Design Procedures: Part 1 Design Procedures: Part 1 79
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Other Loads
There are some additional factors which contribute to the cooling and heating loads Among these are fan and pump work as well as duct and piping losses These are discussed in subsequent chapters In any case, the rst law of thermodynamics prevails Energy is neither created or destroyed If energy moves into or out of the building, it must be accounted for and managed 310 Summary
In this chapter, cooling and heating loads have been discussed, with emphasis on manual procedures and the elements of the loads The principal source of information on this subject is the ASHRAE Handbook Fundamentals, to which the interested reader is referred for a more detailed discussion All load calculations, whether manual or computerized, should be carefully checked for consistency and reasonableness This requires the application of judgment, common sense, and experience References
1 2 3 4 5 ASHRAE Handbook, 2001 Fundamentals, Chap 27, Climatic Design Information Ibid, Chap 29 Non Residential Air Conditioning, Cooling, and Heating Load Ibid, Chap 29 Non Residential Air Conditioning, Cooling, and Heating Load Ibid, Chap 30 Fenestration T C Min, Winter In ltration through Swinging Door Entrances in Multistory Buildings, ASHRAE Transactions, vol 64, 1958, p 421 6 R W Haines, Selecting a Delta T for an AHU, Heating / Piping / Air Conditioning, Nov 1968, p 210 7 ASHRAE Standard 62-2001, Ventilation for Acceptable Indoor Air Quality
Downloaded from Digital Engineering Library @ McGraw-Hill (wwwdigitalengineeringlibrarycom) Copyright 2004 The McGraw-Hill Companies All rights reserved Any use is subject to the Terms of Use as given at the website
Design Procedures: Part 1
Downloaded from Digital Engineering Library @ McGraw-Hill (wwwdigitalengineeringlibrarycom) Copyright 2004 The McGraw-Hill Companies All rights reserved Any use is subject to the Terms of Use as given at the website
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