
《生物环境工程导论:建筑环境》由中国农业大学出版社出版。 |
| module 1 : introduction 1.1 air comosition 1.2 variables and units 1.3 energy use for buildings 1.4 course objectives 1.5 laboratory reort olicies 1.6 recommended laboratory reort format 1.7 lab reort examle 1.8 homework format 1.9 homework examle module 2 : syehrometrics 2.1 sychrometric roerties 2.2 sychrometric chart 2.3 thermal comfort zone 2.4 case study: sychrometrics classroom exercise 2.5 roblems module 3 : sychrometric rocesses 3.1 sensible heating or cooling 3.2 sensible heating with humidification 3.3 sensible cooling with dehumidification . 3.4 evaorative cooling 3.5 adiabatic mixing of two moist air streams 3.6 roblems 3.7 laboratory exercise: sychrometrics module 4 : calculation of sychrometric roerties 4.1 case study: calculation of sychrometric roerties module 5 : basics of heat transfer 5.1 conduction heat transfer 5.2 heat conduction through a multi-layer wall 5.3 heat conduction through a arallel wall 5.4 convection heat transfer 5.5 radiation heat transfer 5.6 radiation heat exchange ?5.7 roblems module 6 : heat transfer through a building enveloe 6.1 heat transfer through a wall 6.2 heat transfer through a ceiling 6.3 heat transfer through a floor 6.4 heat transfer through exterior erimeter 6.5 case study 1 : imrove energy efficiency for a building 6.6 case study 2 : imrove energy efficiency in a watch assemblylant beijing, china 6.7 laboratory exercise: heat transfer through buildingshelters module 7: heat and moisture roduction within buildings 7.1 sensible heat from lights 7.2 sensible heat from equiment 7.3 heat and moisture from management activities 7.4 latent heat and moisture relationshi 7.5 heat and moisture roduction of occuants 7.6 net sensible heat transfer through buildings 7.7 net moisture and ollutants roduction within buildings 7.8 carbon dioxide roduction module 8.mass and energy balance for ventilated airsaces 8.1 sensible heat balance ventilation requirement 8.2 moisture balance ventilation requirement 8.3 ollutant balance ventilation requirement 8.4 minimum ventilation rates 8.5 heating caacity calculation 8.6 case study: ventilation design for a vehicle cabin 8.7 roblems 8.8 laboratory exercise: measuring ventilation rate in anairsace module 9: ventilation grah 9.1 heat deficit temerature 9.2 maximum ventilation requirement 9.3 work sheet: ventilation requirement 9.4 roblems 9.5 case study: ventilation requirement 9.6 laboratory exercise: fan test chamber module 10: hysiological resonses 10.1 human thermal comfort zone 10.2 thermal control for livestock facilities 10.3 heat stress in animal roduction 10.4 threshold limits for tyical indoor ollutants module 11 : room air cleaning efficiency 11.1 case study: evaluation of air cleaning devices module 12: comrehensive case studies 12.1 design a cabin minimum air flow rate 12.2 role laying-troubleshooting 12.3 barn descrition for troubleshooting aendix 1 : building sector energy consumtion aendix 2 : sychrometric roerty calculations aendix 3 : aendices from louis d. albright’ s book references author’ s biograhy acknowledgement |
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