中文文獻
1.內政部建築研究所,「綠建築解說與評估手冊2010年版」,內政部建築研究所,2010李先庭,楊建榮,王欣,「室內空氣品質研究現狀與發展」,暖通空調,30(3),2000
2.王家瑩,「小型住宅建築於冬季室內熱環境設計策略解析」,國立台灣科技大學建築所碩士論文,2007。3.江哲銘,「建築物理」,三民書局,台北市,1997。
4.江哲銘、林俊興,「住居空間物理環境之研究-室內環境品質影響因子測試分析」,中華民國建築學會第四屆建築學術發表會論文,93-98頁, 1990
5.林啟發,「亞洲地區辦公建築外殼節能計劃」,國立成功大學碩士論文,20066.林盛隆、魏士閔、黃俊豪、陳王琨,「簡報室熱舒適度案例之研究」,建築學報,第65期,125-138 頁,20087.林琨閎,「新校園建築物理環境現況及效能之研究-以南投縣小學普通教室為例」,國立雲林科技大學碩士論文,20048.林憲德,「人居熱環境」,詹氏書局,2009
9.林憲德,「綠色建築」,詹氏書局,2014
10.林憲德,「綠色魔法學校」,新自然主義出版社,2010
11.邱嫈蓮,「自然通風型學生宿舍熱環境舒適要求之實測調查研究」,逢甲大學碩士論文,200712.凃玉峰,「室內空氣環境綜合評估指標之探討-以台灣南部工業區辦公大樓為例」,國立成功大學碩士論文,1999
13.洪增淵,「演講廳之室內環境品質調查與分析」,朝陽科技大學碩士論文,200414.莊振賢,「國人舒適感受調查研究」,國立台北科技大學碩士論文,200115.郭乃榕,「自然通風教室熱舒適要求調查」,中國醫藥大學碩士論文,200716.陳銘雄,「從熱舒適度探討學校普通教室節能策略」,朝陽科技大學碩士論文,200517.黃國倉,「辦公建築生命週期節能與二氧化碳減量評估之研究」,國立成功大學博士論文,200618.黃教誠,「大學教室熱舒適範圍之實測調查研究」,逢甲大學碩士論文,200519.黃瑞隆,「複合式通風應用於臺灣潛力分析之研究」,內政部建築研究所,2013
20.楊靜宜,「自然通風教室熱舒適度研究-以南投縣爽文國小為例」,朝陽科技大學碩士論文,200821.廖崇文,「不同空調通風路徑對室內空氣與溫熱環境影響之研究」,樹德科技大學碩士論文,200322.賴柏亨,「辦公大樓自然通風對ENVLOAD指標優惠評估之研究」,國立成功大學碩士論文,200823.賴榮平,「台灣地區建築通風問題之探討」,建築師雜誌,P.17~33,台北市,198024.魏士閔,「室內熱舒適度之調查與分析-以焚化廠簡報室為例」,朝陽科技大學碩士論文,200725.蘇俊榮,「熱舒適度之探討-以南投縣鹿谷鄉廣興國小教室為例」,朝陽科技大學碩士論文,2008英文文獻
1. A.G. Kwok, Thermal comfort in tropical classrooms, ASHRAE,Transactions, 104(1B), pp.1031-1047, 1998
2. ASHRAE, ASHRAE Standard 55. Thermal Environmental Conditions for Human occupancy, American Society of Heating, Refrigerating and Air-Conditioning Engineers, 2010
3. Bevirt D. EW., Environmental Systems Technology, NNEBB,1984
4. British Research Establishment Conservation Support Unit, Energy Consumption Guide 19: Energy Use in Offices, Garston, Watford, UK, 2000
5. British Research Establishment Conservation Support Unit. Energy Consumption Guide 19: Energy Use in Offices. Garston, Watford, UK, 2000
6. Cecil D. Elliot, Technics and Archtecture, MIT Press, Cambridge, Massachusettea, 1992
7. Charvat P., Jicha1 M., Niachou A., Santamouris M., Simulation of performance of a Hybrid ventilation system in different climates, Ninth International IBPSA Conference, Montréal, Canada, pp.146-150, 2005
8. Chien CH, Lin HT, Analysis of Natural Ventilation Efficiency of a Passive Solar Chimney in a Conference Hall of the Magic School of Green Technology, Vol.368-370, pp.603-606, 2013
9. Chien CH, Lin HT, Buoyancy Ventilation Efficiency Analysis of a Conference Hall, Applied Mechanics and Materials, Vol.71-78, pp.2442-2446, 2011.
10. D. Mumovic, Winter indoor air quality, thermal comfort and acoustic performance of newly built secondary schools in England, Building and Environment, Vol. 44, pp. 1466-1466, 2009.
11. de Dear RJ, Fountain ME, Field experiments on occupant comfort and office thermal environments in a hot-humid climate, ASHRAE Transactions, Vol. 100, pp.457-475, 1994
12. Fanger PO., Thermal Comfort, McGraw Hill, New York, 1972
13. Gagge, A. P., Comfort and thermal sensations and associate hysiological responses at various ambient temperatures, Environmental Research, Vol. 46, No. 7, pp.125-132, 1967
14. Harimi Djamila, Chu CM, Field study of thermal comfort in residential buildings in the equatorial hot-humid climate of Malaysia, Building and Environment, 62, pp.133-142, 2013
15. Humphreys MA, Outdoor temperatures and comfort indoors, Building Research and Practice, (Journal of CIB), Vol. 6 (2), pp. 92-105, 1978
16. Hwang RL, Lin TP, Field experiments on thermal comfort in campus classrooms in Taiwan, Energy and Buildings, Vol. 38, pp.53-62, 2006
17. Hwang RL, Lin TP, Linking occupants’ thermal perception and building thermal performance in naturally ventilated school buildings, Applied Energy, Vol. 94, pp.355-363, 2012
18. Hwang RL, Lin TP, Patient thermal comfort requirement for hospital environments in Taiwan, Building and Environment, Vol. 42, pp.2980-2987, 2007
19. Hwang RL, Lin TP, Thermal comfort requirements for occupants of semi-outdoor and outdoor environments in hot-humid regions,Architech Science Rev 50, pp.60-67, 2007
20. Indraganti M, Ooka R, Rijal HB, Brager GS, Adaptive model of thermal comfort for offices in hot and humid climates of India, Building and Environment, Vol. 74, pp.39-53, 2014
21. International Energy Agency (IEA), Annual Reports: Hybrid Ventilation Annex, Vol. 35, Syndey, 2000
22. ISO, International Standard 7730, Moderate thermal environment -determination f the PMV and PPD indices and specification of the conditions for thermal comfort, 2005
23. J.F. Busch, Thermal responses to the Thai office environment, ASHRAE Transactions, 96 part 1, pp.859-872, 1990
24. Ji Y., Lomas K.J., Cook M.J., Hybrid ventilation for low energy building design in south China, Building and Environment, Vol. 44, pp.2245-2255, 2009
25. Jie Han, Field study on occupant thermal comfort and residential thermal environment in a hot humid climate of China, Building and Environment, Vol. 42, pp.4043-4050, 2007
26. Karava P., Athienitis A.K., Stathopoulos T., Mouriki E., Experimental study of the thermal performance of a large institutional building with mixed-mode cooling and hybrid ventilation, Building and Environment, Vol. 57, pp.313-326, 2012
27. Lin TP, Thermal perception, adaptation and attendance in a public square in hot and humid regions, Building and Environment, Vol. 44, pp.2017-2026, 2009
28. Lin TP, de Dear R, Hwang RL, Effect of thermal adaptation on seasonal outdoor thermal comfort, Int J Climatol 31, pp.302-312, 2011
29. Madhavi Indraganti, Using the adaptive model of thermal comfort for obtaining indoor neutral temperature: Findings from a field study in Hyderabad, India, Building and Environment, Vol. 45, pp. 519-536, 2010.
30. McIntyre DA, Indoor Climate, Applied Science Publishers, London, 1980
31. Nicol JF, Humphrey MA, Adaptive thermal comfort and sustainable thermal standards for buildings, Energy and Buildings, Vol. 34, pp. 563-572, 2002
32. P.O. Fanger, Thermal Comfort:Analysis and Applications in Environmental engineering, Copenhagen:Danish Technical Press, 1970
33. R.J. de Dear, Field experiments on occupant comfort and office thermal environments in a hot-humid climate, ASHRAE, Transactions, 100 part 2, pp.457-475, 1994
34. Seppänen O., Fisk W., Association of ventilation system type with sick building symptoms in office workers, Indoor Air, pp.98-112, 2001
35. Steele J., Sustainable Archtecture, McGraw Hill, 1977
36. Stefano Paolo Corgnati, Roberta Ansaldi, Thermal comfort in Italian classrooms under free running conditions during mid seasons: Assessment through objective and subjective approaches, Building and Environment, Vol. 44, pp.785-792, 2009.
37. Torcellini, P.A., M. Deru, B. Griffith, N. Long, S. Pless, and R. Judkoff. Lessons Learned from Field Evaluation of Six High-Performance Buildings, ACEEE Summer Study on Energy Efficiency in Buildings, 2004
38. Tri Harso K, Report on thermal comfort and building energy studies in Jakarta-Indonesia, Building and Environment, Vol. 35, pp.77-90, 2000.
39. Wong N.H., Thermal comfort in classrooms in the tropics, Energy and Buildings, Vol. 35, pp.337-351, 2003
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1. http://www.cecol.com.cn/a/20120718/4475751887.html
2. http://www.esrl.noaa.gov/gmd/ccgg/trends/
3. http://www.osha.gov/dts/osta/otm/otm_toc.html
4. 中央氣象局 http://www.cwb.gov.tw
5. 經濟部能源局 http://www.tabc.org.tw