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朱穎心
電話:010-62782746
傳真:010-62773461
E-mail:zhuyx@mail.tsinghua.edu.cn

聯系地址:中國北京海澱區 beat365建築技術科學系(beat365二校門東北側 舊土木工程館219室)

郵政編碼:100084

 

【研究方向】

可持續建築與建築節能研究

人體熱舒适理論研究

 

【教育簡曆】

19799-19848     beat365熱能工程系 暖通空調專業本科生,獲工學學士學位

19848-19898     beat365熱能工程系 暖通空調專業研究生,獲工學博士學位

 

【專業履曆】

19899-199312  beat365熱能工程系講師

19927-199310  日本名古屋大學工學部建築學科、日本學術振興會外國人特别研究員

199312-19988  beat365熱能工程系副教授

19988-20009     beat365熱能工程系教授

199711-20009   beat365熱能工程系黨委書記

20009-至今               beat365教授

20027-200212   日本名古屋大學理工綜合研究中心客座教授

200512-20089   beat365 beat365 建築環境與設備研究所 所長

20089-20206     beat365 副院長

20089-20186     beat365 建築技術科學系 系主任

20053-至今                beat365建築節能教育部工程研究中心 副主任

20093-至今                城鄉生态規劃與綠色建築教育部重點實驗室 副主任

 

【社會兼職】

20037月-                            北京土木建築學會暖通空調專業委員會副主任委員

20101月-                            中國建築學會暖通空調分會理事

2013年-                                  中國建築學會綠色建築專業委員會綠色小城鎮學組組長

2015年-                                  中國建築學會暖通空調分會空調專業委員會副主任委員

20019月-200612        住建部高等教育建築環境與設備工程專業評估委員會委員

20071月-201912        住建部高等教育建築環境與能源應用工程專業評估委員會副主任委員

19988月-200512        全國高等學校建築環境與設備工程專業學科指導委員會委員

200512—201812      全國高等學校土建類教學指導委員會副主任委員

20061—201812        全國高等學校建築環境與能源應用工程學科專業指導委員會主任委員

201812                          教育部高等學校土木類教學指導委員會副主任委員

201812—                          教育部高等學校土木類教學指導委員會建築環境與能源應用工程分委員會主任委員

2008                                  住建部綠色建築評價标識專家委員會委員

2013                                  中國建築學會綠色建築專業委員會綠色小城鎮學組組長

20199—20249          住建部科學技術委員會建築節能與綠色建築專業委員會委員

20093                            《暖通空調》編委

2020                                  《建築節能》編委會副主任委員

2014—20181                     Indoor Air編委

20181                            Indoor Air 副主編

2011                                   Building and Environment 編委

2009-2014                              Energy and Buildings 編委

2001-2013                              Journal of Asia Architecture and Building Engineering 編委

20079                            Building Simulation: An International Journal編委

20081-2015.12                  Journal of Building Performance Simulation 編委

20077—201512        國際建築性能模拟學會理事會中國代表/Board member of International Building Performance Simulation Association (IBPSA)

2013—                                       國際建築性能模拟學會會士 IBPSA Fellow

2010—                                       國際室内空氣學會科學院會士/ Fellow of ISIAQ Academy

2014—                                       國際室内空氣學會熱舒适委員會主席 Chair of STC 33 (Thermal comfort) of ISIAQ

 

【課程教學】

主講/合講課程

1.    建築環境學                  本科生專業基礎課,3學分,48學時,建築環境與設備工程專業

          國家級精品課(2004年)

2.    暖通空調與冷熱源       本科生必修專業課,5學分,80學時,建築環境與設備工程專業,

           國家級線上線下混合式一流課程(2020年)

3.    綠色建築與可持續發展社會   本科生公共選修課,1學分,16學時,面向所有專業

參講課程

1.         暖通空調課程設計       本科生必修專業課,11學分,192學時,建築環境與設備工程專業

慕課(學堂在線)

2.         暖通空調                               2學分,國家級線上一流課程(2018年)

3.         建築環境學                           2學分

4.         綠色建築與可持續發展       1學分

 

主要研究課題

[1]      國家自然科學基金面上項目52178079"熱環境對睡眠熱舒适影響的關鍵問題研究"2022.1-2025.12,負責人。

[2]      國家自然科學基金面上項目51678330"建築環境适應性熱舒适的機理研究"2017.1-2020.12,負責人。

[3]      國家重點研發計劃課題2018YFC0705003"地下交通建築節能關鍵技術與設備開發"2018.7~2021.6,負責人

[4]      國際能源署-建築與社區節能國際合作項目:IEA-EBC Annex 69: Strategy and Practice of Adaptive Thermal Comfort in Low Energy Buildings(适應性熱舒适在低能耗建築中的應用策略與實踐),2015.1- 2021.12,負責人

[5]      國家十二五科技支撐計劃課題 2014BAJ04B03大型航站樓綠色建築關鍵技術研究與示範2014.1-2017.12,負責人

[6]      973項目子課題 2012CB720104-2,座艙熱舒适設計參數優化,2012.1-2016.9,負責人

[7]      國家自然科學基金重點項目 50838003,動态熱環境與人體熱舒适的基礎研究,2009.1-2012.12,負責人

[8]      國家十一五科技支撐計劃課題 2006BAJ01A01建築節能設計方法與模拟分析軟件開發2006.9-2010.12,負責人

[9]      中國工程院中國工程科技中長期發展戰略研究項目土建工程科技領域課題:低碳可持續發展約束下的城鎮化建設問題,2009.9-2010.10,執筆人

[10]   國家十一五科技支撐計劃子課題2006BAJ02A0601建築室内單區域環境評估體系研究2006.9-2010.12,負責人

[11]   國家自然科學基金面上項目 50478008建築環境氣流紊動特性的形成與遷移規律研究2005.1-2007.12,負責人

[12]   國家自然科學基金面上項目 50278044人體動态熱舒适機理與評價研究2003.1-2005.12,負責人

[13]   國家十五科技攻關項目課題,綠色建築的規劃設計導則和評估體系研究2004.1-2005.12,子課題負責人

[14]   科技部奧運科技十大專項課題:綠色奧運建築評估體系,2002.8-2004.8,主要研究者

[15]   國家自然科學基金重點項目 E59836250住區微氣候的熱物理問題1999.1-2003.12,子課題負責人

[16]   科技部科技計劃項目地鐵災害虛拟現實(VR)及北京地鐵控制中心(OCC)防災決策系統2005.1-2006.12,清華方負責人

[17]   國家教委資助優秀青年教師基金課題:地鐵熱環境與防災控制模拟軟件開發與驗證,1995.1-1997.12,負責人

 

國家、地方與行業标準

[1]      綠色小城鎮評價标準 CSUS/GBC 06-2015,參編

[2]      綠色辦公建築評價标準 GB/T 50908-2013,參編單位負責人

[3]      北京市工程建設标準:綠色建築評估标準 DBJ/T01-101-2005,參編

[4]      國家環境保護總局環境标志産品技術要求:生态住宅(住區),HJ/T 351-2007,參編

 

【科研獲獎】

[1]      林波榮、徐宏慶、李曉鋒、朱穎心、曹彬、邵雙全、肖偉、李紫微、王者、代宏峰,綠色公共建築環境與節能設計關鍵技術研究與應用,2019年國家科技進步獎二等獎

[2]      李強、朱穎心、郭雁池、肖斌、吳志晖、張雯、潘建、魏慶芃、王建萍、李雄、徐濤、餘娟、陳陽、王亦知、孫施曼:綠色機場規劃設計、建造及評價關鍵技術研究,2018年度中國航空運輸協會民航科學技術獎一等獎(2020319日公告)

[3]      林波榮、徐宏慶、李曉鋒、朱穎心、劉加根 等,綠色公共建築環境與節能設計關鍵技術研究與應用,北京市科學技術獎一等獎,201812

[4]      鄭健、趙奕、劉燕、李曉鋒、邵長虹、朱穎心、姚涵、鄭雲傑 等,綠色鐵路客站标準及評價體系研究,2012年度中國鐵道學會科學技術一等獎,20143

[5]      林波榮、田軍、鄭建偉、王若愚、朱穎心、何文捷、劉加根、黃飛躍、劉雪峰、劉曉華 等,華僑城體育中心擴建工程,全國綠色建築創新一等獎,2011

[6]      李國慶、王奕然、朱穎心、顧慶宜、張春生、褚敬止 等,新型城市軌道交通通風空調多功能集成系統研究,北京市科學技術三等獎,200912

[7]      袁镔、朱穎心、林波榮、陸穎潔 等,山東交通學院圖書館,全國綠色建築創新綜合一等獎,20073

[8]      秦佑國、朱穎心、滕樹龍、江億、林波榮、歐陽沁 等:綠色奧運建築評估體系,2005年北京市科學技術一等獎(20062月)

[9]      郎紅陽、石旭東、朱穎心、李曉鋒 等:故宮午門博物館,2005年聯合國教科文組織亞太文化遺産保護獎,2005年全國十大建設科技成就,200510

[10]   朱穎心、江億、楊旭東、李先庭、李曉鋒、秦緒忠、左會剛:地下鐵道熱環境研究,教育部科技進步成果二等獎,20001

 

【個人榮譽】

[1]      2020 吳元炜暖通空調獎,中國建築學會暖通空調分會

[2]      2018年度 beat365教學優秀獎

[3]      2018 井上宇市亞洲國際獎,日本“空氣調和×衛生工學”學會

[4]      2013 beat365“教書育人”獎

[5]      2012 beat365優秀博士學位論文指導教師

[6]      2008年度 北京市高等學校教學名師,2008624日,北京市教委

[7]      2007年度 寶鋼教育基金會優秀教師獎

[8]      2003 beat365“教書育人”獎

[9]      2003 beat365“良師益友”獎

[10]   1997年度 北京市優秀教師

 

【教學獲獎】

[1]      朱穎心、石文星,《暖通空調與冷熱源》,國家級線上線下混合式一流課程(2020年)

[2]      朱穎心,《暖通空調》,國家精品在線開放課程(2018年),國家級線上一流課程(2020年)

[3]      朱穎心、石文星,《對工科專業課程教學方法的思考》,2013年beat365高等教育學會優秀論文一等獎

[4]      朱穎心《建築環境學(第三版)》,2012年beat365優秀教材評選一等獎,20126

[5]      朱穎心為首的beat365建築環境與設備專業教學團隊:國家級教學團隊,2010年,教育部

[6]      朱穎心為首的beat365建築環境與設備專業教學團隊:北京市優秀教學團隊,2010年,北京市教委

[7]      朱穎心、石文星,《空調與制冷技術》,beat365校級精品課程,2009

[8]      朱穎心,2008年度北京市高等學校教學名師,20086月,北京市教委

[9]      朱穎心、江億、石文星、李曉鋒、魏慶芃,建築環境與設備工程本科專業實踐教學改革,2008年北京市教育教學成果(高等教育)一等獎,北京市人民政府

[10]   朱穎心,2007年度寶鋼教育基金會優秀教師獎

[11]   江億、朱穎心、石文星、李曉鋒、魏慶芃,建築環境與設備工程專業實踐教學環節改革,2006年beat365教學成果特等獎,20068

[12]   朱穎心,《建築環境學》,全國高等學校精品課程(2004年)

[13]   肖勇全、張志剛、朱穎心、許傳海、付祥钊,建築環境與設備工程專業平台課程體系構建與教學實踐,2005年山東省高等教育教學成果一等獎

 

【主要論文與論著】

專著

[1]      朱穎心、魏慶芃、林波榮、餘娟、趙康、張德銀、黃彥祥 等,航站樓高大空間節能設計和運行應用指南,中國建築工業出版社,20209

[2]      朱穎心、張寅平、李先庭、秦佑國、詹慶旋、林波榮,《建築環境學 (第四版)》(國家“十二五”規劃教材),中國建築工業出版社,20168

[3]      朱穎心、張寅平、李先庭、秦佑國、詹慶旋,《建築環境學 (第三版)國家“十一五”規劃教材,中國建築工業出版社,20107

[4]      江億、林波榮、曾劍龍、朱穎心,《住宅節能》,中國建築工業出版社,20063

[5]      朱穎心、張寅平、李先庭、秦佑國、詹慶旋,《建築環境學 (第二版)》(國家“十五”規劃教材),中國建築工業出版社,20057

[6]      綠色奧運建築評估體系課題組 著,《綠色奧運建築評估體系》,中國建築工業出版社,20038月,ISBN 7-112-05970-4(參著)

[7]      金招芬、朱穎心、亢燕銘、刁乃仁,《建築環境學》,中國建築工業出版社,2001

[8]      王繼銘、蔔誠、屠峥嵘、朱穎心,《建築設備》,中國建築工業出版社,1997

 

外文期刊

[1]     Jia Xinyu, Cao Bin, Zhu Yingxin. A Climate Chamber Study on Subjective and Physiological Responses of Airport Passengers from Walking to a Sedentary Status in Summer. Building and Environment, 207(2022) 108547.

[2]     Huang Yenhsiang, Jia Xinyu, Zhu Yingxin, Zhang Deyin, Lin Borong. Research on indoor spaces and passenger satisfaction with terminal buildings in China, Journal of Building Engineering, 43(2021) 102873

[3]     Wang Zihan, Cao Bin, Zhu Yingxin. Questionnaire survey and field investigation on sleep thermal comfort and behavioral adjustments in bedrooms of Chinese residents. Energy and Buildings, 2021, 253: 111462.

[4]     Jia Xinyu, Huang Yenhsiang, Cao Bin, Yingxin Zhu, Wang Chunqing. Field Investigation on Thermal Comfort of Passengers in an Airport Terminal in the Severe Cold Zone of China. Building and Environment, 2021, 189: 107514.

[5]     Xinyu Jia, Bin Cao, Yingxin Zhu, Yenhsiang Huang. Field Studies on Thermal Comfort of Passengers in Airport Terminals and High-Speed Railway Stations in Summer. Building and Environment, 2021, 206: 108319

[6]     Hecheng Yang, Yue Deng, Bin Cao, Yingxin Zhu, Study on the local and overall thermal perceptions under non-uniform thermal exposure using a cooling chair. Building and Environment. 176 (2020) 106864

[7]     Xinyu Jia, Bin Cao, Yingxin Zhu, Bing Liu. Thermal comfort in mixed-mode buildings: A field study in Tianjin, China. Building and Environment, 185(2020) 107244

[8]     Huan Wang, Hong Zhang, Xiaowei Hu, Maohui Luo, Guijin Wang, Xianting Li, Yingxin Zhu. Measurement of airflow pattern induced by ceiling fan with quad-view color sequence particle streak velocimetry. Building and Environment, 152 (2019), 122-134. 2019 Best Paper

[9]     Nan Zhang, Bin Cao, Yingxin Zhu. Effects of pre-sleep thermal environment on human thermal state and sleep quality. Building and Environment, 148 (2019), 600-608.

[10]   Maohui Luo, Zhihao Ke, Wenjie Ji, Zhe Wang, Bin Cao, Xiang Zhou, Yingxin Zhu. The time-scale of thermal comfort adaptation in heated and unheated buildings. Building and Environment, 151 (2019), 175-186.

[11]   Yang Geng, Borong Lin, Juan Yu, Hao Zhou, Wenjie Ji, Hongzhong Chen, Zhongchen Zhang, Yingxin Zhu. Indoor environmental quality of green office buildings in China: Large-scale and long-term measurement. Energy and Buildings, 150 (2019), 266-280.

[12]   Wenjie Ji, Bin Cao, Yang Geng, Yingxin Zhu, Borong Lin. A study on the influences of immediate thermal history on current thermal sensation, Energy & Buildings 198 (2019) 364-376

[13]   Hecheng Yang, Bin Cao, Yi Ju, Yingxin Zhu. The effects of local cooling at different torso parts in improving body thermal comfort in hot indoor environments. Energy and Buildings, 198 (2019), 528-541.

[14]   Yang Geng, Wenjie Ji, Zhe Wang, Borong Lin, Yingxin Zhu. A review of operating performance in green buildings: Energy use, indoor environmental quality and occupant satisfaction" by John H. Scofield. Energy and Buildings, 183 (2019),500-514.

[15]   Tongling Wu, Bin Cao, Yingxin Zhu. A field study on thermal comfort and air-conditioning energy use in an office building in Guangzhou. Energy and Buildings. 168 (2018) 428-437.

[16]   Wenjie Ji, Maohui Luo, Bin Cao, Yingxin Zhu, Yang Geng, Borong Lin. A new method to study human metabolic rate changes and thermal comfort in physical exercise by CO2 measurement in an airtight chamber. Energy and Buildings. 177(2018) 402-412.

[17]   Hecheng Yang, Bin Cao, Yingxin Zhu. Study on the effects of chair heating in cold indoor environments from the perspective of local thermal sensation. Energy and Buildings. 180(2018)16-28.

[18]   Nan Zhang, Bin Cao, Yingxin Zhu. Indoor environment and sleep quality: A research based on online survey and field study. Building and Environment, 137(2018)198-207.

[19]   V. F, Licina, …… Bin Cao, Yingxin Zhu, et al. Development of the ASHRAE Global Thermal Comfort Database II, Building and Environment, 142 (2018) 502-512

[20]   Maohui Luo, Zhe Wang, Gail Brager, Bin Cao, Yingxin Zhu. Indoor climate experience, migration, and thermal comfort expectation in buildings. Building and Environment, 141 (2018) 262-272.

[21]   Yang Geng, Wenjie Ji, Borong Lin, Jiajie Hong, Yingxin Zhu. Building energy performance diagnosis using energy bills and weather data, Energy and Buildings, 172(2018) 181-191

[22]   Ziwei Li, Hongzhong Chen, Borong Lin, Yingxin Zhu. Fast Bidirectional Building Performance Optimization at the Early Design Stage. Building Simulation, 2018(2) 1-15

[23]   Yanchen Liu, Zhe Wang, Borong Lin, Jiajie Hong, Yingxin Zhu. Occupant satisfaction in Three-Star-certified office buildings based on comparative study using LEED and BREEAM, Building and Environment 132(2018) 1-10

[24]   Maohui Luo, Zhe Wang, Kevin Ke, Bin Cao, Yongchao Zhai, Xiang Zhou. Human metabolic rate and thermal comfort in buildings: The problem and challenge. Building and Environment, 131 (2018) 44-52.

[25]   Zhe Wang, Maohui Luo, Yang Geng, Borong Lin, Yingxin Zhu. A Model to Compare Convective and Radiant Heating Terminals for Intermittent Space Heating. Applied Energy, 215 (2018) 211-226.

[26]   Zhe Wang, Richard de Dear, Maohui Luo, Borong Lin, Yingdong He, Ali Ghahramani, Yingxin Zhu. Individual difference in thermal comfort: A literature review. Building and Environment, 138(2018) 181-193.

[27]   Maohui Luo, Juan Yu, Qin Ouyang, Bin Cao, Yingxin Zhu. Application of dynamic airflows in buildings and its effects on perceived thermal comfort. Indoor and Built Environment, 2018, 27(9) 1162-1174

[28]   Bin Cao, Maohui Luo, Min Li, Yingxin Zhu. Thermal comfort in semi-outdoor spaces within an office building in Shenzhen: A case study in a hot climate region of China. Indoor and Built Environment, 2018, 27(10) 1431-1444

[29]   Maohui Luo, Bin Cao, Qin Ouyang, Yingxin Zhu. Indoor human thermal adaptation: the dynamic process and weighting factor, Indoor Air, 2017, 27: 273-281

[30]   Weilin Cui, Haiying Wang, Tongling Wu, Qin Ouyang, Songtao Hu, Yingxin Zhu: The influence of a low air pressure environment on human metabolic rate during short-term (<2 h) exposures. Indoor Air. 2017, 27: 282-290

[31]   Weilin Cui, Tongling Wu, Qin Ouyang, Yingxin Zhu: Passenger thermal comfort and behavior: a field investigation in commercial aircraft cabins. Indoor Air. 2017, 27: 94-103

[32]   Yang Geng, Wenjie Ji, Borong. Lin, Yingxin Zhu. The impact of thermal environment on occupant IEQ perception and productivity. Building and Environment, 121 (2017) 158-167

[33]   Nan Zhang, Bin Cao, Zhaojun Wang, Yingxin Zhu, Borong Lin. A comparison of winter indoor thermal environment and thermal comfort between regions in Europe, North America, and Asia. Building and Environment, 117(2017) 208-217

[34]   Wenjie Ji, Bin Cao, Maohui Luo, Yingxin Zhu. Influence of short-term thermal experience on thermal comfort evaluations: A climate chamber experiment. Building and Environment. 114 (2017) 246-256

[35]   Wenjie Ji, Bin Cao, Yang Geng, Yingxin Zhu, Borong Lin. Study on human skin temperature and thermal evaluation in step change conditions: From non-neutrality to neutrality. Energy and Buildings. 156 (2017) 29-39

[36]   M.L. Zhu, Q. Ouyang, H.G. Shen, Y.X. Zhu. Field study on the objective evaluation of sleep quality and sleeping thermal environment in summer. Energy and Buildings 133 (2016) 843-852

[37]   Tongling Wu, Bin Cao, Weilin Cui, Yingxin Zhu, Qin Ouyang. Measurements of the additional thermal insulation of aircraft seat with clothing ensembles of different seasons. Building and Environment, 108(2016) 23-29

[38]   Bin Cao, Maohui Luo, Min Li, Yingxin Zhu. Too cold or too warm? A winter thermal comfort study in different climate zones in China. Energy and Building, 133(2016) 469-477

[39]   Borong Lin, Zhe Wang, Hongli Sun, Yingxin Zhu, Qin Ouyang. Evaluation and comparison of thermal comfort of convective and radiant heating terminals in office buildings. Building and Environment, 106(2016) 91-1024

[40]   Borong Lin, Zhe Wang, Yanchen Liu, Yingxin Zhu, Qin Ouyang. Investigation of Winter Indoor Thermal Environment and Heating Demand of Urban Residential Buildings in China's Hot-Summer-Cold-Winter Climate Region, Building and Environment, 101(2016) 9-18

[41]   Maohui Luo, Xiang Zhou, Yingxin Zhu, Dongqian Zhang: Exploring the dynamic process of thermal adaptation, a comparative study in teaching buildings, Energy and Buildings, 127(2016) 425-432

[42]   Maohui Luo, Xiang Zhou, Yingxin Zhu, Jan Sundell. Revisiting an overlooked thermal comfort parameter, the metabolic rate, Energy and Buildings, 118 (2016) 152-159

[43]   Maohui Luo, Wenjie Ji, Bin Cao, Qin Ouyang, Yingxin Zhu: Indoor climate and thermal physiological adaptation: Evidences from migrants with different cold indoor exposures, Building and Environment, 98 (2016) 30-38

[44]   Maohui Luo, Bin Cao, Wenjie Ji, Qin Ouyang, Borong Lin, Yingxin Zhu. The underlying linkage between personal control and thermal comfort: psychological or physical effects? Energy and Building, 111(2016) 56-63

[45]   Maohui Luo, Richard de Dear, Wenjie Ji, Cao Bin, Borong Lin, Qin Ouyang, Yingxin Zhu. The dynamics of thermal comfort expectations: The problem, challenge and implication. Building and Environment. 95(2016) 322-329

[46]   Yingxin ZHU, Qin OUYANG, Bin CAO, Xiang ZHOU, Juan YU, Dynamic Thermal Environment and Thermal Comfort (Keynote: Indoor Air 2014), Indoor Air, 2016(26) 125-137

[47]   Yenhsiang Huang, Lin Borong, Nie Yao, and Zhu Yingxin. Functional Relationship Between Lighting Energy Consumption And The Main Parameters For Double Atrium Offices, Procedia Engineering 121(2015) 1869–1879

[48]   Zhe Wang, Borong Lin, Yingxin Zhu: Modeling and measurement study on an intermittent heating system of a residence in Cambridgeshire, Building and Environment, 92 (2015) 380-386

[49]   Zhe Wang, Richard de Dear, Borong Lin, Yingxin Zhu, and Qin Ouyang: Rational Selection of Heating Temperature Set Points for China’s Hot Summer - Cold Winter Climatic Region, Building and Environment, 93(2015) 63-70

[50]   Zhe Wang, Haitian Zhao, Borong Lin, Yingxin Zhu, Juan Yu. Investigation of indoor environment quality of Chinese large-hub airport terminal buildings through longitudinal field measurement and subjective survey, Building and Environment 94(2015) 593-605

[51]   Zhe Wang, Zhen Zhao, Borong Lin, Yingxin Zhu, Qin Ouyang. Residential Heating Energy Consumption Modeling through a Bottom-up Approach for China's Hot Summer - Cold Winter Climatic Region, Energy and Buildings, 109(2015) 65-74

[52]   Yingxin Zhu, Maohui Luo, Qin Ouyang, Li Huang, Bin Cao: Dynamic characteristics and comfort assessment of airflows in indoor environments: A review, Building and Environment 91 (2015) 5-14

[53]   Zufeng Pei, Borong Lin, Yanchen Liu, Yingxin Zhu, Comparative study on the indoor environment quality of green office buildings in China with a long-term field measurement and investigation, Building and Environment, 84(2015) 80-88

[54]   Maohui Luo, Bin Cao, Jérôme Damiens, Borong Lin, Yingxin Zhu, Evaluating thermal comfort in mixed-mode buildings: A field study in a subtropical climate, Building and Environment, 88(2015) 46-54

[55]   Jie Ma, Xiaofeng Li, Yingxin Zhu. An hourly simulation method for outdoor thermal environment evaluation, Building Simulation 2015, 8(2)113-122

[56]   Weilin Cui, Qin Ouyang, Yingxin Zhu, Field study of thermal environment spatial distribution and passenger local thermal comfort in aircraft cabin, Building and Environment, 80(2014) 213-220

[57]   Bin Cao, Yingxin Zhu, Min Li, Qin Ouyang: Individual and district heating: A comparison of residential heating modes with an analysis of adaptive thermal comfort, Energy and Buildings, 78(2014)17-24

[58]   Li Huang, Edward Arens, Hui Zhang, Yingxin Zhu, Applicability of whole-body heat balance models for evaluating thermal sensation under non-uniform air movement in warm environments, Building and Environment, 75(2014) 108-113

[59]   Maohui Luo, Xiang Zhou, Bin Cao, Yingxin Zhu, Can personal control influence human thermal comfort? A field study in residential buildings in China in winter, Energy and Buildings, 72 (2014) 411-418

[60]   Zhou Xiang, Ouyang Qin, Zhu Yingxin, Experimental study of the influence of anticipated control on human thermal sensation and thermal comfort, Indoor Air, 2014, 24: 171-177

[61]   Yingxin ZHU, Ling SONG & Jérôme Damiens, State of the Art of Green Building Standards and Labeling System Development in China, International Journal of Sustainable Building Technology and Urban Development, 19 Sept. 2013

[62]   朱穎心、宋淩,中華人民共和國の綠色建築評價ツールと評價ランクの発展,《空氣調和•衞生工學》,第87卷第5号,35-392013

[63]   Juan Yu, Guoguang Cao, Ouyang Qin, Weilin Cui and Yingxin Zhu, People who live in a cold climate: thermal adaptation differences based on availability of heating, Indoor Air,2013, 23(4) 303-310

[64]   Cao Bin, Shang Qi, Dai Zizhu, Yingxin Zhu. The impact of Air-conditioning usage on sick building syndrome during summer in China. Indoor and Built Environment, 2013, 22, 3: 490–497.

[65]   Li Huang, Qin Ouyang, Yingxin Zhu, Lingfei Jiang. A study about the demand for air movement in warm environment. Building and Environment, (2013) 61: 27-33

[66]   Weilin Cui, Guoguang Cao, Qin Ouyang, Yingxin Zhu, Influence of dynamic environment with different airflows on human performance. Building and Environment, 62(2013) 124-132

[67]   Weilin Cui, Guoguang Cao, Jung Ho Park, Qin Ouyang, Yingxin Zhu, Influence of indoor air temperature on human thermal comfort, motivation and performance, Building and Environment, 68 (2013) 114-122

[68]   de Dear RJ, Akimoto T, Arens EA , Brager G, Candido C, Cheong KWD, Li B, Nishihara N, Sekhar SC, Tanabe S, Toftum J, Zhang H, Zhu Y. Progress in thermal comfort research over the last twenty years. Indoor Air. 2013 , 23:442-461.

[69]   Juan Yu, Qin Ouyang, Yingxin Zhu, Henggen Shen, Guoguang Cao, Weilin Cui, A Comparison of the Thermal Adaptability of People Accustomed to Air Conditioned Environments and Naturally Ventilated Environments, Indoor Air, 2012, 22: 110–118

[70]   Jie Ma, Xiaofeng Li, Yingxin Zhu: A simplified method to predict the outdoor thermal environment in residential district, Building Simulation, 5(2) 157-167, 2012

[71]   Zhen Zeng, Xiaofeng Li, Cheng Li, Yingxin Zhu, Modeling ventilation in naturally ventilated double skin façade with a ventilation blind. Building and Environment, 2012. 57:1-6

[72]   Li Huang, Qin Ouyang, Yingxin ZHU, Perceptible Airflow Fluctuation Frequency and Human Thermal Response, Building and Environment, 2012, 54: 14-19

[73]   Li Huang, Yingxin Zhu, Qin Ouyang, Bin Cao: A Study on the Effects of Thermal, Luminous, and Acoustic Environments on Indoor Environmental Comfort in Offices, Building and Environment, 2012, 49: 304-309

[74]   Cheng Li, Xiaofeng Li, Yaxuan Su, Yingxin Zhu. A new zero-equation turbulence model for micro-scale climate simulation. Building and Environment. 2012, 47: 243-255.

[75]   Jinjing Hua, Qin Ouyang, Yiran Wang, Hui Li, and Yingxin Zhu: A Dynamic Air Supply Device Used to Produce Simulated Natural Wind in an Indoor Environment, Building and Environment, 47(2012) 349-356, 2012

[76]   Bin Cao, Qin Ouyang, Yingxin Zhu, Li Huang, Hu Hongbo, Deng Gaofeng: Development of a multivariate regression model for overall satisfaction in public buildings based on field studies in Beijing and Shanghai, Building and Environment, 47(2012) 394-399, 2012

[77]   Bin Cao, Yingxin Zhu, Qin Ouyang, Xiang Zhou, Li Huang, Field study of human thermal comfort and thermal adaptability during the summer and winter in Beijing, Energy and Buildings, 43(2011)1051-1056, 2011L Huang, YX Zhu, Q Ouyang, B Cao, Field survey of indoor thermal comfort in rural housing of northern China in heating season, Journal of Southeast University (English Edition), 2010, 26 (2)169-172

[78]   J Yu, YX Zhu, Q Ouyang, B Cao, Experimental study on the effects of climatic characteristics on people's adaptability to thermal environment, Journal of Southeast University (English Edition), 2010, 26 (2)279-282

[79]   Yingxin ZHU, Borong LIN, Bin YUAN, Low-cost green buildings practice in China: Library of Shandong Transportation College, Frontiers of Energy and Power Engineering in China, 2010, 4(1) 100-105

[80]   Feng Ning, Ma Jie, Lin BR, Zhu YX, Impact of landscape on wind environment in residential area, Journal of Central South University of Technology, 16 (Suppl. 1) 80-83, Dec. 2009

[81]   Yu Qiong, Zhou XR, Lin BR, Zhu YX, Simplified prediction model for lighting energy consumption in office building scheme design, Journal of Central South University of Technology, 16 (Suppl. 1) 28-32, Dec. 2009

[82]   Gu Lijing, Lin Borong, Gu Daojin, Zhu Yingxin, An endpoint damage oriented model for life cycle environmental impact assessment of buildings in China, Chinese Science Bulletin, 53 (23), 3762-3769, Dec. 2008

[83]   Borong Lin, Xiaofeng Li, Yingxin Zhu & Youguo Qin, Numerical simulation studies of the different vegetation patterns’ effect on outdoor pedestrian thermal comfort, Journal of Wind Engineering and Industrial Aerodynamics, 96 (2008) 1707-1718, 2008

[84]   Lijing Gu, Borong Lin, Yingxin Zhu, Daojin Gu, Mingxing Huang, Jiazi Gai, Integrated assessment method for building life cycle environmental and economic performance, Building Simulation, an International Journal, 2008 (2) 169-177 2008

[85]   Chunhai Xia, Yingxin ZHU & Boronmg LIN, Building Simulation as Assistance in the Conceptual Design, Building Simulation, an International Journal, 2008 (1) 46-52, 2008

[86]   Xia Chunhai, Zhu Yingxin, Borong Lin. Renewable energy utilization evaluation method in green buildings. Renewable Energy, 2008, 33 (5)883-886.

[87]   HJ Li, XC Chen, Q Ouyang, YX Zhu, Wavelet Analysis on Fluctuating Characteristics of Airflow in Building Environments, Building and Environment, 42(12) 4028-4033, 2007

[88]   Xia Chunhai, Zhu Yingxin, Zhou Xiang. Application of Underground Pipe System in Residential Building in Different Region. Journal of Harbin Institute of Technology (New Series), v 14, n SUPPL., January, 2007, p 348-351.

[89]   Gu Lijing, Gu Daojing, Lin Borong, Zhu Yingxin, Study on the effect of different envelopes on life cycle environmental load of residential buildings, Journal of Harbin Institute of Technology (New Series), Vol.14 Sup., Jan. 2007, 14(sup.) pp431-434.

[90]   Chen Haibo, Zhu Yingxin, Energy saving and thermal comfort problems of residential buildings which adopt concentrated HVAC system, Journal of Harbin Institute of Technology (New Series), Vol.14 Sup., Jan. 2007: p 176-178

[91] Zhou X, Ouyang Q, Lin G, Zhu Y, Impact of Dynamic Airflow on Human Thermal Response, INDOOR AIR. 16 (5) 348-355, 2006

[92] LI Liang, LI Xiaofeng, LIN Borong, Zhu Yingxin, Improved k-e two-equation turbulence model for canopy flow, Atmospheric Environment, 40 (4) 762-770, Feb. 2006

[93] Ouyang Qin, Dai Wei, Li Hongjun, Zhu Yingxin, Study on Dynamic Characteristics of natural and mechanical wind in built environment using spectral analysis, Building and Environment, 41 (4) 418-426, 2006

[94]   Xia Chunhai, Zhou Xiang, Ouyang Qin, Zhu Yingxin, Numerical Simulation and Analysis of Underground Duct System, Acta Energiae Aolaris Sinica, 27(9) 923-928, 2006

[95]   C. H. Xia, Y. X. Zhu, H. B. Chen, Z. Han, G. H. Xu, A case study of continuous commissioning of VAV system in China, Journal of Harbin Institute of Technology (New Series), Oct . 2006

[96]   Yingxin ZHU, Borong LIN, Sustainable Housing and Urban Construction in China, Energy and Buildings, 36 (12) 1287-1297, Dec. 2004

[97]   LIN Borong, TAN Gang, WANG Peng, SONG ling, ZHU Yingxin: Study on the thermal performance of the Chinese traditional vernacular dwellings at Wannan area in summer: field measurements and data analysis, Energy and Buildings, 36 (1) 73-78, Jan. 2004

[98]   Yingxin Zhu, Yinping Zhang, Gang Li, Fengjun Yang, Heat transfer processes during an unfixed solid phase change material melting outside a horizontal tube, International Journal of Thermal Sciences, 40 (6) 550-563, June, 2001

[99]   ZHANG Yinping, SU Yan, ZHU Yingxin, HU Xianxu, A general model for analyzing the thermal performance of the heat charging and discharging processes of latent heat thermal energy storage systems, Journal of Solar Energy Engineering-Transactions of the ASME, 123 (3) 232-236 AUG 2001

[100]    Yingxin Zhu, Yan Zhang, Modeling of Thermal Processes for Internal Melt Ice-On-Coil Tank Including Water-Ice Density Difference, Energy and Buildings, 33 (4) 363-370, April 2001

[101]    Yingxin Zhu, Yan Zhang, Dynamic Modeling of Encapsulated Ice Tank for HVAC System Simulation, International Journal of HVAC & R Research, 6 (3) 213-228, July 2000

[102]    Yanbing Kang, Yinping Zhang, Yi Jiang and Yingxin Zhu, A General Model for Analyzing the Thermal Characteristics of a Class of Latent Heat Thermal Energy Storage System, Journal of Solar Energy Engineering, 121 (4) 185-193, NOV 1999

[103]    中原信生、朱穎心,空調システムの働的シミュル-ションの働向とその意,《空気調和·衛生工學》, 68卷第3號,pp1-10, 19943

Nobuo Nakahara & Yingxin Zhu, The State of the Art on the Dynamic Simulation of HVAC System and Its Significance (Japanese), Journal of SHASE (Society of Heating, Air-conditioning, and Sanitation Engineering) of Japan , 68 (3) 1-10, Mar 1994

[104]    Yingxin Zhu, Hideharu Niwa, Xiangyang Chen & Nobuo Nakahara, Study on the Dynamic Behavior and Evaluation of Energy·Environment Performance in HAVC Reference System for BOFD (English), Transactions of AIJ (Architecture Institute of Japan), No.461, pp69-79, July 1994

朱穎心、丹羽英治、陳向陽、中原信生,VAV調システムの挙働BOFDのためのエネルギ一·境性能評價する研究,《日本建學會畫系文集》,第461号,pp69-79, 19947

 

中文期刊

[1]      紀文傑、杜衡、朱穎心、曹彬、連之偉、劉淑麗、楊昌智,對熱環境評價指标标準有效溫度SET”的重新解讀,《beat365學報(自然科學版)》,2021-04-26

[2]      朱穎心,如何營造健康舒适的建築熱環境——建築環境與人體舒适及健康關系的探索,《世界建築》,2021(03) 42-45

[3]      賈欣雨、朱穎心、曹彬,我國大型航站樓座椅區夏季室内旅客熱舒适調研,《建築科學》,202137(02)

[4]      黃彥祥、朱穎心、林波榮,航站樓旅客滿意度與空間關系解析,《建築科學》,202137(02)

[5]      趙海湉、周政翰、林波榮、劉實、朱穎心、孫弘曆、劉建華、張菁華,不同空調系統末端熱舒适現場測試對比研究,《暖通空調》,202151(07)

[6]      馬曉明、李曉鋒、朱穎心,基于TRNSYS的地鐵車站公共區冷負荷預測模型,《都市快軌交通》,202134(02)

[7]      朱穎心,碳中和目标下的建築環境營造,《建築節能》,202108

[8]      趙海湉、林波榮、王需、朱穎心、孫弘曆、劉建華、張菁華、陳珂、周政翰、彭昱達,一種基于數據驅動的空調系統能耗逐日評價指标,《暖通空調》,202010

[9]      趙海湉、王需、林波榮、朱穎心、張菁華、孫弘曆,使用需求參數對建築大數據能耗預測影響規律初探,《建築節能》,202007

[10]   孟瑤、牟迪、曹彬、朱穎心,溫和地區自然通風辦公建築的實際熱環境評價研究,《建築節能》,202006

[11]   餘娟、林波榮、黃彥祥、趙海湉、朱穎心,我國航站樓用能和室内環境質量調研與實測分析,《beat365學報(自然科學版)》,2020年,第6卷第12期,977-984

[12]   張宏、曹彬、劉錦紅、劉加平、朱穎心、謝靜超,熱濕氣候區遠海島礁自然通風建築熱舒适實驗研究,《暖通空調》,2019年,49(8) 11-17

[13]   紀文傑、曹彬、朱穎心,北方冬季供暖期及其前後的室内熱濕環境分析及熱适應性研究,《暖通空調》,201949(8) 103-107.

[14]   紀文傑、曹彬、朱穎心,建立一種新的熱适應預測評價模型——預測熱感覺PTS模型,《暖通空調》,201949(6) 39-45.

[15]   王子涵、曹彬、林波榮、朱穎心,北京某既有住區建築環境實測與老年住戶居住舒适性評價研究,《西部人居環境學刊》,201934(5): 92-99.

[16]   紀文傑、羅茂輝、曹彬、朱穎心,長期熱經曆對熱舒适評價的長期熱經曆對熱舒适評價的影響研究及熱适應性探讨,《暖通空調》,201848(1) : 71,78-82

[17]   朱旻琳、歐陽沁、朱穎心、沈恒根,偏熱環境下睡眠熱舒适研究綜述,《暖通空調》,201747(10)35-44

[18]   朱旻琳、歐陽沁、朱穎心、沈恒根,偏熱環境下氣流對睡眠人體的冷補償上限初探,《暖通空調》 201706

[19]   朱穎心,熱舒适的,多少算合适?《世界建築》,2015年第7期,35-37

[20]   王者、劉加根、林波榮、朱穎心,地道通風技術在貴安新區清控人居科技示範樓中的應用,《生态城市與綠色建築》,2015年,第2期,36-41

[21]   餘娟、歐陽沁、朱穎心,偏熱環境下空調非等溫可感送風對人體熱舒适影響的實驗研究,《暖通空調》,2015年第4

[22]   曹彬、羅茂輝、朱穎心、王昭俊、周翔、劉剛,基于實際建築環境的人體熱适應研究(3)--冬季不同氣候區人體熱适應特征對比,《暖通空調》 2015年第1

[23]   曹彬、黃莉、歐陽沁、朱穎心,基于實際建築環境的人體熱适應研究(1)——夏季空調與非空調公共建築對比、《暖通空調》,2014年,44(8) 74-79.

[24]   曹彬、李敏、歐陽沁、朱穎心,基于實際建築環境的人體熱适應研究(2)——集中供暖與分戶獨立采暖住宅對比,《暖通空調》,2014年,44(10) 79-83.

[25]   羅茂輝、李敏、曹彬、馮潇潇、朱穎心、歐陽沁,北京冬季住宅供暖熱舒适與經濟性研究,《暖通空調》2014年,第44卷第2期,21-25

[26]   曹彬、黃莉、歐陽沁、朱穎心,基于實際建築環境的人體熱适應研究(1——夏季空調與非空調公共建築對比,《暖通空調》2014年第44卷第8期,74-79

[27]   李丞、李曉鋒、蘇雅璇、朱穎心,用于建築繞流模拟的零方程模型,《beat365學報(自然科學版)》,2013年,第53卷第5期,589-594600

[28]   崔惟霖、歐陽沁、餘娟、曹國光、李敏、朱穎心,相同熱感覺條件下不同環境溫度與風速組合對人體舒适性及工作效率的影響,《暖通空調》,2013年,第43卷第7

[29]   馬傑、李曉鋒、朱穎心,住區微氣候的數值模拟方法研究,《太陽能學報》,2013年,3412期,2133-2138

[30]   王亦然、華金晶、歐陽沁、李鑫、朱穎心,不同湍流強度模拟自然風的人體熱舒适研究,《暖通空調》,2013年,第43卷第4

[31]   林波榮、劉念雄、彭渤、朱穎心,國際建築生命周期能耗和CO2排放比較研究,《建築科學》,2013年,第43卷第8

[32]   劉加根、朱穎心、章宇峰、莊炜茜,南京南火車站滲透風模拟及實測驗證研究,《生态城市與綠色建築》,201202期,107-111

[33]   曹彬、朱穎心、歐陽沁、周翔、羅茂輝,不同氣候區住宅建築冬季室内熱環境及人體熱适應性對比,《 beat365學報(自然科學版) 2012年,52(4) 499-503

[34]   朱穎心、林波榮,國内外不同類型綠色建築評價體系辨析,《暖通空調》,2012年,第42卷第10期,9-1425

[35]   曹彬、朱穎心、歐陽沁、黃莉,北京校園建築夏冬兩季室内熱舒适性現場調查研究,《暖通空調》,2012年第42卷第5期,84-89

[36]   黃莉、朱穎心、歐陽沁,動态氣流作用下的人體可感頻率,《暖通空調》,2012年第42卷第5期,96-99

[37]   朱穎心、谷立靜,建築光伏一體化的全生命周期環境影響分析,《生态城市與綠色建築》,2010年創刊号,42-45

[38]   曹彬、朱穎心、歐陽沁、周翔、黃莉,北京地區冬季室内人體熱舒适性及熱适應性調查,《暖通空調》,2010年,第40卷第5期,98-101

[39]   餘娟、朱穎心、歐陽沁、沈恒根、周翔,基于生理指标評價人體熱舒适、工作效率和長期健康的研究路線探讨,《暖通空調》,2010年第40卷第3期,1-5

[40]   華金晶、歐陽沁、朱穎心、李卉,一種基于直流無刷電機控制的工位型個體化動态送風裝置的研發與應用研究,《建築科學》,2010年,第26卷第10期,53-59

[41]   曹彬、朱穎心、歐陽沁、黃莉、程浩蕃、胡紅波、鄧高峰,公共建築室内環境質量與人體熱舒适性的關系研究,《建築科學》,2010年,第26卷第10期,126-130

[42]   周翔、朱穎心、歐陽沁、張旭,環境控制能力對人體熱感覺影響的實驗研究,《建築科學》2010年第26卷第10期,177-180

[43]   宋淩、朱穎心,多管地道降溫的模拟研究,《暖通空調》,2009年,第39卷第9

[44]   韓铮、朱穎心,不同風系統末端裝置的能效比比較,《暖通空調》,2009年,第39卷第2

[45]   李俊、李曉鋒、朱穎心,地鐵屏蔽門漏風量的計算方法及其對空調負荷的影響分析,《建築科學》 2009 (12)

[46]   陳海波、朱穎心,基于案例調查的公共建築節能進展緩慢的障礙分析,《建築科學》,20096

[47]   夏春海、朱穎心,面向建築方案的節能設計研究——設計流程和工具,《建築科學》,20096

[48]   陳海波、朱穎心、李震,公共機構信息機房環境控制與能耗問題及對策,《建築節能》,2008年第9

[49]   林威、林波榮、朱穎心,水平外百葉遮蔽系數計算方法比較研究,《建築科學》,24(10) 55-632008

[50]   谷立靜、林波榮、顧道金、朱穎心,中國建築生命周期環境影響評價的終點破壞模型《科學通報》,53 (15)20081858-1863

[51]   朱穎心、周翔、曹彬、歐陽沁、黃莉、李宏軍,偏熱環境下操作溫度、服裝熱阻、季節對人體熱感覺影響的實驗研究,《暖通空調增刊》,200810月,第38卷,112-118

[52]   朱穎心、王剛、江億,區域供冷系統能耗分析,《暖通空調》,2008年,第38卷第1

[53]   夏春海、朱穎心、周潇儒,基于模拟的空調系統運行水平評價方法,《暖通空調》,2008年第38卷第8期,117120

[54]   夏春海、朱穎心、林波榮,建築可再生能源利用評價方法研究,《太陽能學報》,200728(6)676-681

[55]   夏春海、朱穎心、林波榮,建築方案階段建築性能模拟方法研究綜述,《暖通空調》,第37卷第12期,32-402007

[56]   顧道金、谷立靜、朱穎心、林波榮、蓋甲子,建築建造與運行能耗的對比分析,《暖通空調》,第37卷第5期,58-6020075

[57]   韓铮、夏春海、朱穎心、徐國海,OCM方法在變風量系統性能驗證中的應用,《建築科學》,第23卷第4期,107-11220074

[58]   朱穎心、歐陽沁、李宏軍、陳曉春,建築環境中氣流動态特征研究,《化工學報》,第57卷增刊,8-14200612

[59]   顧道金、朱穎心、谷立靜,中國建築環境影響的生命周期評價,《beat365學報(自然科學版)》,2006年第46卷,第12期,19531956

[60]   林波榮、朱穎心、李曉鋒,基于模拟技術的綠色建築規劃設計實例分析,《建築科學》,200622 (4A)8-11

[61]   陳曉春、李宏軍、歐陽沁、朱穎心,小波變換在建築環境氣流湍動特性研究中的應用,《暖通空調》,200637(1)

[62]   周翔、朱穎心,具備1/f 紊動特性的仿自然風産生方法研究,《暖通空調增刊》,2006

[63]   夏春海、朱穎心、徐國海,變風量系統中環狀風道的網絡計算方法,《暖通空調》,2006年,37(12)

[64]   夏春海、朱穎心、韓铮、徐國海,Commissioning在變風量改造工程中的應用,《暖通空調》,200636(11)

[65]   袁圓、林波榮、朱穎心,基于負荷動态模拟的冰蓄冷系統設計及控制優化研究,《暖通空調》,2006年,36(190) 75-79

[66]   夏春海、周翔、歐陽沁、朱穎心,地道通風系統的數值模拟與分析,《太陽能學報》2006年,第27卷,第9期,923-928

[67]   朱培根、朱穎心,地鐵車廂内人員新風量的研究,《暖通空調》,2006年第36卷第3

[68]   李亮、李曉鋒、朱穎心,地鐵隧道火災自然排煙模式數值模拟研究,《暖通空調》,2005年第35卷第12期,6-9

[69]   歐陽沁、戴威、朱穎心,自然風與機械風的譜特征分析,《beat365學報(自然科學版)》,2005年第45卷第12

[70]   陳海波、朱穎心,辦公建築變風量系統設計中的熱舒适問題,《暖通空調》,2005年第35卷第9期,75-79

[71]   歐陽沁、戴威、周翔、朱穎心,自然通風環境下的熱舒适分析與思考,《暖通空調》,2005年,第35卷,第8期,16-19

[72]   朱穎心、歐陽沁、戴威,建築環境氣流紊動特性研究綜述,beat365學報(自然科學版),2004年第44卷第12期,1622-1625

[73]   朱培根、朱穎心、李曉峰,地鐵通風與熱模拟方案及其分析,《流體機械》,2004年第32卷第11

[74]   李曉鋒、張志勤、林波榮、朱穎心,圍合式住宅小區微氣候的實驗研究《beat365學報》,43(12) 1638-16412003

[75]   宋淩、林波榮、朱穎心,徽派民居夏季熱環境模拟分析,《beat365學報》,2003年,第43卷,第6期,826-828

[76]   張寅平、王馨、朱穎心、林坤平、徐煦、周翔、陳斌嬌、李俊、陳亮亮、江億,醫用降溫服熱性能與應用效果研究,《暖通空調》,SARS特集,20036月,第33卷。

[77]   林波榮、譚剛、王鵬、宋淩、朱穎心、翟光逵,徽派民居的熱環境測試分析,《beat365學報》,2002年,第42卷,第8 1071-1074

[78]   孟斌斌、朱穎心、林波榮,部分負荷下一次泵水系統變流量性能研究,《暖通空調》,2002年,第32卷,第6期,108-110

[79]   江泳、朱穎心,地鐵公共區冬季溫度設計标準探讨,《暖通空調》,2002年,第32卷,第4期,20-22

[80]   歐陽沁、江泳、朱穎心、趙彬,關于地鐵隧道區間段阻塞工況臨界通風速度的研究,《地鐵與輕軌》,2002年第2

[81]   林波榮、王鵬、趙彬、朱穎心,傳統四合院民居風環境的數值模拟研究,《建築學報》,2002年第5

[82]   林波榮、李曉鋒、朱穎心,太陽輻射下建築外微氣候的實驗研究——建築外表面溫度分布及氣流特征,《太陽能學報》,第22卷,第3期,20017月,327-333

[83]   康豔兵、張寅平、江億、朱穎心,相變蓄熱球體堆積床傳熱模型及熱性能分析,《beat365學報(自然科學版)》,2000年第40卷第2期,106-109

[84]   張寅平、朱穎心、江億,水-空氣處理系統全熱交換模型和性能分析,《beat365學報(自然科學版)》,1999年,第10期,第39卷,35-38

[85]   朱穎心、張雁,内融冰冰式冰盤管蓄冷槽傳熱性能研究,《應用基礎與工程科學學報》,1999年,第3期,第7卷,307-312

[86]   朱穎心、江億,用于空調系統設計的全年雙負荷曲線分析法(TLCA),《暖通空調》,1998年第4期,43-46

[87]   李曉鋒、朱穎心,示蹤氣體濃度衰減法在民用建築自然通風中的應用,《暖通空調》,1997年,第27卷,第4期,7-10

[88]   彥啟森、朱穎心,一種室内空氣熱狀況模型簡化的新方法——理論分析與實驗研究,《制冷學報》,1991年第1期,1-6

[89]   彥啟森、江億、陸緻成、朱穎心,用于開發空調自控系統的空調系統實時仿真裝置,《制冷學報》,1987年,第1期,21-26

 

教學研究論文

[1]      朱穎心、石文星. 專業課慕課建設與翻轉課堂,《傳承與發揚beat365優秀教學傳統和經驗文集》,20215月,beat365出版社

[2]      朱穎心、石文星."暖通空調與冷熱源"慕課建設與混合式教學,《暖通空調》,20207月,第50卷,第7

[3]      朱穎心、李先庭,課程體系優化是工科專業教育理念更新的關鍵,《beat365教育研究》,2011年增1期,16-21

[4]      朱穎心、石文星,對工科專業課程教學方法的思考, 《高等建築教育》,201120(5) 78-82

[5]      肖勇全、張志剛、朱穎心、付祥钊,建環專業平台課程體系構建與實踐,《暖通空調》,20046月,第34卷第6期,39-42

[6]      朱穎心,工程實踐是培養學生專業能力的最好課堂,《高等建築教育》,200312月,第4期(第12卷),67-69

[7]      朱穎心,建築環境學課程建設與教學方法,《高等建築教育》,20039月,第3期(第12卷),26-29

[8]      Yingxin Zhu, Educating and Training of HVAC Engineers and Technicians in China, Proceedings of the 7th International Energy Agency Conference on Heat Pump Technologies, May 2002, Beijing, China (Keynote Report)

[9]      朱穎心,暖通空調課程設計的改革與實踐,《制冷與空調》,20028月,第2卷,第4期,7-11

[10]   朱穎心、江億、趙榮義、狄洪發,工程類學科專業課程體系改革與建設,《beat365教育研究》,1997年第2期,101-104

 

國際學術會議大會主旨報告和邀請報告

1.     How to create comfortable and healthy indoor environment?A new opportunity for HVAC. ISHVAC 2019, 14 July, 2019, Harbin, China (Plenary report)

2.     How to create comfortable and healthy indoor environment? Healthy Buildings Asia 2019, 25 Oct. 2019, Changsha, China (Keynote report)

3.     How to create comfortable and healthy indoor environment? A new challenge for sustainable buildings. Special lecture for Uichi Inouye Memorial Award Asia International Award, Waseda University, 10th May, 2018, Tokyo, Japan (Invited talk)

4.     How comfortable is adequate? Rethinking on indoor thermal environment creation. 10th Anniversary Conference of Korean Institute of Architectural Sustainable Environment and Building Systems (KIAEBS), Nov. 2017, Seoul, Korea (Plenary report)

5.     How comfortable is adequate? The 10th International Symposium on Heating, Ventilation and Air-conditioning (ISHVAC 2017), 22rd Oct. 2017, Jinan, China (Plenary report)

6.     Personal Thermal Comfort System, A New Challenge to Building Energy Simulation. The 3rd Asia Conference of International Building Performance Simulation Association, 28 Nov. 2016, Jeju, Korea (Keynote speech)

7.     Adaptive thermal comfort in low energy office building under subtropical climate. Singapore Berkeley Building Efficiency and Sustainability in the Tropics (SinBerBEST) Annual Symposium, March 2016, Singapore (Plenary report)

8.     Low Energy Design in mixed-mode office buildings under subtropical climate: A case study in Shenzhen. International Conference of Mitigating and Adapting Built Environments for Climate Change in the Tropics, March 2015, Jakarta, Indonesia (Keynote speech)

9.     Dynamic Thermal Environment and Thermal Comfort. INDOOR AIR 2014, July 2014, Hong Kong (Keynote speech)

10.     How to assess occupants' thermal comfort in mixed-mode buildings?——A field study in subtropical climate. The 2nd Int. Sym. on the Interaction between Human and Building Environment, Feb. 2014, Seoul, Korea (Plenary report)

11.     Occupants' behavior adaptation-The key feature of the sustainable buildings. International Symposium on Creative Sustainability in Architecture and Urbanism toward the Green Growth, March, 2014, Seoul, Korea (Plenary report)

12.     State of the Art of Green Building Standard and Labeling System development in China. International conference on Sustainable Building Asia, July 2013, Seoul, Korea (Plenary report)

13.     Natural ventilation and thermal comfort in dynamic thermal environments. INDOOR AIR 2011, June 2011, Austin, US (Plenary report)

14.     Natural Ventilation and Dynamic Thermal Comfort. AIVC International Conference 2010: Low Energy and Sustainable Ventilation Technologies for Green Buildings, Oct. 2010, Seoul, Korea (Plenary report)

15.     The Route to Low Carbon and Energy Efficient in China. International Conference on Carbon Reduction, Sept. 2010, Hong Kong (Keynote speech)

16.     The Route to Sustainable development for China-Rethink on adaptability of building energy efficient technologies. International Green Building Conference, Oct. 2009, Singapore (Keynote speech)

17.     How developing countries find their own way to urban sustainabilityThinking from the building energy research in China. International Symposium on Realizing Low Carbon Cities: Bridging science and policy, Feb. 2009, Nagoya, Japan (Invited talk)

18.     Buildings and EnergyChinese Perspective. International Forum-Integrating Climate Change Mitigation in Urban Development in Asian Cities, Dec. 2007, Nagoya, Japan (Invited talk)

19.     Air flow Fluctuation and Dynamic Thermal Environment. The 5th International Symposium on Heating, Ventilation and Air-conditioning (ISHVAC 2007), Sept. 2007, Beijing, China (Plenary report)

20.     Sustainable Building Market Transformation in ChinaChance and Challenge. International Workshop on Strategic Market Transformation for the Promotion of Sustainable Buildings, Dec. 2006, Tokyo, Japan (Invited talk)

21.     Research and application of green building assessment system in China: from GOBAS to GBAS. 6th International Symposium on Architectural Interchanges in Asia, Oct. 2006, Daegu, Korea (Plenary report)

22.     Development of Sustainable Building Rating System and Policy in China. AIK 1st Korea-Japan-China international conference, March, 2006, Seoul, Korea (Plenary report)

23.     Green Building Development in China. Design 2005 Symposium-East Meets West, April 2005, Nottingham, UK (Plenary report)

24.     Airflow Fluctuation & Thermal Environment. Joint SymposiumNew Challenges in Building Services, Nov. 2005, Hong Kong (Plenary report)

25.     Sustainable Building Development in China. 2nd International Workshop on Sustainable Habitat Systems, Fukuoka, Japan, October 2005 (Invited talk)

26.     GOBAS——China Green Olympic Building Assessment System. The 6th International Conference on Eco-Balance, 25-27 Oct., 2004, Tsukuba, Japan (Keynote speech)

27.     Tsinghua Green Building Research CenterA Low Energy Demo Building. 2004 Asia-Pacific Conference of International Solar Energy Society, Oct. 2004, Gwangju, Korea (Keynote speech)

28.     Airflow fluctuations and thermal environment: A literature review. The 4th international Symposium on HVAC (ISHVAC’03), Beijing, China, Oct. 2003 (Plenary report)

29.     Educating and Training of HVAC Engineers and Technicians in China. The 7th International Energy Agency Conference on Heat Pump Technologies, May 2002, Beijing, China (Plenary report)

 

國内大會報告/邀請報告

1.     面向碳中和的公共建築室内環境營造再認識,第十八屆“beat365建築節能學術周”主題論壇:公共建築節能——工程實踐助力實現雙碳目标,2022326日,北京

2.     雙碳目标下供熱舒适度及室溫問題研究,第四屆中國供熱學術年會,2021822

3.     碳中和目标下的建築環境營造,SSCAE城市與建築國際高峰論壇,202182

4.     從熱舒适研究談室内環境營造的發展方向,第二屆華人能源與人工環境國際學術會議,2021717日,成都

5.     從熱舒适研究談建築雙碳目标的實現,上海交通大學邬達克講堂,202175日,上海

6.     室内熱環境與人體的舒适健康,中國國際暖通高峰論壇,2021512日,北京

7.     健康的低碳建築熱環境營造,第六屆大連市綠色建築公益周,2021426

8.     住宅用什麼樣的空調更節能?第十七屆“beat365建築節能學術周” 中國低碳城鎮住宅發展論壇,2021327日,北京

9.      提高青年教師工程實踐能力的途徑,第二十二屆全國暖通空調制冷學術年會教育論壇,20201014日,太原

10.     綠色建築與室内健康環境,2019建築科技城市更新技術論壇,20191128日,上海

11.     關于博士生培養的一點體會,第十四屆全國人工環境學科博導論壇,2019921,長沙

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