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张寅平

作者/整理:admin 来源:互联网 2017-07-24

  张寅平,男,博士,教授,清华大学建筑环境检测中心主任。北京市室内空气质量评价和控制重点实验室主任。

净化委技术专家张寅平

简介

 

 

1980-1991在中国科技大学学习,获学士(1985)、硕士(1988)和博士(1991)学位。

1994年来,先后赴德国斯图加特大学核能和热系统研究所、日本东京大学机械工程系、丹麦技术大学国际室内环境和能源中心做访问研究(丹麦技术大学Otto Monsted 访问教授,2007/ 2008)。1992-1997年任中国科技大学热科学和能源工程系副主任。

研究兴趣:室内空气质量、传热传质和贮能-节能。

发表国际学术期刊论文150余篇。论文被SCI收录150余篇。论文SCI他引3000余次,h因子35。参编10余项国家或行业标准,主编或参编学术专著/编著8本;获专利30余项,其中发明专利10余项。应邀在第11届、第13届国际室内空气学术大会(2008,丹麦;2014,香港)等国际学术大会上做大会主旨报告十余次。

主持了国家自然科学基金委创新群体项目、重点项目、重大国际合作项目,科技部十一五十二五科技支撑计划重大或重点项目课题,国家863课题和多项国内外横向合作课题。

主要学术兼职或活动:中国室内环境与健康专业委员会副主任委员兼秘书长,中国环境科学学会常务理事,中国建筑物理学会理事,中国环境学会咨询工作委员会委员;国际室内空气科学院会士(Fellow),国际室内空气学会空气净化科技委员会主席(2009-2014);Energy and Buildings副主编,Indoor AirBuilding and Environment PLoS ONE5个国际学术期刊编委科学通报(中、英文版、太阳能学报、暖通空调、Environmental Health Perspective(中文版)、建筑节能等多个国内学术期刊编委。

曾获国家杰出青年基金(2007)、教育部自然科学一等奖(2010, 排名第1)、四川省科技进步一等奖(2011,排名第3)、教育部自然科学二等奖(2005,排名第1)、住建部华夏科技二等奖(2015,排名第3)、教育部优秀青年教师基金(2001)、教育部霍英东优秀青年教师奖(1993);全国制冷空调行业夏安世杰出教授奖2011),清华大学学术新人奖(2003)和中国科技大学跨世纪人才奖(1995)
 

专业履历

 

 

北京市室内空气质量控制和评价重点实验室 主任(2015.7-)

清华大学建筑环境与设备工程研究所教授、所长(2008.9-2014.9)

清华大学建筑环境与设备工程研究所教授、副所长(1999.7-2008.9)

清华大学建筑环境与设备工程研究所副教授(1997.10-1999.7)

清华大学建筑环境检测中心主任(2009.10-)

中国科技大学工程热物理系副教授(1993.10-1997.10)

中国科技大学工程热物理系讲师(1991.10-1993.10)

曾任中国科技大学工程热物理系副主任(1992.3-1997.5
 

学术论文

 

 

代表性论著如下:

[20] Cao JP, Weschler C,Luo JJ, Zhang YP*, A novel method tosimultaneously measure source and sink parameters important for estimatingindoor exposures to SVOCs, Environ. Sci.&Technol., 2016, 50, 825-834

[19] Zhang YP*, Xiong JY, Mo JH, Gong MY, Cao JP, Understanding and controlling indoororganic pollutants: mass-transfer analysis and applications, Indoor Air, 2016, 26, 39-60

[18] Zhang YP*, Zhang Y, Shi WX, Shang R, Chen R, Wang X, A new approach, based upon inverse problem and variation method, of solving building energy and environment problems, Building and Environment. 2015(91), 204-218..

[17] Xiong JY, Wei WJ, Huang SD, Zhang YP*, Association between the emission rate and temperature for chemical pollutants in building materials: General Correlation and Understanding, Environ. Sci. & Technol., 47(2013), 8540-8547.

[16] Zhang YP, Mo JH, Wescher CJ*, Reducing health risks from indoor exposures in today’s rapidly developing urban China, Envirion. Health Perspective, 2013 (121), 751-755.

[15] Xiong JY, Yan W, Zhang YP*, Varying volume loading method: a convenient and rapid method for measuring the initial emittable concentration and partition coefficient of formaldehyde and other aldehydes in building materials, Environ. Sci. & Techno., 45(2011), 10111-10116.

[14] Xu QJ, Zhang YP*, Mo JH, Li XX, Indoor Formaldehyde Removal by Thermal Catalyst: Kinetic Characteristics, Key Parameters, and Temperature Influence,Environ. Sci. & Techno., 45(2011), 5754-5760.

[13] Xiong JY, Yao Y, Zhang YP*, C-history method, a new and rapid method of measuring the initial emittable concentration, diffusion and partition coefficients of formaldehyde and VOC in building materials, Environ. Sci. & Technol., 45(2011), 3584-3590.

[12] Zhang YP*, Mo JH, Li YG, et al., Can commonly-used fan driven indoor air cleaning techniques improve indoor air quality-A literature review,Atmos. Environ., 45(2011), 4329-4343.

[11] Zeng RL, Wang X, Di HF, Jiang F, Zhang YP*, New concepts and approach for developing energy efficient buildings: Ideal specific heat for building internal thermal mass, Energy and Buildings, 43(2011), 1081-1090.

[10] Mo JH, Zhang YP*, Xu QJ, Zhu YF, Lamson JJ, Zhao RY, Determination and risk assessment of by-products resulting from photocatalytic oxidation of toluene, Applied Catalysis B-Environmental. 89(2009), 570-576.

[9] Xiong JY, Zhang YP*, Wang XK, Chang DW, Macro-meso two scale model for predicting the VOC diffusion coefficients and emission characteristics of porous building material, Atmos. Environ,, 42 (2008), 5278-5290.

[8] Hu HP, Zhang YP*, Wang XK, Little JC, An analytical mass transfer model for predicting VOC emission from multi-layered building materials with convective surfaces on both sides. Inter.J. of Heat and Mass Transfer, 50 (2007), 2069-2077.

[7] Zhang YP*, Luo XX, Wang XK, Qian K, Influence of temperature on formaldehyde emission parameters of dry building materials,Atmos. Environ , 41(2007), 3203-3216.

[6] Zhang YP*, Ding JH, Yang R, Wang X, Influence of additives on thermal conductivity of shape-stabilized phase change materials, Solar Energy Materials & Solar Cells, 2006, 90 (11), 1692-1702.

[5] Mo JH, Zhang YP*, Yang R, Novel insight into VOC removal performance of photocatalytic oxidation reactors,Indoor Air, 2005, 15 (4): 291-300.

[4] Zhang YP*, Yang R, Zhao RY, A model for analyzing the performance of photocatalytic air cleaner in removing volatile organic compounds, Atmos. Environ, 2003, 37(24), 2003, 3395-3399.

[3] Xu Y, Zhang YP*, An improved mass transfer based model for analyzing VOC emissions from building materials,Atmos. Environ, 2003, 37(18), 2497-2505.

[2] Hu XX, Zhang YP*, Novel insight and numerical analysis of convective heat transfer enhancement with microencapsulated phase change material slurries: laminar flow in a circular tube with constant heat flow,Inter. J. of Heat and Mass Transfer, 45 (2002), 3163-3172.

[1]Zhang YP*, Jiang Y, Jiang Y, A simple method, T-history method, of determining the heat of fusion, specific heat and thermal conductivity of PCM, Measurement Science Technology, 10(1999), 3, 201-205