人物經(jīng)歷
1992-2002在清華大學(xué)熱能系和建筑學(xué)院(建筑環(huán)境專業(yè))學(xué)習(xí),獲工學(xué)學(xué)士、第二學(xué)位輔修學(xué)士、工學(xué)碩士和博士學(xué)位,之后進(jìn)入清華大學(xué)力學(xué)系從事博士后研究,2004起在清華大學(xué)建筑學(xué)院從事教學(xué)科研工作。
學(xué)習(xí)經(jīng)歷
1992.9-1997.7清華大學(xué)熱能工程系供熱通風(fēng)與空氣調(diào)節(jié)工程專業(yè) 工學(xué)學(xué)士;
1994.9-1997.7 清華大學(xué)環(huán)境工程系環(huán)境工程專業(yè) 工學(xué)輔修學(xué)士;
1997.9-2002.7 清華大學(xué)建筑學(xué)院建筑技術(shù)科學(xué)系 工學(xué)碩士、博士。
工作經(jīng)歷
長聘教授(2016.8-今),清華大學(xué)建筑學(xué)院建筑技術(shù)科學(xué)系;
教授 (2012.12-今),清華大學(xué)建筑學(xué)院建筑技術(shù)科學(xué)系;
副教授(2006.1-2012.11),清華大學(xué)建筑學(xué)院建筑技術(shù)科學(xué)系;
講師(2004.7-2005.12),清華大學(xué)建筑學(xué)院建筑技術(shù)科學(xué)系;
博士后研究(2002.9-2004.7),清華大學(xué)工程力學(xué)系流體力學(xué)教研組。
研究方向
室內(nèi)空氣品質(zhì)(IAQ)-- 建筑環(huán)境氣溶膠顆粒的運(yùn)動傳播規(guī)律及危害評價;
建筑環(huán)境與設(shè)備的流體流動和傳熱的數(shù)值模擬;
通風(fēng)和空氣潔凈技術(shù)。
主要貢獻(xiàn)
科研項目
共計30余項。包括負(fù)責(zé)國家自然科學(xué)基金4項、十三五重大研發(fā)計劃項目課題一項等。
學(xué)術(shù)工作
國際期刊 Building Simulation:Associate Editor;
國際期刊Atmospheric Environment,Special Issue Editor。
教學(xué)工作
《空氣潔凈技術(shù)》
《室內(nèi)空氣流動數(shù)值模擬技術(shù)》
《建筑設(shè)備》暖通空調(diào)部分
期刊論文
Comparison of indoor aerosol particle concentration and deposition in different ventilated rooms by numerical method.Building and Environment.2004,39(1): 1-8
Numerical study of the transport of droplets or particles generated by respiratory system indoors.Building and Environment. 2005 40(8): 1032-1039
Modeling particle deposition from fully developed turbulent flow in ventilation duct.Atmospheric Environment. 2006, 40(3): 457-466
Particle deposition in indoor environments: analysis of influencing factors.Journal of Hazardous Materials. 2007, 147: 439-448
Particle dispersion and deposition in ventilated rooms: testing and evaluation of different Eulerian and Lagrangian models.Building and Environment. 2008, 43(4): 388-397
Modeling of ultrafine particle dispersion in indoor environments with an improved drift flux model.Journal of Aerosol Science, 2009, 40(1): 29-43
Some questions on dispersion of human exhaled droplets in ventilation room: answers from numerical investigation.Indoor Air. 2010, 20(2): 95-111
Review of relationship between indoor and outdoor particles: I/O ratio, infiltration factor and penetration factor.Atmospheric Environment. 2011, 45: 275-288
Indoor Exposure to “Outdoor PM10”: Assessing its Influence on the Relationship between PM10 and Short-term Mortality in U.S. Cities.Epidemiology. 2012. 23(6): 870-878
Assessing the influence of indoor exposure to “outdoor ozone” on the relationship between ozone and short-term mortality in U.S. communities.Environmental Health Perspectives. 2012. 120(2):235-240
Investigating the geographical heterogeneity in the PM10-mortality associations in the China Air Pollution and Health Effects Study (CAPES): a potential role of indoor exposure to PM10 of outdoor origin.Atmospheric Environment. 2013. 75: 217-223
Modeled Exposure Assessment via Inhalation and Dermal Pathways to Airborne Semi volatile Organic Compounds (SVOCs) in Residences.Environmental Science & Technology. 2014, 48 (10): 5691-5699
Contribution of outdoor-originating particles, indoor-emitted particles and indoor secondary organic aerosols (SOA) to indoor PM2.5 concentration: A model-based estimation.Building and Environment. 2015. 90: 196-205