翁文國

翁文國

基本介紹

  • 中文名:翁文國
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:災害環境下人體損傷與個體防護
  • 任職院校:清華大學工程物理系
人物經歷,研究方向,主講課程,學術成果,學術兼職,榮譽獎項,

人物經歷

教育經歷
● 1998.09—2002.07 中國科學技術大學 火災科學國家重點實驗室 工學博士
● 1994.09—1998.07 中國科學技術大學 熱科學與能源工程系 工學學士
工作經歷
● 2011.12— 清華大學 工程物理系/公共安全研究院 教授
● 2005.12—2011.12 清華大學 工程物理系/公共安全研究院 副研究員
● 2003.11—2005.11 日本早稻田大學 日本學術振興會外國人特別研究員 (JSPS Postdoctoral Fellowship for Foreign Researchers)
● 2004.04—2005.12 中國科學技術大學 火災科學國家重點實驗室 副教授
● 2002.07—2004.04 中國科學技術大學 火災科學國家重點實驗室 講師

研究方向

(1)災害環境下人體損傷與個體防護
(2)城市公共安全風險管理
(3)人群聚集安全與疏散疏導
(4)典型災害(火災)動力學演化

主講課程

目前講授《安全工程中的動量能量質量輸運》、《災難逃生的科學問題》等本科生課程,《應急管理導論》、《人員疏散與個體防護技術》等研究生課程。

學術成果

發表學術論文100多篇,其中SCI/SSCI收錄70篇;獲得專利8項,軟體著作權22項。主要論文:
[1] Yang, J., Ni, S.J. and Weng, W.G. Modelling heat transfer and physiological responses of unclothed human body in hot environment by coupling CFD simulation with thermal model. International Journal of Thermal Sciences, 2017, 120: 437-445.
[2] Xu, X.Y., Ni, S.J., Fu, M., Zheng, X., Luo, N. and Weng, W.G. Numerical investigation of airflow, heat transfer and particle deposition for oral breathing in a realistic human upper airway model. Journal of Thermal Biology, 2017, 70: 53-63.
[3] Yang, J., Weng, W.G., Wang, F.M. and Song, G.W. Integrating a human thermoregulatory model with a clothing model to predict core and skin temperatures. Applied Ergonomics, 2017, 61: 168-177.
[4] Fu, M., Weng, W.G., Chen, W.W. and Luo, N. Review on modelling heat transfer and thermoregulatory responses in human body. Journal of Thermal Biology, 2016, 62: 189-2000.
[5] Chen, W.W. and Weng, W.G. Ultrafine lauric-Myristic acid eutectic/poly (meta-phenylene isophthalamide) form-stable phase change fibers for thermal energy storage by electrospinning. Applied Energy, 2016, 173: 168-176.
[6] Luo, N., Weng, W.G. and Fu, M. Theoretical analysis of the effects of human movement on the combined free-forced convection, International Journal of Heat and Mass Transfer, 2015, 91: 37-44.
[7] Yang, J., Weng, W.G. and Fu, M. A coupling system to predict the core and skin temperatures of human wearing protective clothing in hot environments. Applied Ergonomics, 2015, 51: 363-369.
[8] Fu, M., Yuan M.Q. and Weng, W.G. Modeling of heat and moisture transfer within firefighter protective clothing with the moisture absorption of thermal radiation. International Journal of Thermal Sciences, 2015, 96: 201-210.
[9] Weng, W.G., Kamikawa, D. and Hasemi, Y. Experimental study on merged flame characteristics from multifire sources with wood cribs, Proceedings of the Combustion Institute, 2015, 35(3): 2597-2606.
[10] Wang, J.Y., Weng, W.G. and Zhang, X.L. New insights into the crowd characteristics in Mina, Journal of Statistical Mechanics: Theory and Experiment, 2014, P11003.
[11] Yang, J., Weng, W.G. and Zhang, B.T. Experimental and numerical study of physiological responses in hot environments, Journal of Thermal Biology, 2014, 45: 54-61.
[12] Fu, M., Weng, W.G. and Yuan, H.Y. Quantitative assessment of the relationship between radiant heat exposure and protective performance of multilayer thermal protective clothing during dry and wet conditions, Journal of Hazardous Materials, 2014, 276: 383-392.
[13] Luo, N., Weng, W.G., Fu, M., Yang, J. and Han, Z.Y. Experimental study of the effects of human movement on the convective heat transfer coefficient, Experimental Thermal and Fluid Science, 2014, 57(9): 40-56.
[14] Weng, W.G., Han, X.F. and Fu, M. An extended multi-segmented human bioheat model for high temperature environments, International Journal of Heat and Mass Transfer, 2014, 75(7): 504–513.
[15] Fu, M., Weng, W.G. and Yuan, H.Y. Numerical simulation of the effects of blood perfusion, water diffusion, and vaporization on the skin temperature and burn injuries, Numerical Heat Transfer Part A Applications, 2014, 65(12): 1187–1203.
[16] Fu, M., Weng, W.G. and Yuan, H.Y. Effects of multiple air gaps on the thermal performance of firefighter protective clothing under low-level heat exposure, Textile Research Journal, 2014, 84(9): 968-978.
[17] Han, Z.Y., Weng, W.G. and Huang, Q.Y. Characterizations of particle size distribution of the droplets exhaled by sneeze, Journal of the Royal Society Interface, 2013, 10(88): 20130560.
[18] Han, Z.Y., Weng, W.G., Zhao, Q.L., Ma, X., Liu, Q.Y. and Huang, Q.Y. Investigation on an integrated evacuation route planning method based on real-time data acquisition for high-rise building fire. IEEE Transactions on Intelligent Transportation Systems, 2013, 14(2): 782-795.
[19] Zhang, X.L., Weng, W.G. and Yuan, H.Y. Empirical study of crowd behavior during a real mass event. Journal of Statistical Mechanics: Theory and Experiment, 2012, P08012.
[20] Han, Z.Y. and Weng, W.G. Comparison study on qualitative and quantitative risk assessment methods for urban natural gas pipeline network. Journal of Hazardous Materials, 2011, 189(1-2): 509-518.
[21] Ni, S.J. and Weng, W.G. Impact of travel patterns on epidemic dynamics in heterogeneous spatial metapopulation networks. Physical Review E, 2009, 79 (1): 016111.
[22]Ji X.W., Weng W.G. and Fan W.C. Cellular automata-based systematic risk analysis approach for emergency response. Risk Analysis, 2008, 28(5): 1247-1259.
[23] Weng, W.G., Chen, T., Yuan, H.Y. and Fan, W.C. Cellular automaton simulation of pedestrian counter flow with different walk velocities. Physical Review E, 2006, 74(3): 036102.
[24] Weng, W.G., Hasemi, Y. and Fan, W.C. Predicting the pyrolysis of wood considering char oxidation under different ambient oxygen concentrations. Combustion and Flame, 2006, 145(4): 723-729.
[25] Weng, W.G. and Hasemi, Y. Theoretical analysis on flame dimension in turbulent ceiling fires. International Journal of Heat and Mass Transfer, 2006, 49(1-2): 154-158.
[26] Kamikawa, D., Weng, W.G., Kagiya, K., Fukuda, D., Mase, R. and Hasemi, Y. Experimental study of merged flames from multifire sources in propane and wood crib burners. Combustion and Flame, 2005, 142(1-2): 33-39.
[27]Yang, R., Weng, W.G., Fan, W.C. and Wang, Y.S. Subgrid scale laminar flamelet model for partially premixed combustion and its application to backdraft simulation. Fire Safety Journal, 2005, 40(2): 81-98.
[28] Weng, W.G. and Fan, W.C. Nonlinear analysis of the backdraft phenomenon in room fires, Fire Safety Journal, 2004, 39(6):447-464.
[29] Weng, W.G., Fan, W.C., et al. Experimental study of back-draft in a compartment with openings of different geometries. Combustion and Flame, 2003, 132(4): 709-714.
[30] Weng, W.G., Fan, W.C. Qin, J. and Yang, L.Z. Study on salt water modeling of gravity currents prior to backdrafts using flow visualization and digital particle image velocimetry. Experiments in Fluids, 2002, 33(3): 398-404.
[31] Weng, W.G., Fan, W.C. Liao, G.X. and Qin, J. Wavelet-based image denoising in (digital) particle image velocimetry. Signal Processing, 2001, 81(7): 1503-1512.
[32] Weng, W.G. Experimental and Numerical Study of Human Thermal Physiological Responses from Fire, 2016 International Seminar on Safety Science and Technology, Kunming, China, 2016, 10.17-19.
[33] Weng, W.G. Models of a Technical Platform for Emergency Management. 6th International Symposium on New Technologies for Urban Safety of Mega Cities in Asia, Dacca, Bengal, Dec. 8-9, 2007.
[34] Weng, W.G. Some fire events and research in China. The 1st Global COE International Symposium for the Reduction of Fire Damage in East Asia. Seoul, Korea, March 26-27, 2009.
[35] Weng, W.G. Some Research Progresses about High-rise Building Fire Safety. International Forum on Ultra High-rise buildings Fire safety and Comprehensive Disaster prevention Technology, Guangzhou, China, 2010, 11. 19-22.
主要負責項目:
[1] 國家傑出青年科學基金,城市公共安全風險管理,2018/01-2022/12.
[2] 國家重點研發計畫項目,災害環境下人體損傷機理研究與救援防護技術裝備研發及套用示範,2016-2019.
[3] 國家科技支撐計畫課題,安全保障型城市的評價指標體系與評價系統研發,2011-2013.
[4] 國家自然科學基金項目,基於視頻分析的高密度人群踩踏事故風險防控方法研究,2015-2018.
[5] 國家自然科學基金項目,基於大規模人群流動模式的流感大流行傳播動力學與圍堵策略研究,2011-2013.
[6] 國家自然科學基金項目,火災環境中人體熱反應機理研究,2011-2013.
[7] 國家自然科學基金項目,基於複雜網路動力學的城市供氣系統定量風險評估方法研究,2009—2011.
[8] 國家自然科學基金項目,火災煙氣的回燃現象產生和抑制的機理研究,2004-2006.
[9] 北京市科技計畫課題,基於超高層建築內部監測的人員定位和疏散疏導技術,2010-2011.
[10] 北京市科技計畫課題,多因素、多環節的風險綜合評估技術,2008-2009.

學術兼職

● 2018/08—至今:Journal of Human Physiology編委會成員
● 2017/02—至今:中國醫學救援協會救援防護分會副會長
● 2016/02—至今:中國公共安全科學技術學會風險評估專業工作委員會副主任委員
● 2015/07—2017/04:科技部,公共安全十三五科技創新專項規劃專家組成員
● 2013/06—至今:科技部,技術預測公共安全領域研究組專家
● 2013/04—2014/02:科技部,《國家中長期科學與技術發展規劃綱要(2006-2020年)》中期評估公共安全領域專題評估組專家
● 2007/06-2012/06:國務院應急辦,國家應急管理專家組秘書
● 2005/11—至今:Visiting research fellow, Waseda University

榮譽獎項

[1] 2018:科技部中青年科技創新領軍人才
[3] 2016:北京科學技術獎二等獎,城市運行風險監測與評估關鍵技術研究與套用(排名第1)
[4] 2010:教育部科學技術進步獎一等獎
[5] 2006:教育部“新世紀優秀人才支持計畫”入選者
[6] 2005:IAFSS Best Thesis Award.(國際火災安全學會最佳博士論文獎,每三年評選一次,每次評選出三名,分別是亞洲/澳洲、北美洲/南美洲、歐洲/非洲的最佳博士論文)
[7] 2004:第二屆安全生產科技成果二等獎
[8] 2004:中國科學院優秀博士學位論文
[9] 2002:中國科學院院長特別獎

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