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王建华老师

王建华

所属大学: 中国科学技术大学

所属院系: 工程科学学院

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个人简介

王建华教授 一、联系方式 单位:中国科学技术大学 热科学及能源工程系 地址:合肥市金寨路96号 邮编:230027 电话:0551-3600945 传真:0551-3606459 电子邮件:jhwang@ustc.edu.cn 二、个人经历 78.2-82.2 合肥工业大学,精密机械工程系,工学学士; 83.9-86.7 哈尔滨工业大学,动力工程系,工学硕士; 98.2-03.12 德国斯图加特大学,能源工程系,热流体机械研究所,工学博士 主要留学经历: 92.2-93.8 中科院访问学者,德国宇航院哥庭根流体力学研究所,从事光学测量技术研究;96.6-96.12 资深助理研究员,香港城市大学,从事数值计算技术工作; 98.4-03.12 全职研究员BatA2,德国斯图加特大学热流体机械研究所,从事燃气轮机冷却技术实验研究。 三、主要研究方向 1 )多孔介质里传热传质过程的解析、数值及实验研究; 2 )空天飞行器热防护技术包括材料体系及冷却结构问题研究; 3 )燃气轮机冷却结构设计的试验技术及数值计算方法研究; 4 )现代化光学及数字图像技术在热物理量测量方面的应用; 5 )高压气体储能理论及应用技术研究。 四、获奖或荣誉 96年获得中国科学技术大学颁发亿利达优秀青年教师奖 07年获得中国人们解放军总装备部颁发军队科技进步二等奖 五、代表论著(近期发表物) 专著 Wang Jianhua, 《 An Experimental Investigation on Transpiration cooling 》 Published by Shaker Verlag, 2003, Aachen, Germany, ISBN3-8322-1099-7. 杂志 [1] Wang, J. H., Shi, J. X., Discussion of Boundary Conditions of Transpiration Problems Using LTNE Model, ASME J. of Heat Transfer, January 2008,Vol.130, 014504. [2] Wang, J. H., Wang, H. N., A Discussion of Transpiration Cooling Problems Through an Analytical Solution of Local Thermal Non-Equilibrium Model, ASME J. of Heat Transfer, Oct. 2006, Vol. 128 1093-1098. [3] Wang, J. H., Gan, M., Detecting and Characterization of Penetrating Pores of Porous Materials, Materials Characterization, 58(2007)8-12. [4] Wang, J. H., Han, X. S., Numerical Investigation of Transpiration and Ablation Cooling, Heat Mass Transfer, (2007)43:274-284. [5] Wang, J. H., Wang, H. N., Sun, J. G., Wang, J., Numerical Simulation of Control Ablation by Transpiration Cooling, Heat Mass Transfer, (2007) 43:471-478. [6] Peng, L.M., Wang, J. H. , Li, H., Zhao, J. H., He, L., Synthesis and Microstructural Characterization of Ti-Al 3 Ti Metal-intermetallic Laminate Composites, Scripta Materialia, 52 (2005) 243-248. [7] Peng, L.M., Wang, J. H. , Li, H., He, L., Zhao, J. H., Synthesis and Mechanical Properties of Ternary Molybdenum Carbosilicide and Its Composite, J. of Materials Science, 40 (2005) 2705-2707. [8] Peng, L.M., Li, H., Wang, J. H. , Processing and Mechanical Behavior of Laminated Ti- Al 3 Ti Composites, J. of Materials Science and Eng. A 406(2005)309-318. [9] Wang, J. H., Messner, J., Stetter, H., An Experimental Investigation of Transpiration Cooling, Part I- An Application Investigation on Infrared Measurement Technique, International J. of Rotating Machinery, April 2003, Vol 9, No. 3. 154-163. [10] Wang, J. H., Messner, J., Stetter, H., An Experimental Investigation of Transpiration Cooling, Part II- Comparison of Cooling Methods and Media, International J. of Rotating Machinery, Aug. 2004,Vol 9, No.10. 355-363. [11] Peng, L.M., Li, H., Wang, J. H., Gong, M., High Strength and High Fracture Toughness Ceramic-iron Aluminid3 (Fe 3 Al) Composites, Materials Letters 60 (2006) 883-887. [12] Peng, L.M., Li, H., Wang, J. H., Gong, M., Synthesis and Microstructural Characterization of Aluminum Borate Whiskers, Ceramics International 32(2006)365-368. [13] Peng, L.M., Wang, J. H., Li, H.,Gong, M., Processing and Mechanical Properties of Multiphase Composites Based on Mo-Si-Al-C system, J. of Alloys and Compounds 420(2006) 77-82. [14] Shi, J, X, Wang, J. H., Optimized Structure of Two Layered Porous Media with Genetic Algorithm for Transpiration Cooling, International J. of Thermal Science, 2008 in press. [15] Shi, J. X., Wang, J. H., A Numerical Investigation on Minimum Coolant Injection of Transpiration Cooling, J. of Aerospace Power, 2007, Vol. 22, No.1, in Chinese. [16] Wang, H. N. Wang , J. H. , Investigation on Analytical Solution of f One-dimensional, Steady, Non-equilibrium Transpiration Cooling, J. of Aerospace Power, 2006,Vol. 11, No.1, in Chinese. [17] Ma, L, Wang, J. H., Wu, X. Y., Du, Z. N., Experimental Investigation of the Cooling Performance of Lamilloy Using Infrared Thermal Imaging Technique, J. of Aerospace Power, 2008, in press, in Chinese. [18] Xie Y. Y., Wang, J. H., Numerical Investigation of Control Ablation Process with Transpiration Cooling, J. of Aerospace Power, 2008, in press, in Chinese. [19] Li, Q, Wang, J. H., Wu, X. Y., Yang, S. J., An Investigation of Coolant Flow Performance Within Laminated Plate, Part I-Visualization of Complex Fluid Field Using PIV Technology, J. of Experiments In Fluid Mechanics, 2007, Vol. 21, No. 4, 18-22. [20] Wang, C., Wang, J. H., Du, Z. N., Yang, S. J., An Investigation of Coolant Flow Performance Within Laminated Plate, Part II Numerical Simulation of Fluid Field of Complex Structure, J. of Experiments In Fluid Mechanics, 2007, Vol. 21, No. 4, 22-26. [21] Zhou, J. Wang, J. H., Energy Loss and Compensation of Air-Powered Vehicle in The Depressurization, Hydraulics and Pneumatics, 2007, Vol., 191, No. 7, 28-32. in Chinese. 国际会议 [1] Wang, J. H., Xu, H. Z., Liu, Y. L., Du, Z. N., Yang, S. J., Experimental and Numerical Investigations on Turbine Airfoil Cooling Designs, Part I- An Investigation on Flow Features by Particle Image Velocimetry, Proc. of 49th ASME Turbo Expo 2008 Power for Land, Sea, and Air June 14-17, 2008, Berlin, Germany, GT2008-50673. [2] Wang, J. H., Xu, H. Z., Liu, Y. L., Wu, X. Y., Yang, S. J., Experimental and Numerical Investigations on Turbine Airfoil Cooling Designs, Part II-An Investigation on Heat Transfer Features by Infrared Thermal Imaging Technique, Proc. of ASME Turbo Expo 2008 Power for Land, Sea, and Air June 14-17, 2008, Berlin, Germany, GT2008-50673. [3] Wang, J. H., Messner, J., Casey, V. M., Performance Investigation on Film and Tran- spiration Cooling, Proc. of 45th ASME Turbo Expo 2004 Power for Land, Sea, and Air, 14-17 June 2004, Vienna, Austria,GT2004-54132, ISBN: 0-7917-3739-4. [4] Wang H. N., Wang, J. H., A Numerical Investigation of Ablation and Transpiration Cooling Using the Local Thermal Non-equilibrium Model, Proc. of 42 nd AIAA/ ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 09-12, July, 2006, Sacarmento California, USA 2006-AIAA-5264. [5] Wang, J. H., Messner, J., Stetter, H., An Experimental Investigation of Transpiration Cooling, Part I - An Application Investigation on Infrared Measurement Technique, Proc. of 9th International Symposium on Transport Phenomena and Dynamics of Rotating Machinery (ISROMAC), 10-14 Feb. 2002, Honolulu , Hawaii , USA. [6] Wang, J. H., Messner, J., Stetter, H., An Experimental Investigation of Transpiration Cooling, Part II- Comparison of Cooling Methods and Media, Proc. of 9th ISROMAC 10-14 Febr. 2002, Honolulu , Hawaii , USA. [7] Stetter, H., Wang, J. H., Basic Performance Characteristics of a Transpiration Cooling Method for Turbine Nozzle Guide Vane Using Evaporating Liquids, Proc. of 4th European Conference on Turbomachinery, 20-23 March 2001, Firenze , Italy , ISBN 88-86281-57-9. [8] Stetter, H., Wang, J. H., Messner, J., An Experimental Investigation of Transpiration Cooling, Part I- Feasibility Test and Performance Estimation, Proc. of 8th ISROMAC, 26-30 March 2000 Honolulu, Hawaii, USA, Vol. 1, pp.778-785, ISBN#0-9652469-9-x. [9] Wang, J. H., Stetter, H., An Experimental Investigation of Transpiration Cooling, Part II- Performance Comparison With Film Cooling, Proc. of 8th ISROMAC, 26-30 March 2000, Honolulu, Hawaii, USA, Vol. 1, pp.786-792, ISBN#0-9652469-9-x.

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