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清华大学博士研究生导师简介:李志信

考研时间: 2005-09-06 来源:查字典考研网

姓 名:

李志信

性别:

出生年月:

1947-9-0

工作单位:

清华大学

所在院系:

航天航空学院

职称:

教授

行政职务:

招生专业:

080101一般力学与力学基础

研究领域:

微细尺度流动与传热、传热强化,热现象的分子动力学模拟

是否兼职:

指导博士生总数:

指导硕士生总数:

目前博士生数:

目前硕士生数:

个人简介
个人简历:

1947年9月生于河南省延津县,1964年9月至1970年3月就读于清华大学工程力学数学系热物理专业,毕业后留在清华大学工程力学系任教至今。其间, 1980年9月至1983年3月攻读在职研究生,获工学硕士学位,1991年赴德国斯图加特大学作合作研究工作一年。1997年晋升为教授,1998年被批准为博士生导师。1994年12月至2000年10月,任工程力学系副主任,负责研究生工作;现担任清华大学动力工程与工程热物理分学位委员会副主席,传热强化与过程节能教育部重点实验室副主任。2000年起任"工程热物理学报"编委。

获得奖项
热流体工程中的热阻力、热绕流、热驱动和热稳定性,获1994年度国家教委科技进步一等奖,1995年度国家自然科学三等奖;

基于场协同理论的传热强化技术及其应用,获2003年度教育部科技进步一等奖,2004年度国家科技进步二等奖。

著作及论文
1. Wei Wang, Zhi-Xin Li, Zeng-Yuan Guo, Numerical simulation of Micro Flow-Through PCR Chip, Microscale Thermophysical Engineering, 2005,9(3):281-293

2. Moran Wang, Zhixin Li. Monte Carlo simulations of dense gas flow and heat transfer in micro- and nano-channels, Science in China Ser.E, Engineering & Materials Science, 2005, 48(3):317-325;王沫然,李志信,微纳通道内稠密气体流动和换热的Monte Carlo模拟,中国科学,E辑,2005,35(7):708-716

3. Meng, Ji-An; Liang, Xin-Gang; Li, Zhi-Xin,Field synergy optimization and enhanced heat transfer by multi-longitudinal vortexes flow in tube, Int. J Heat and mass Transfer, 48(2005), 3331-3337

4. Wei Wang, Zhi-Xin Li, Rong Luo, Shu-Hai Lü , Ai-Dong Xu, and Yong-Jun Yang,Droplet-based Micro Oscillating-flow PCR Chip,Journal of Micromechanics and Microengineering,15(2005):1369-1377

5. Meng, Ji-An, Chen, Ze-Jing; Li, Zhi-Xin, Guo Zeng-Yuan, Field-Coordination Analysis and Numerical Study on Turbulent Convective Heat Transfer Enhancement, J. of Enhanced Heat Transfer, 2005, 12(1): pp.73-83

6. Meng, Ji-An; Liang, Xin-Gang; Chen, Ze-Jing; Li, Zhi-Xin,Experimental study on convective heat transfer in alternating elliptical axis tubes,Experimental Thermal and Fluid Science,2005,29(4)pp. 457-465

7. Meng JA, Liang XG, Li ZX, Guo ZY,Numerical study on low Reynolds number convection in alternate elliptical axis tube,JOURNAL OF ENHANCED HEAT TRANSFER 11 (4): 307-313 OCT-DEC 2004

8. MR Wang, ZX Li, Numerical Simulations on Performance of MEMS-Based Nozzles at Moderate or Low Temperatures, Microfluidics and Nanofluidics, 2004, vol. 1, No1, pp. 62-70

9. MR Wang, ZX Li, Simulations for Gas Flows in Microgeometries Using the Direct Simulation Monte Carlo Method, Int. J of heat and Fluid Flow, 2004, 25(6):975-985

10. JC Yu, ZX Li, TS Zhao, An analytical study of pulsating laminar heat convection in a circular tube with constant heat flux, Int. J Heat and mass Transfer, Vol.47, No.24, Nov. 2004, pp.5297-5301

11. MR Wang, ZX Li, Micro- and nanoscale non-ideal gas poiseuille flows in a consistent Boltzmann algorithm model,Journal of Micromechanics and Microengineering 14 (7): 1057-1063 JUL 2004

12. MR Wang, ZX Li, Failure analysis of the molecular block model for the direct simulation Monte Carlo method, Physics of Fluids,16 (6): 2122-2125 ,2004

13. Xia ZZ, Cheng XG, Li ZX, Guo ZY, Bionic optimization of heat transport paths for heat conduction problems, Journal of Enhanced Heat Transfer 11 (2): 119-131 APR-JUN 2004

14. ZX Li, MR Wang, XB Yao, ZY Guo,Pumping Mechanism of Thermally Driven Phase Transition Micropump,Microscale Thermophysical Engineering, 2004,8(1):31-41

15. MR Wang, ZX Li, Nonideal gas flow and heat transfer in micro- and nanochannels using the direct simulation Monte Carlo method, Physical Review E, 2003, 68(4):046704

16. MR Wang, ZX Li. Similarity of Gas Flow for Different Scales. Sci in China (Series E), 2003, 46(6) : 661~670

17. XB Luo, ZX Li, ZY Guo, YJ Yang, Study on linearity of a micromachined convective accelerometer, MicroElectron Engineering, 2003, 65(1-2): 87-101

18. ZY Guo, ZX Li, Size effect on microscale single-phase flow and heat transfer, Int J Heat Mass Transfer, 2003, 46: 149-159

19. ZY Guo, ZX Li, Size effect on single-phase channel flow and heat transfer at microscale, Int. J. Heat and Fluid Flow, 24(2003)284-298

20. XG Cheng, ZX Li, ZY Guo, Constructs of the highly effective heat transport paths by bionic optimization, Sciences in China (Series E), 2003(3): 296-302, 程新广,李志信,过增元,基于仿生优化的高效导热通道的构造,中国科学E辑,2003,33(3):251-2562.

21. ZX Li, DX Du, ZY Guo, Experimental study on flow characteristics of liquid in circular microtubes, Microscale Thermophysical Engineering, 2003,7(3): 253-265

22. XL Feng, ZX LI, ZY Guo, Molecular dynamics simulation of thermal conductivity of nanoscale thin silicon films, Microscale Thermophysical Engineering, 2003,7(2):153-161

23. Z.Y.Guo, S.Q.Zhou, Z.X.Li, L.G.Chen, Theoretical analysis and experimental confirmation of the uniformity principle of temperature difference field in heat exchanger, Int. J. Heat Mass Transfer, 2002, 45(10):2119-2127

24. X.B.Luo, Z.X.Li, Z.Y.Guo, Y.J.Yang, Thermal optimization on micromachined convective accelerometer, Heat and Mass transfer, 2002, 38(7-8), 705-712

25. W. Wang, Z.X.Li, Z.Y.Guo, Analysis of thermal cycling in micro-PCR chip, International Journal of Nonlinear Sciences and Numerical Simulation, 2002, 3:233-236

26. N. Li, Z.X.Li, Relative importance of natural convection and surface radiation in a square enclosure, International Journal of Nonlinear Sciences and Numerical Simulation, 2002, 3 :613-616

27. M.R.Wang, Z.X.Li, Z.J.Chen, The pumping effect of phase transformation in a microtube, International Journal of Nonlinear Sciences and Numerical Simulation, 2002, 3: 565-568

28. Z.X.Li, M.R.Wang, L.Y.Tan, Experimental investigation on phase transformation type micropump, Chinese Science Bulletin,2002, 47(6), pp.518-522;李志信,王沫然,谭立彦,相变型热驱动微泵泵送特性的实验,科学通报,2001年,vol.46, no.22, pp.1927-1930

29. S. Wang, Z.Y. Guo, Z.X. Li, Heat transfer enhancement by using metallic filament insert in channel flow, Int. J. Heat ans Mass Transfer, vol.44 (2001), pp.1373-1378

30. X.B.Luo, Y.J.Yang, F.Zheng, Z.X.Li, Z.Y.Guo, An optimized micromachined convective accelerometer with no proof mass, J. of Micromechanics and Microengineering, 2001,11(5):504-408

承担项目
近年来,作为负责人承担国家重点基础研究与发展规划项目(973)“高效节能的关键科学问题(G2000026300)”的课题1“传递过程强化与控制的性理论(G2000026301)”、国家自然科学基金项目“用分子动力学方法研究超常条件下的导热系数和导热过程”和“电介质纳米薄膜导热系数的分子动力学模拟”的研究,并作为主要骨干参加了国家自然科学基金重大项目“航天技术和信息器件中的微细尺度传热(No. 59995550)”之课题2“航天技术中的特殊传热问题研究(No.59995550-2)”的研究。
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