• 姓名: 侯国祥
  • 职称: 教授
  • 学位: 博士
  • 华中科技大学
  • 船舶与海洋工程学院
教育背景

1991-1995年,华中科技大学,船舶与海洋工程学院,船舶工程学士学位

1995-2000年,华中科技大学,船舶与海洋工程学院,船舶与海洋结构物设计与制造专业

工作经历

2000年—2002年,华中科技大学,水电与数字化工程学院,博士后,合作导师张勇传院士

2002年—2005年,华中科技大学,中国科学院水生生物研究所,博士后,合作导师宋立荣

2002年—2006年,华中科技大学,船舶与海洋工程学院,副教授

2006年—今,华中科技大学,船舶与海洋工程学院,教授(破格晋升)

2009年选聘为博士生导师。2002年、2005年、2011年先后应邀赴加拿大、澳大利亚、德国和法国等国合作研究

学术兼职

武汉船舶行业协会副秘书长,全国环境水力学学会执行委员,《环境科学与技术》期刊编委。

教授课程

流体力学(一)、流体力学(二)、海洋工程环境、计算流体力学

学术成果
内河船舶稳性校准软件、基于GIS的长江水资源保护决策支持系统。
科研项目

主持国家自然科学基金项目一项,863面上项目一项

作为骨干参加973国家重点基础研究项目一项

作为骨干参加863国家重大专项项目一项

论文专著

已发表学术论文80多篇,其中几十篇收录于Physical Review E等SCI、EI期刊。

近期发表的学术论文:

1. Li Chen, Yang Yu, and Guoxiang Hou∗, Sharp-interface immersed boundary lattice Boltzmann method with reduced spurious-pressure oscillations for moving boundaries, Physical Review E. Vol. 87(5), 335 -348, 2013

2. Yang Yu, Li Chen, Jianhua Lu, Guoxiang Hou∗, An improved surface tension and wall adhesion model for free-surface flows in the lattice Boltzmann method, International Journal of Applied Mathematics & Statistics, Vol. 46(16), 324-340, 2014

3. Yang Yu, Li Chen, Jianhua Lu, Guoxiang Hou∗, A coupled lattice Boltzmann and Particle Level Set method for free-surface flows, ScienceAsia, 2014

4. Li Chen, Yang Yu, Guoxiang Hou∗, A comparative study of lattice Boltzmann methods using bounce-back schemes and immersed-boundary ones for flow acoustic problems, International Journal for Numerical Methods in Fluids, 2014

5. Yang Yu, Li Chen, Jianhua Lu, Guoxiang Hou∗, An improved single-phase free-surface lattice Boltzmann model with surface tension and wall adhesion, Applied Mechanics and Materials, Vol. 300-301, 1062-1066, 2013

6. Yang Yu, Li Chen, Jianhua Lu, Guoxiang Hou, Numerical simulation of filling process in casting based on a hybrid lattice Boltzmann and particle level set model, Applied Mechanics and Materials, Vol. 345, 349-352, 2013

7. Li Chen, Yang Yu, Guoxiang Hou, Flow-induced noise radiation from the rotational bodies based on fluid mechanics using hybrid immersed boundary lattice-Boltzmann/FW-H method, Applied Mechanics and Materials, Vol. 345, 345-348, 2013

8. Chen Li, Yu Yang, Hou Guoxiang∗, A sharp interface immersed boundary lattice Boltzmann method with reduced spurious pressure oscillations for moving boundaries, The 4th International Conference on Computational Methods (ICCM2012), Gold Coast, Australia, 2012(会议论文)

9. Peng Yu-cheng, Chen Xi-yang, Cao Yan, Hou Guo-xiang∗, Numerical Study of Cavitation on the Surface of the Guide Vane in Three Gorges Hydropower Unit, Journal of Hydrodynamics, Vol.22, No.5, 703-708, 2010.10(SCI:701KG)

10. Chunxu Wang, Tao Zhang, Guoxiang Hou∗, Haifei Zhu, Noise prediction of submerged free jet based on Kirchhoff formulation, Journal of Ship Mechanics, 14(3), 305-313, 2010

11. Chunxu Wang, Tao Zhang, Guoxiang Hou∗, Noise prediction of submerged free jet based on theory of vortex sound, Journal of Ship Mechanics, 14(6), 670-677, 2010

12. Zhou, XP (Zhou, Xinping), Yang, JK (Yang, Jiakuan), Xiao, B (Xiao, Bo), Hou, GX (Hou, Guoxiang), Xing, F (Xing, Fang), Analysis of chimney height for solar chimney power plant, APPLIED THERMAL ENGINEERING, 29 (1): 178-185, JAN 2009, (SCI:423YM)

13. Zhou, XP (Zhou, Xinping), Yang, JK (Yang, Jiakuan), Xiao, B (Xiao, Bo), Hou, GX (Hou, Guoxiang), Wu, YY (Wu, Yingying), Numerical Investigation of a Compressible Flow Through a Solar Chimney, HEAT TRANSFER ENGINEERING, 30 (8): 670-676, 2009, (SCI:410CW)

14. Zhou, XP (Zhou, Xinping), Yang, JK (Yang, Jiakuan), Xiao, B (Xiao, Bo), Hou, GX (Hou, Guoxiang), Experimental study of temperature field in a solar chimney power setup, APPLIED THERMAL ENGINEERING, 27 (11-12): 2044-2050 AUG 2007, (SCI:175ZE)

15. Zhou, XP (Zhou, Xinping), Yang, JK (Yang, Jiakuan), Xiao, B (Xiao, Bo), Hou, GX (Hou, Guoxiang), Simulation of a pilot solar chimney thermal power generating equipment, RENEWABLE ENERGY, 32 (10): 1637-1644 AUG 2007, (SCI:173OA)

16. Peng Yu-cheng, Chen Xi-yang, Zhang Ke-wei, Hou Guo-xiang, Numerical Research on Water Guide Bearing of Hydro-Generator Unit Using Finite Volume Method, Journal of Hydrodynamics, Vol.19, No.5, 635-642, 2007.10 (EI compendex:074510906898)Corresponding Author