李凤臣,美国机械工程师学会(ASME: American Society of Mechanical Engineers)会员。现任教于哈尔滨工业大学,能源科学与工程学院,教授(博士生导师)。
个人简介
求学经历
1989.9 – 1993.7 天津大学,热能工程系工程热物理专业,本科。获学士学位。
1993.9 – 1996.7 中国原子能科学研究院,反应堆工程及安全研究设计所反应堆工程及反应堆安全专业,硕士研究生。获工学硕士学位。
1998.4 – 2001.3 (日本)京都大学(Kyoto University),工学院核能工程系两相流动与能量转换专业,博士研究生。获工学博士学位。
工作经历
2001.4 – 2002.3 (日本)海上技术安全研究所(National Maritime Research Institute),特别研究员
2002.4 – 2004.11 (日本)产业技术综合研究所(National Institute of Advanced Industrial Science and Technology),特别研究员
2004.11 – 2006.8 (日本)东京大学 (The University of Tokyo),生产技术研究所 (Institute of Industrial Science),日本学术振兴会(JSPS:Japan Society for the Promotionof Science)研究员
2006.8 – 现在 哈尔滨工业大学,能源科学与工程学院,教授(博士生导师)
成就及荣誉
⒈ Best Paper Award of “The 5th International Topical Meeting on Nuclear Thermal Hydraulics,Operations & Safety (NUTHOS-5)”,Beijing,China,1997.
⒊ Japan Society for the Promotion of Science (JSPS) Fellowship Award,2004.
⒋《Physics of Fluids》,《International Journal of Thermal Sciences》,《Proceedings of the Royal Society A: Mathematical Physical and Engineering Sciences》,《Experiments in Fluids》,《Journal of Turbulence》,《Applied Mathematical Modeling》,《Chemical Engineering Communications》等国际杂志审稿人。
学科
工程热物理
研究方向
⒈添加剂湍流减阻流动与换热:研究表面活性剂水溶液湍流减阻流动机理、对流换热机理及强化对流换热方法;表面活性剂减阻剂在实际集中供热/供冷系统中节能方面的应用研究。
⒉低雷诺数弹性湍流:研究流体粘弹性引起的低雷诺数(甚至小于1)弹性湍流特性、发生机制及控制方法;与一般高雷诺数惯性湍流类比,研究惯性湍流耗散尺度特性。
⒊微尺度流动与换热:主要利用粘弹性流体在微尺度通道内获得弹性湍流,研究微尺度通道内弹性湍流发生方法、流动特性及换热特性,拓展粘弹性流体在微流动方面的应用,例如开发新型高效微尺度换热器、有流动控制机能的生物芯片等。
⒋气液两相流:主要利用微小气泡的独特特性进行环境净化等方面的基础及应用研究;超空泡流动及控制。
论著成果
论著成果(截至2006年9月):
近三年的代表性论文:
⒈ F.-C. LI,Y. KAWAGUCHI,T. SEGAWA and K. HISHIDA,“On turbulent contribution to frictional drag in wall-bounded turbulent flow”,Chinese Physics Letters,Vol. 23⑸,pp. 1226-1229,2006 (SCI,EI).
⒉ F.-C. LI,Y. KAWAGUCHI,K. HISHIDA and M. OSHIMA “Investigation of turbulence structures in a drag-reduced turbulent channel flow with surfactant additive using stereoscopic particle image velocimetry”,Experiments in Fluids,Vol. 40,pp. 218-230,2006 (SCI,EI).
⒊ F.-C. LI,Y. KAWAGUCHI,T. SEGAWA and K. SUGA,“Simultaneous measurement of turbulent velocity field and surface wave amplitude in the initial stage of an open-channel flow by PⅣ”,Experiments in Fluids,Vol. 39,pp. 945-953,2005. (SCI,EI).
⒋ F.-C. LI,Y. KAWAGUCHI,T. SEGAWA and K. SUGA,“Wave-turbulence interaction at the free surface of a low-speed plane liquid wall jet investigated by particle image velocimetry”,Physics of Fluids,Vol. 17⑻,082101,2005. (SCI,EI).
⒌ F.-C. LI,Y. KAWAGUCHI,T. SEGAWA and K. HISHIDA,“Reynolds-number dependence of turbulence structures in a drag-reducing surfactant solution channel flow investigated by PⅣ”,Physics of Fluids,Vol. 17⑺,075104,2005. (SCI,EI).
⒍ Feng-Chen LI,Tomoaki KUNUGI and Akimi SERIZAWA,“MHD effect on the flow structures and heat transfer characteristics of liquid metal-gas annular flow in a vertical pipe”,International Journal of Heat and Mass Transfer,Vol. 48⑿,pp. 2571-2581,2005. (SCI,EI).
⒎ Feng-Chen LI,Yasuo KAWAGUCHI and Koichi HISHIDA,“Structural analysis of turbulent transport in a heated drag-reducing channel flow with surfactant additives”,International Journal of Heat and Mass Transfer,Vol. 48⑸,pp 965-973,2005. (SCI,EI).
⒏ Feng-Chen LI,Yasuo KAWAGUCHI,Takehiko SEGAWA and Koichi HISHIDA,“Stereoscopic particle image velocimetry investigation of three-dimensional characteristics of vortex structure in a turbulent channel flow”,Chinese Physics Letters,Vol. 22⑶,pp 624-627,2005. (SCI,EI).
⒐ F.-C. LI,Y. KAWAGUCHI and K. HISHIDA,“Investigation on the characteristics of turbulence transport for momentum and heat in a drag-reducing surfactant solution flow”,Physics of Fluids,Vol. 16⑼,pp 3281-3295,2004. (SCI,EI).
⒑ F.-C. LI,D.Z. WANG,Y. KAWAGUCHI and K. HISHIDA,“Simultaneous measurements of velocity and temperature fluctuations in thermal boundary layer in a drag-reducing surfactant solution flow”,Experiments in Fluids,Vol. 36,pp 131-140,2004. (SCI,EI).
⒒ Feng-Chen LI and Akimi SERIZAWA,“Experimental study on flow characteristics of a vertically falling film flow of liquid metal NaK in a transverse magnetic field”,Fusion Engineering and Design,Vol. 70⑵,pp 185-199,2004. (SCI,EI).