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清华大学能源与动力工程系导师教师师资介绍简介-肖业祥

本站小编 Free考研考试/2020-04-15

姓名:肖业祥
技术职务 : 副研究员
办公电话 :
通讯地址 :北京市海淀区清华大学热能工程系
电子邮件 :xiaoyex@mail.tsinghua.edu.cn
教育背景1997.09-2001.07合肥工业大学机械电子工程专业 学士
2001.09-2006.07 华南理工大学电站系统及其控制专业 博士(硕博连读)
2008.01-2010.03清华大学热能系 博士后
2010.08-2011.06 瑞典隆德大学能源科学系博士后
工作履历2006.07-2007.12华南理工大学电力学院 讲师
2010.04-2014.11 清华大学热能系 助理研究员
2014.12- 至 今清华大学热能系 副研究员,博导(2015)
学术兼职2011-至 今 能源行业小水电机组标准化技术委员会 委员
国际期刊:《International Journal of Energy Research》、《Engineering Failure Analysis》、《Environmental Pollution》、《Acta Mechanica Sinica》、《International Journal of Numerical Methods for Heat and Fluid Flow》等审稿人
研究领域流体机械内部流动机理与多相流理论
1) 射流理论与应用;
2) 冲击式水轮机内流机理与流动干涉;
3) 流体机械优化设计与动力特性分析;
4) 抽水蓄能机组安全稳定运行性能分析;
5) 新型流体机械研究。
研究概况近年来主要在流体机械内部流动机理和多相流动理论等方面开展研究工作。作为项目负责人主持了30多个科研项目。发表论文80余篇,可SCI检索论文26篇,EI检索60篇。主持的主要科研项目如下:
1.国家重点研发计划, 2017YFC**, 海水淡化泵与能量回收一体机关键技术研究及产品开发,课题负责人。
2.国家自然科学基金面上项目,**、冲击式水轮机流动干涉特性及其对比尺效应影响研究,主持。
3.国家自然科学基金重点项目,**,离心泵流动不稳定性机理及其控制,第二负责人。
4.国家自然科学基金国际会议资助项目,,第6届水泵和风机国际学术会议,主持。
5.国家自然科学基金青年基金项目,**,水泵水轮机导叶不同步起动过程全三维流动特性数值研究,主持。
6.国家海洋局海洋可再生能源项目,GHME 2012GC02,江厦潮汐试验电站1号机组增效扩容改造,主要参与;
7.国际合作项目,双向大型潮汐发电机组转轮变速运行的水力和动力特性分析,主要参与;
奖励与荣誉1.2016年度清华大学热能工程系先进工作者。
2.2015年度清华大学SRT项目优秀指导教师,一等奖。
3.可双向六工况运行全贯流式低水头水轮机组,第八届全国大学生节能减排大赛,一等奖,2015年(指导教师)。
4.水力机械流固耦合特性关键技术研究,水利部大禹水利科学技术进步二等奖,3/22,2014。
5.基于涡动力学理论的水力机械流动分析和优化设计, 教育部科技进步二等奖,3/8,2013。
6.灯泡贯流水轮机瞬态水力特性与疲劳寿命关键技术研究,水利部大禹水利科学技术进步二等奖,4/12,2012。
7.提高现代水力发电系统运行稳定性关键技术研究,教育部科技进步二等奖,12/22,2011。
8.《流体机械基础》教学软件,清华大学优秀教学软件奖一等奖,2/3, 2012。
学术成果 一、期刊论文
[1].Soohwang Ahn, Yexiang Xiao, Zhengwei Wang*, Yongyao Luo. Numerical prediction on the effect of free surface vortex on intake flow characteristics for tidal power station. Renewable Energy. 2017.101, pp. 617-628. SCI: ED3VD. WOS:057. EIP: 20**6.
[2].Zeng Chongji, Xiao Yexiang, Wang Zhengwei*, Zhang Jin, Luo Yongyao. Numerical analysis of a Pelton bucket free surface sheet flow and dynamic performance affected by operating head. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy.2017.231.3: 182-196. SCI: EU0ZI, WOS:003. EIP: 20**3.
[3].Ahn Soo-Hwang, Xiao Yexiang, Wang Zhengwei*, Zhou Xuezhi, Luo Yongyao. Performance prediction of a prototype tidal power turbine by using a suitable numerical model. Renewable Energy. 2017.113, pp. 293-302. SCI: EIP: 20**9.
[4].Zhao Xiaoran, Xiao Yexiang, Wang Zhengwei, Luo Hongying, Ahn Soo-Hwang, Yao Yangyang, Fan Honggang. Numerical analysis of non-axisymmetric flow characteristic for a pump-turbine impeller at pump off-design condition. Renewable Energy. 2017.114, pp. 617-628. SCI:EI.
[5].Cao Lei, Xiao Yexiang,Wang Zhengwei, Luo Yongyao. Pressure fluctuation characteristics in the sidewall gaps of a centrifugal pump. Engineering Computations, 2017,34(4):1034-1053. SCI: EIP: 20**7.
[6].ZHAO Xiaoran, Xiao Yexiang, Wang Zhengwei, Luo Yongyao, Cao lei. Unsteady Flow and Pressure Pulsation Characteristics Analysis of Rotating Stall in Centrifugal Pumps under Off Design Conditions. Journal of Fluids Engineering. 2017, SCI: EI
[7].Luo Yongyao, Wang Zhengwei, Xiao Yexiang, He Chenglian.Optimization of the Runner for Extremely Low Head Bidirectional Tidal Bulb Turbine. ENERGIES. 2017.10(6): SCI: EZ0HT. WOS:053. EIP: 20**2.
[8].Zhai Liming, Luo Yongyao, Wang Zhengwei, Liu Xin, XiaoYexiang. A review on the large tilting pad thrust bearings in the hydropower units. RENEWABLE & SUSTAINABLE ENERGY REVIEWS. 2017,69, pp.1182-1198. SCI: EJ2BX.WOS:092. EIP: 20**3.
[9].Shi Guangtai, Wang Zhengwei, Xiao Yexiang. Analysis of pressure fluctuation characteristic within centrifugal pump as hydraulic turbine including the guide vane. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. SCI: EI.
[10].Liming Zhai, Yongyao Luo, Xin Liu, Funan Chen, Yexiang Xiao, Zhengwei Wang. Numerical simulations for the fluid-thermal-structural interaction lubrication in a tilting pad thrust bearing.Engineering Computations, 2017,34(4): 1149-1165.SCI:, EIP: 20**3.
[11].Xiao Yexiang, Zhu Wei, Wang Zhengwei*, Zhang Jin, Luo Yongyao, Zeng Chongji, Yao Yangyang. Analysis of the internal flow behavior on S-shaped region of a Francis pump turbine on turbine mode. Engineering Computations. 2016, 33(2): 543-561. SCI: DN4OH. EIP: 20**3
[12].Xiao Yexiang, Yao Yangyang, Wang Zhengwei*, Zhang Jin, Luo Yongyao, Zeng Chongji, Zhu Wei Hydrodynamic Mechanism Analysis of the Pump Hump District for a Pump-turbine. Engineering Computations. 2016, 33(3):957-976. SCI: DN4OI. EIP: 20**9
[13].Cao Lei, Wang Zhengwei, Xiao Yexiang,Luo Yongyao. Numerical investigation of pressure fluctuation characteristics in a shrouded centrifugal pump with changing axial clearance. International Journal of Rotating Machinery. 2016, **.SCI: DL4ZV.EIP:20**6.
[14].Xiao Yexiang, Wang Zhengwei*, Zeng Jidi, Zheng Jintai, Lin Jiayang,Zhang Lanjin. Prototype and Numerical Studies of Interference Characteristics of Two Ski-Jump Jets from Opening Spillway Gates. Engineering Computations, 2015, 32(2): 289-307. SCI: CI3KJ, EI: 20**5.
[15].Luo Yongyao, Wang Zhengwei*, Liu Xin, Xiao Yexiang, Chen Changkun,Wang Haoping, Jianhua Yan. Numerical prediction of pressure pulsation for a low head bidirectional tidal bulb turbine. Energy, 2015, 89:730-738. SCI:CR3SD, EI: 20**3.
[16].Cao Lei, Zhang Yiyang, Wang Zhengwei*, Xiao Yexiang, Liu Ruixiang. Effect of axial clearance on the efficiency of a shrouded centrifugal pump. Journal of Fluids Engineering. 2015; 137(7): 071101-071101-10. SCI: CJ7SQ. EI:20**9.
[17].Sun Hui, Xiao Ruofu*, Wang Fujun, Xiao Yexiang, Liu Weichao. Analysis of the pump-turbine s characteristics using the detached eddy simulation method. Chinese Journal of Mechanical Engineering (English Edition), 28(1), pp 115-122, 2015. SCI: AY6HH, EI: 20**0.
[18].Xiao Yexiang, Wang Zhengwei*, Zhang Jin, Zeng Chongji, Yan Zongguo. Numerical and Experimental Analysis of the Hydraulic Performance of a Prototype Pelton Turbine. Journal of Power and Energy. 2014, 228(1): 46-55. SCI:AA0OK,EI:20**0.
[19].Xiao Yexiang, Wang Zhengwei*, Zhang Jin, Luo Yongyao. Numerical Analysis of Unsteady Flow Behavior and Pressure Pulsation in Pump Turbine with Misaligned Guide Vanes. Journal of Hydrodynamics, Ser.B. 2014, 26(2). SCI:AG4CI,EI:20**9.
[20].Xiao Yexiang, Xiao Ruofu*. Transient simulation of a pump-turbine with misaligned guide vanes during turbine model start-up. Acta Mechanica Sinica, 2014, 30(5): 646-655. SCI: AS6OI, EI: 1.
[21].Luo Yongyao*, Wang Zhengwei, Peng Guangjie, Xiao Yexiang, Zhai Liming, Liu Xin, Zhang Qi. Numerical simulation of a heave-only floating OWC (oscillating water column) device. ENERGY. 2014, 76: 799-806. SCI: AS7OH, EI: 4.
[22].Peng Guangjie*, Wang Zhengwei, Xiao Yexiang, Luo Yongyao. Abrasion prediction of Francis turbine based on liquid-solid two-phase fluids simulation. Engineering Failure Analysis, 2013,33: 327-335. SCI: 213TI, EI:20**8.
[23].Xiao Yexiang, Wang Zhengwei*, Yan Zongguo. Experimental and Numerical Analysis of Blade Channel Vortices in a Francis Turbine Runner. Engineering Computations. 2011, 28(2):154-171. SCI: 748KX, EI:226.
[24].Xiao Yexiang, Wang Zhengwei*, Yan Zongguo. Numerical Analysis of Unsteady Flow under High-head Operating Conditions in Francis Turbine. Engineering Computations. 2010, 27(3):365-386. SCI: 643DZ, EI:816.
[25].Xiao Yexiang, Han Fengqin*, Zhou Jinlin, et al. Numerical Prediction of Dynamic Performance of Pelton Turbine. Journal of Hydrodynamics, Ser.B. 2007, 19(3): 356-364. SCI:V22AK, EI:152.
[26].Kanemoto T., Sakihama D., Seki S., Galal, A.M., Han Fengqin, Xiao Yexiang. Flow through aerodynamic torque converter installed in new type turbofan engine. Journal of Thermal Science. 2007,16(1):14-18.SCI: 294KS, EI: 569.
[27].曾崇济,肖业祥,张瑾,安守皇,王正伟*.冲击式水轮机喷射机构磨损特性数值研究. 排灌机械工程学报, 2015(05):407-411.
[28].朱伟,肖业祥*,姚洋阳,罗永要,曾崇济,王正伟. 混流式水泵水轮机小开度S特性区内流特性分析. 水力发电学报. 2015(10):138-144.
[29].杨凌波; 肖业祥; 唐兵; 王正伟*. 基于固液两相流的纸浆泵磨损预测.排灌机械工程学报, 2015, 28(2): 98-103+127.
[30].肖业祥,杨凌波,曹蕾,王正伟*. 海洋矿产资源分布及深海扬矿泵研究进展. 排灌机械工程学报. 2014, 32(4): 319-326.
[31].张瑾,肖业祥,王正伟*,阎宗国,杨校生,陈昌坤,颜建华,王浩平. 双向潮汐机组优化选型软件设计. 水力发电学报. 2013, 32(2): 265-270.
[32].王正伟,杨校生,肖业祥. 新型双向潮汐发电水轮机组性能优化设计. 排灌机械工程学报. 2010, 28(5): 417-421. EI: 998.
[33].肖业祥,韩凤琴,久保田 乔.水斗曲面三维非正交贴体网格数值生成.工程热物理学报.2008, 29(4): 595- 598. EI: 101.
[34].肖业祥,郑爱玲,韩凤琴,丁二喜, 久保田 乔. CFD法研究多喷嘴冲击式水轮机的射流干涉,华南理工大学学报(自然科学版). 2007, 35(3):66-70. EI:530.
[35].韩凤琴,肖业祥,久保田 乔. 旋转水斗内的非定常射流干涉.华南理工大学学报. 2007, 35(6):25-28. EI: 360.
[36].肖业祥,韩凤琴,久保田 乔. 非定常水斗表面自由水膜流动机理,华南理工大学学报, 2006,34(4). 75-79+90. EIP:094
[37].韩凤琴,肖业祥,久保田 乔. 水斗非定常自由水膜流三维贴体数值模拟,工程热物理学报, 2006,27(4) ,601-603. EI:470.
[38].韩凤琴,肖业祥,久保田 乔. 小型水轮机涡壳三维粘性流动解析,农业机械学报, 2004,35 (2) ,46-49. EI: 36.
[39].韩凤琴,肖业祥,久保田 乔,刘洁.自由射流缩流机理研究,工程热物理学报, 2004, 25(3), 421-423. EI: 74.
二、会议论文
[1].Zeng Chongji, Xiao Yexiang, Xu Wei, Wu Tao, Zhang Jin, Wang Zhengwei, Luo Yongyao. Numerical Analysis of Pelton Nozzle Jet Flow Behavior Considering Elbow Pipe. 28th IAHR symposium on Hydraulic Machinery and Systems. July 4-8th, 2016. P. 645-652. Grenoble, France. EIP:20**7
[2].ZHAO xiaoran, XIAO Yexiang, XU Jincai, XU Wei, SUN Jianbo, WANG Zhengwei, YAO Yangyang. Unsteady Flow Analysis of Pump Mode Small Discharge Condition for a Francis Pump-turbine.28th IAHR symposium on Hydraulic Machinery and Systems. July 4-8th, 2016. P. 805-813. Grenoble, France. EIP:20**2
[3].S. Ahn, Y. Xiao, X. Zhou, J. Zhang, C. Zeng, Y. Luo, W. Xu and Z. Wang. Numerical analysis of Coriolis effect on low-head hydraulic turbines. 28th IAHR symposium on Hydraulic Machinery and Systems. July 4-8th, 2016. P. 859-865. Grenoble, France. EIP:20**4.
[4].Zhao Xiaoran, Wang Zhengwei, Xiao Yexiang, Luo Yongyao, Cao Lei. Unsteady Flow and Pressure Pulse CharacteristicsAnalysis of Rotating Stall in Centrifugal Pumps under Off Design Conditions. International Symposium on Transport Phenomena and Dynamics of Rotating Machinery. Hawaii, Honolulu April 10-15, 2016.
[5].Q F Chen, Y X Xiao, L Cao, Y Y Luo and Z W Wang. Straight flow turbine runner hole-shaperim seal design based on CFD. 2nd International Symposium of Cavitation and Multiphase Flow (ISCM 2016) Zhenjiang, China, Oct. 22– 25th, 2016.
[6].F N Chen, Y X Xiao, S H Ahn, J Zhang, Y Y Luo, Z Y Mao and Z W Wang. Numerical analysis of Flow-structure interactions with the gravity effect for Rim-generator turbines. 2nd International Symposium of Cavitation and Multiphase Flow (ISCM 2016) Zhenjiang, China, Oct. 22– 25th, 2016.
[7].Cao Lei, Wang Zhengwei, Xiao Yexiang, Luo Yongyao.Numerical Investigation on the Rotating Stall Characteristics in a Three-blade Centrifugal Impeller[C] ASME 2016 International Mechanical Engineering Congress and Exposition, 2016 Nov 11-17, Phoenix, USA. WOS:032
[8].Yao Yangyang, Xiao Yexiang, Zhu Wei, Zhai Liming, Ahn SooHwang, Wang Zhengwei. Numerical Analysis of a Model Pump-turbine Internal Flow Behavior in Pump Hump District. 27th IAHR Symposium on Hydraulic Machinery and Systems. Sep. 22-26, 2014, Montreal, Canada. EI:20**4, ISTP: BB8TH.
[9].Zeng Chongji, Xiao Yexiang, Zhu Wei, Yao Yangyang, Cao Lei, Wang Zhengwei. Pelton turbine Needle erosion prediction based on 3D three-phase flow simulation. 27th IAHR Symposium on Hydraulic Machinery and Systems. Sep. 22-26, 2014, Montreal, Canada. EI:20**8, ISTP: BB8TH.
[10].Ahn SooHwang, Xiao Yexiangand Wang Zhengwei. Numerical simulation of unsteady flow characteristics for cavitation around a 3-D hydrofoil. ISCM2014. Oct. 20-21, 2014, Beijing. EI: 20**5. ISTP: BC4DE.
[11].Yao Yangyang, Xiao Yexiang, Zhu Wei, Ahn SooHwang, Wang Zhengwei. Numerical prediction of the Pressure Fluctuations on Small Discharge Condition of a Pump-turbine at Pump Mode. ISCM2014. Oct. 20-21, 2014, Beijing. EI:20**0. ISTP: BC4DE.
[12].Zeng Chongji, Xiao Yexiang, Zhu Wei, Yao Yangyang, Wang Zhengwei. Numerical simulation of cavitation flow characteristic on Pelton turbine Bucket surface. ISCM2014. Oct. 20-21, 2014, Beijing. EI:20**8. ISTP: BC4DE.
[13].Cao Lei, Wang Zhengwei, Xiao Yexiang. Numerical research on the cavitation characteristics for typical conditions of a centrifugal pump with whole flow passage. ISCM2014. Oct. 20-21, 2014, Beijing. EI: 20**3. ISTP: BC4DE
[14].Xiao Yexiang, Zhang Jin, Luo Yongyao, Wang Zhengwei*, Xu Haihua. Numerical analysis of misaligned guide vanes effect pressure oscillations in a prototype pump turbine. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep. 19-22. Beijing. EI: 20**6, ISTP: BJO84
[15].Xiao Yexiang, Zeng Chongji, Zhang Jin, Yan Zongguo, Wang Zhengwei*. Numerical analysis of the bucket surface roughness effects in Pelton turbine. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**2, ISTP: BJO84
[16].Xiao Yexiang, Fang Bo, Zeng Chongji, Wang Zhengwei*. Erosion predictions of stock pump impellers based on liquid-solid two-phase fluid simulations. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**0, ISTP: BJO84
[17].Luo Yongyao, Xiao Yexiang, Wang Zhengwei*. The internal flow pattern analysis of a tidal power turbine operating on bidirectional generation-pumping. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**2, ISTP: BJO84
[18].Guo Qiang, Zhou Lingjiu, Xiao Yexiang, Wang Zhengwei*. Flow field characteristics analysis of a horizontal axis marine current turbine by large eddy simulation. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**7, ISTP: BJO84
[19].Xiao Baiyang, Zhou Lingjiu, Xiao Yexiang, Wang Zhengwei*. The prediction of the hydrodynamic performance of tidal current turbines. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**1, ISTP: BJO84
[20].Zhai Liming, Yao Ze, Huang Qingsong, Xiao Yexiang, Wang Zhengwei*. Analysis on pressure characteristics of pump turbine guide bearing rotating sump based on VOF model. The 6th International Conference on Pumps and Fans with Compressors and Wind Turbines. 2013, Sep.19-22. Beijing. EI: 20**8, ISTP: BJO84
[21].Xiao Yexiang, Sun Degang, Wang Zhengwei*, Zhang Jin, Peng Guoyi. Numerical Analysis of Unsteady Flow Behavior and Pressure Pulsation in Pump Turbine with Misaligned Guide Vanes. The 26th IAHR Symposium on Hydraulic Machinery and Systems. 2012, Aug.19-23. Beijing. EI: 20**4.
[22].Xiao Yexiang, Cui Tao, Wang Zhengwei*, Yan Zongguo. Numerical Simulation of Unsteady Free Surface Flow and Dynamic Performance for Pelton Turbine. The 26th IAHR Symposium on Hydraulic Machinery and Systems. 2012, Aug.19-23. Beijing. EI: 20**1.
[23].Munir Khan, Xiao Yexiang, Yuan Jinliang, Sundén Bengt*. Analysis of multiphase transport phenomena in PEMFCs by incorporating microscopic model for catalyst layer structures. ASME 2011 International Mechanical Engineering Congress and Exposition (IMECE2011). 2011, Nov.11-17. Denver, Colorado, USA. pp. 903-912. EI: 215.
[24].Xiao Yexiang, Wang Zhengwei*, Yan Zongguo, Zhang Jin. Experimental and Numerical Analysis of Pressure Pulses Characteristics in a Francis Turbine at Moderate Heads. The 25th Symposium on Hydraulic Machinery and Systems. 2010, Sep.16-19. Romania. EI: 246.
[25].Xiao Yexiang, Wang Zhengwei, Zhang Jin, Peng Guangjie, Liu Dingyou, Ma Xinhong, Xiao Ming. Numerical Analysis of Blade Channel Vortex in Francis Turbine at Part Load of middle-low Water Head. 2009 ASME Fluids Engineering Conference, August 10-14, 2009, Vail, Colonado, USA. EI: 027, ISTP: BPZ39.
[26].Xiao Yexiang, Wang Zhengwei, Yan Zongguo, Luo Yongyao, Xiao Ruofu, Peng Guangjie, Xue Peng. Experimental and Numerical Analysis of Pressure Pulsation in Francis Turbine. 2008 Proceedings of the ASME Fluids Engineering Division Summer Conference, FEDSM 2008, v1, n PART B, p:1179-1185. EI:523, ISTP:BJH23.
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