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Shouqi YUAN
发布日期:2017-12-31  浏览:

  Shouqi YUAN professor
  Ph.D Supervisor/ President of Jiangsu University
  Tel: (86)-511-88780007 (o)
  Email: shouqiy@ujs.edu.cn
  Add.: Room XX, Energy Research Institue, Jiangsu University
  Resarch Interests:Theory, Design, CFD and PIV of Drainage and Irrigation Machinery as well as Fluid Machinery

  Education
  Ph.D. (1991.9-1994.10) Agriculture Machinery Design and Manufacture, Jiangsu University of Science and Technology
  M.E. (1987.9-1990.12) Fluid Machinery and Hydrodynamic Engineering, Jiangsu University of Science and Technology
  B.E. (1980.9-1984.7) Hydraulic Machinery, Jiangsu Institute of Technology

  Professional experience
  2006.12 - Now, Research Professor, Academic Leader of Fluid Machinery and Engineering, President, Jiangsu University
  2001.8~2006.12, Research Professor, Academic Leader of Fluid Machinery and Engineering, Vice-President, Jiangsu University
  1997.10~2001.8, Research Professor, Director of Postgraduate School/Research Center of Fluid Machinery Engineering and Technology, Jiangsu University of Science and Technology
  1996.9~1997.9, Research Professor, Vice-Director of Research Center of Fluid Machinery Engineering and Technology, Jiangsu University of Science and Technology, China
  1995.10-1996.9, Visiting Scholar, Cranfield University, UK
  1984.8~1995.9, Assistant Researcher, Institute of Drainage and Irrigation Machinery, Jiangsu University of Science and Technology

  Membership of Editorial and Advisory Boards
  1. Chief Editor, Journal of Irrigation and Drainage Mechanical Engineering
  2. Chief Editor, Journal of Jiangsu University (Version of Natural Sciences)
  3. Vice Editor, Journal of Agricultural Machinery
  4. Vice President, Asian Agricultural Engineering Association
  5. Executive Director, China’s Agricultural Engineering Association
  6. Director, the CREA’s Irrigation and Drainage Branch

  Projects
  · Precise sprinkling irrigation technology and products. National Project 863, Grant No. 2011AA100506
  · Research on key technology of centrifugal pumps with million kilowatts nuclear power. National National Key Technology R&D Program, Grant No. 2011BAF14B04
  · Study on basic theories and energy-saving technology of centrifugal pumps. National Outstanding Young Scientists Funds of China, Grant No.50825902
  · Research on the mechanism of flow-induced vibration in centrifugal pumps and its active control technology. Natural science foundation ofJiangsu Province, Grant No. BK2009006
  · Improvement and pilot-scale study for the new Jet type water-saving irrigation device. Science and technology ministry agricultureachievement transformation fund, Project No. 2006GB2C100098.

  Selected Papers
  [1] Xin Deng, Shouqi Yuan, Jianping Yuan, Qiaorui Si, Yalin Li, Yuwen Zhu. Antiseismic response research of horizontal residual heat removal pump in different seismic spectrum input directions. Journal of Vibroengineering, 2014, 16(3), 1306-1317.
  [2] Xin Deng, Shouqi Yuan, Qiaorui Si, Yalin Li, Ji Pei, Jianping Yuan. Seismic response analysis of residual heat removal pump considering transient fluid excitation force in 1000-MW nuclear power plants. Journal of Vibroengineering, 2014, 16(2), 965-976.
  [3] Yin Luo, Shouqi Yuan, Jianping Yuan, Jiaxin Lu. Research on Characteristic of the Vibration Spectral Entropy for Centrifugal Pump. Advances in Mechanical Engineering, 2014, 2014, 698938.
  [4] Fan Zhang, Shouqi Yuan, Qiang Fu, Feng Hong, Jianping Yuan. Investigation of Transient Flow in a Centrifugal Charging Pump during Charging Operating Process. Advances in Mechanical Engineering, 2014, 2014, 860257.
  [5] Ji Pei, Wenjie Wang, Shouqi Yuan, Jieyun Mao. Numerical Investigation of Periodically Unsteady Pressure Field in a High Power Centrifugal Diffuser Pump. Advances in Mechanical Engineering, 2014, 2014, 159380.
  [6] Ji Pei, Shouqi Yuan, Wenjie Wang. Numerical Analysis of Pressure Fluctuation Intensity for a Low-Speed Sewage Centrifugal Pump. Advances in Mechanical Engineering, 2014, 2014, 929672.
  [7] Xingye Zhu, Shouqi Yuan, Junping Liu. Effect of Sprinkler Head Geometrical Parameters on Hydraulic Performance of Fluidic Sprinkler. Journal of Irrigation and Drainage Engineering, 2014, 140, DOI: 10.1061/(ASCE)IR.1943-4774.0000660.
  [8] Qiaorui Si, Jianping Yuan, Shouqi Yuan, Wenjie Wang, Lei Zhu, Gérard Bois. Numerical Investigation of Pressure Fluctuation in Centrifugal Pump Volute Based on SAS Model and Experimental Validation. Advances in Mechanical Engineering, 2014, 2014, 972081.
  [9] Houlin Liu, Yong Wang, Dongxi Liu, Shouqi Yuan, Jian Wang. Assessment of a turbulence model for numerical predictions of sheet-cavitating flows in centrifugal pumps? Journal of Mechanical Science and Technology, 2013, 27(9), 2743-2750.
  [10] XiaoJun Li, ShouQi Yuan, ZhongYong Pan, JianPing Yuan, YanXia Fu. Numerical simulation of leading edge cavitation within the whole flow passage of a centrifugal pump. Science China Technological Sciences, 2013, 56(9), 2156-2162.
  [11] Ji Pei, Shouqi Yuan, Jianping Yuan. Fluid-structure coupling effects on periodically transient flow of a single-blade sewage centrifugal pump. Journal of Mechanical Science and Technology, 2013, 27(7), 2015-2023.
  [12] Ji Pei, Shouqi Yuan, Wenjie Wang. Numerical Analysis of Three-Dimensional Unsteady Turbulent Flow in Circular Casing of a High Power Centrifugal Diffuser Pump. Advances in Mechanical Engineering, 2013, 2013, 204521.
  [13] Qiaorui Si, Shouqi Yuan, Jianping Yuan, Chuan Wang, Weigang Lu. Multiobjective Optimization of Low-Specific-Speed Multistage Pumps by Using Matrix Analysis and CFD Method. Journal of Applied Mathematics, 2013, 2013, 136195.
  [14] Xiaojun Li, Shouqi Yuan, Zhongyong Pan, Yi Li, Wei Liu. Dynamic Characteristics of Rotating Stall in Mixed Flow Pump. Journal of Applied Mathematics, 2013, 2013, 104629.
  [15] Houlin Liu, Kai Wang, Shouqi Yuan, Minggao Tan, Yong Wang, Liang Dong. Multicondition Optimization and Experimental Measurements of a Double-Blade Centrifugal Pump Impeller. Journal of Fluids Engineering, 2013, 135(1), 011103.
  [16] Luo Yin, Shouqi Yuan, Tang Yue, Yuan Jianping. Research on the Energy Consumption Evaluation and Energy Saving Technical Reconstruction of Centrifugal Pump System Based on Actual Demand. Advances in Mechanical Engineering, 2013, 2013, 423107.
  [17] Ji Pei, ShouQi Yuan, JianPing Yuan. Numerical analysis of periodic flow unsteadiness in a single-blade centrifugal pump. Science China Technological Sciences, 2013, 56(1), 212-221.
  [18] Quan Wang, Jin Zhang, Shouqi Yuan, Xinxin Li. Tunnel effect causing nonlinear current in few-layer graphene. Applied Physics Letters, 2012, 101, 063503.
  [19] Yin Luo, Shouqi Yuan, Yue Tang, Jianping Yuan, Jinfeng Zhang. Modeling Optimal Scheduling for Pumping System to Minimize Operation Cost and Enhance Operation Reliability. Journal of Applied Mathematics, 2012, 2012, 370502.
  [20] Shouqi Yuan, Yongyan Ni, Zhongyong Pan, Jianping Yuan. Unsteady turbulent simulation and pressure fluctuation analysis for centrifugal pumps. Chinese Journal of Mechanical Engineering,2009,22(1), 64-69.
  [21] Shouqi Yuan, Peifang Zhang, Jinfeng Zhang, Weixing Xu. Numerical simulation of 3-D dense solid-liquid two-phase turbulent flow in a non-clogging mud pump. Chinese Journal of Mechanical Engineering,2004,17(4), 623-627.
  [22] Shouqi Yuan, Bin Hu, Xinkun Wang, Xingye Zhu, Qin Tu. Optimum configuration and performance experiment of sprinkler-drip dual-purpose irrigation machine. Transactions of the Chinese Society of Agricultural Engineering , 2014, 30(3), 56-62.
  [23] Shouqi Yuan, Guoping Niu, Yue Tang, Lingdi Tang, Xiangyuan Zhu. Experiment and numerical estimation of performance of hydraulic turbine of JP50 reel sprinkle. Journal of Drainage and Irrigation Machinery Engineering, 2014, 32(7), 553-562.
  [24] Shouqi Yuan, Yalin Li, Yue Tang, Jianping Yuan. Analysis on Factors Influencing Following Features of Tracer Particles in Centrifugal Pumps. Journal of Mechanical Engineering, 2012, 48(20), 174-181.
  [25] Shouqi Yuan, Bo Hu, Weigang Lu, Tong Li, Zhipan Huang. Multi-operating-condition design of centrifugal pump with medium specific speed. Journal of Drainage and Irrigation Machinery Engineering, 2012, 30(5), 497-502.
  [26] Shouqi Yuan, Xinkun Wang. Present Research Situation and Perspective of Drainage and Irrigation Machinery in China. Journal of agricultural machinery, 2008, 39(10), 52-58.
  [27] Shouqi Yuan, Xingye Zhu, Hong Li, Zhiyuan Ren. Effects of complete fluidic sprinkler on hydraulic characteristics based on some important geometrical parameters. Transactions of CSAE, 2006, 22(10), 113-116
  [28] Shouqi Yuan, Youshi He, Jianping Yuan, xiaoqing Cong, Binjuan Zhao. PIV Measurements and Numerical Simulations of Flow in Centrifugal Pump Impellers with Splitting Vanes. Chinese Journal of Mechanical Engineering, 2006, 42(5), 60-63.
  [29] Shouqi Yuan, Yi Li, Zhaohui He. 3-D calculation of solid-liquid two-phase turbulent flow within a non-clogging centrifugal pump. Chinese Journal of Mechanical Engineering, 2003, 39(7), 18-22.
  [30] Shouqi Yuan, Anxiang Xu. Present Situation and Perspective of Drainage and Irrigation Machinery in China. Journal of agricultural machinery,2002,33(5), 117-118.
  .......

  Research Supervision (Excellent PhD Dissertations)
  1. Qiubaoyun, Study on theories and key techniques of pump assemblies for east route of south to north water transfer project. Prize for National Excellent Ph.D Dissertation of China, 2007
  2. Zhu Xingye, Theory and precise sprinkling irrigation for the complete fluidic sprinkler. Nomination of Prize for National Excellent Ph.D Dissertation of China, 2011
  3. Zhu Xingye, Theory and precise sprinkling irrigation for the complete fluidic sprinkler. Ercolanese Bonus for Excellent Ph.D Dissertation of Italy, 2011

  Main Prized Achievements
  1. Research on new typed agricultural water-saving irrigation equipment and its application. Scientific and technological progress award of higher education, Ministry of Education, China, first prize, 2011
  2. Research on variable rate, precise, low energy and light-duty irrigation equipment. Scientific and technological progress award of China’s agriculture water-saving, first prize, 2011
  3. Inner Flow Characteristics and Energy-Saving Technologies for Centrifugal Pumps. Scientific and technological progress award, Ministry of Education, China, second prize, 2010
  4. Four “C” –based innovative talents training system in Fluid Machinery Engineering, National instruction achievements award, second prize, 2009
  5. Sci-tech Innovation Award of The Ho Leung Ho Lee Foundation, 2009
  6. Research on the theory and key technology of submersible pumps and their popularization and application. National scientific and technological progress award, second prize, 2007
  7. Research state of the hydraulic design and 3-D turbulent flow numerical simulation of centrifugal pumps. Jiangsu province scientific and technological progress award, first prize, 2003

 
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