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Zhou Ling
Date:2019-12-07  View:

Curriculum Vitae

Zhou Ling
Doctor of Engineering
Associate Professor
TEL: 13815477737
Email: lingzhou@ujs.edu.cn
Location: Room 505, Research Center of Fluid Machinery Engineering and Technology, Jiangsu University

Biography

Fields of research:
1. High-efficiency, high-lift submersible oil / submersible pump numerical simulation, optimization design and hydraulic model development;
2. Experimental measurement and control methods of pressure pulsation and axial force of multi-stage pumps;
3. Two-phase flow and abrasion and wear of fluid machinery.

Education and work experience:
2014/09-now, Research Center of Fluid Machinery Engineering and Technology, Jiangsu University
2018/03-2019/03, Washington University in St. Louis, visiting scholar
2011/09-2014/06, Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, doctor
2008/09-2011/06, Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, master
2004/09-2008/07, Building Environment and Equipment Engineering, North China Institute of Water Resources and Hydropower, bachelor of engineering

Main Publications:
[1] Ling Zhou, Weidong Shi*, Weigang Lu, Bo Hu, Suqing Wu. Numerical investigations and performance experiments of a deep-well centrifugal pump with different diffusers. ASME Journal of Fluids Engineering, 2012, 134(07):0711002–8. (SCI, IF: 1.72)
[2] Ling Zhou, Weidong Shi*, Wei Li, Ramesh Agarwal. Numerical and experimental study of axial force and hydraulic performance in a deep-well centrifugal pump with different impeller rear shroud radius. ASME Journal of Fluids Engineering, 2013, 135(10):104501 –8. (SCI, IF: 1.72)
[3] Ling Zhou, Lingjie Zhang, Weidong Shi, Ramesh Agarwal*, Wei Li. Transient Computational Fluid Dynamics/Discrete Element Method simulation of gas–solid flow in a spouted bed and its validation by high-speed imaging experiment. ASME Journal of Energy Resources Technology, 2018, 140(1): 012206-9. (SCI, IF: 2.759)
[4] Ling Zhou, Zheming Zhang, Chris Chivetta, Ramesh Agarwal*. Process simulation and validation of Chemical-Looping with Oxygen Uncoupling (CLOU) process using Cu-based oxygen carrier. Energy&Fuels, 2013, 27(11):6906–6912. (SCI, IF: 3.021)
[5] Ling Zhou*, Lingjie Zhang, Ling Bai, Weidong Shi, Wei Li, Chuan Wang*, Ramesh Agarwal. Experimental study and transient CFD/DEM simulation in a fluidized bed based on different drag models, RSC Advances, 2017, 7, 12764–12774. (SCI, IF: 3.049)
[6] Ling Zhou, Ling Bai, Wei Li, Weidong Shi*, Chuan Wang. PIV validation of different turbulence models used for numerical simulation of a centrifugal pump diffuser. Engineering Computations, 2018, 35(1), 2-17. (SCI, IF: 1.246)
[7] Ling Zhou, Weidong Shi*, Weidong Cao, Hongbin Yang. CFD investigation and PIV validation of flow field in a compact return diffuser under strong part-load conditions. Science China Technological Sciences, 2015, 58(3):405–414. (SCI, IF:2.18)
[8] Ling Zhou, Weidong Shi*, Wei Li, Ramesh Agarwal. Particle Image Velocimetry measurements and performance experiments in a compact return diffuser under different rotating speed. Experimental Techniques, 2016, 40(1):245–252. (SCI, IF:0.779)
[9] Ling Zhou, Weidong Shi*, Suqing Wu. Performance optimization in a centrifugal pump impeller by orthogonal experiment and numerical simulation. Advances in Mechanical Engineering, 2013, 5(8):1–7. (SCI, IF: 1.024)
[10] Ling Zhou, Weidong Shi*, Ling Bai, Weigang Lu, Wei Li. Numerical calculation and experimental study of axial force in a deep-well centrifugal pump. Latin American Applied Research, 2014, 44(1):105–110. (SCI, IF:1.145)
[11] Ling Zhou, Ling Bai, Weidong Shi*, Wei Li, Chuan Wang, Daoxing Ye. Numerical analysis and performance experiment of electric submersible pump with different diffuser vanes number. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2018, 40(1): 1–11. (SCI, IF:1.743)
[12] Chuan Wang, Weidong Shi, Xinkun Wang, Xiaoping Jiang, Yang Yang, Ling Zhou*. Optimal design of multistage centrifugal pump based on the combined energy loss model and computational fluid dynamics. Applied Energy, 2017, 187:10–26. (SCI, IF:8.426)
[13] Wei Li*, Ling Zhou*, Weidong Shi, Leilei Ji, Yongfei Yang, Xiaofan Zhao. PIV experiment of the unsteady flow field in mixed-flow pump under part loading condition. Experimental Thermal and Fluid Science, 2017, 83:191–199. (SCI, IF:2.616)
[14] Ling Bai, Weidong Shi, Ling Zhou*, Lingjie Zhang, Wei Li, Ramesh Agarwal*. Experimental study of transient hydrodynamics in a spouted bed of polydisperse particles. ASME Journal of Energy Resources Technology, 2018, 140(8): 082206. (SCI, IF: 2.795)
[15] Mahmoud A. El-Emam, Weidong Shi*, Ling Zhou*. CFD-DEM simulation and optimization of gas-cyclone performance with realistic macroscopic particulate matter. Advanced Powder Technology, 2019, in press. (SCI, IF: 3.250)
[16] Ling Bai, Ling Zhou*, Xiaoping Jiang*, Qinglong Pang, Daoxing Ye. Vibration in a multistage centrifugal pump under varied conditions. Shock and Vibration, 2019, 2057031, 1-9. (SCI, IF: 1.628)
[17] Ling Bai, Ling Zhou*, Chen Han, Yong Zhu*, Weidong Shi. Numerical study of pressure fluctuation and unsteady flow in a centrifugal pump. Processes, 2019, 7(6), 354. (SCI, IF: 1.963)
[18] Xiaoping Jiang, Li Wang, Ling Zhou*, Wei Li, Chuan Wang. Transient response analysis of cantilever multistage centrifugal pump based on multi-source excitation. Journal of Low Frequency Noise, Vibration and Active Control, 2019, 1-17. (SCI, IF: 1.491)
[19] Wei Li, Xiaoping Jiang, Qinglong Pang, Ling Zhou*. Numerical simulation and performance analysis of a four-stage centrifugal pump. Advances in Mechanical Engineering, 2016, 8(10): 1–8. (SCI, IF: 1.024)
[20] Wang Li, Liu Houlin, Wang Kai, Ling Zhou*, Jiang Xiaoping*, Li Yu. Numerical simulation of the sound field of a five-stage centrifugal pump with different turbulence models. Water, 2019, 11, 1777. (SCI, IF: 2.524)
[21] Weidong Shi, Ling Zhou*, Weigang Lu, Bing Pei, Tao Lang. Numerical prediction and performance experiment in a deep-well centrifugal pump with different impeller outlet width. Chinese Journal of Mechanical Engineering, 2013, 26(1): 46–52. (SCI, IF:1.413)
[22] Weidong Shi, Ling Zhou*, Weigang Lu, Lei Xu, Wei Li. Numerical simulation and experimental study of different stages deep-well centrifugal pump. Journal of Computational and Theoretical Nanoscience, 2013, 10(12):2897–2901. (SCI, IF:1.666)
[23] Chuan Wang*, Weidong Shi, Qiaorui Si, Ling Zhou*. Numerical calculation and finite element calculation on impeller of stainless steel multistage centrifugal pump, Journal of Vibroengineering, 2014, 16(4):1723–1734. (SCI, IF:0.398)
[24] Yong Zhu, Shengnan Tang*, Lingxiao Quan, Wanlu Jiang, Ling Zhou*. Extraction method for signal effective component based on extreme-point symmetric mode decomposition and Kullback–Leibler divergence[J]. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, 41(2): 1-13. (SCI, IF:1.743)
[25] Zheming Zhang, Ling Zhou, Ramesh Agarwal. Transient simulations of spouted fluidized bed for coal-direct Chemical Looping Combustion. Energy&Fuels, 2014, 28(2): 1548–1560. (SCI, IF: 3.021)
[26] Chuan Wang, Xikun Wang, Weidong Shi*, Weigang Lu, Soon Keat Tan, Ling Zhou. Experimental investigation on impingement of a submerged circular water jet at varying impinging angles and Reynolds numbers. Experimental Thermal and Fluid Science, 2017, 89(12): 189-198. (SCI, IF:2.616)
[27] Jiageng Li, Ramesh K. Agarwal, Ling Zhou, Bolun Yang. Investigation of a bubbling fluidized bed methanation reactor by using CFD-DEM and approximate image processing method. Chemical Engineering Science, 2019, 207(2), 1107-1120. (SCI, IF:3.372)
[28] Chuan Wang, Weidong Shi, Ling Zhou, et al. Effect analysis of geometric parameters on stainless steel stamping multistage pump by experimental test and numerical calculation. Advances in Mechanical Engineering, 2013, (12):1-8. (SCI, IF: 1.024)
[29] Guangjian Zhang, Weidong Shi, Desheng Zhang, Chuan Wang, Ling Zhou. A hybrid RANS/LES model for simulating time-dependent cloud cavitating flow around a NACA66 hydrofoil. Science China Technological Sciences, 2016, 59(8): 1252-1264. (SCI, IF:2.18)
[30] Xiongfa Gao, Weidong Shi*, Ling Zhou, Desheng Zhang, Qihua Zhang. Computational fluid dynamics and experimental study of inter-stage seal clearance on submersible well pump. Advances in Mechanical Engineering, 2016, 8(2): 1-7. (SCI, IF: 0.848)
[31] Linwei Tan, Weidong Shi, Desheng Zhang, Ling Zhou, Chuan Wang. Numerical and experimental investigations of pressure fluctuations in single-channel pumps[J]. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 2018, 232(4): 397-415. (SCI, IF: 1.694)
[32] Linwei Tan, Desheng Zhang, Weidong Shi*, Ling Zhou, Xiaotong Cai. Influence of volute basic circle diameter on the pressure fluctuations and flow noise of a low specific speed sewage pump. Journal of Vibroengineering, 2017, 19(5): 3779-3796. (SCI, IF:0.939)
[33] Wei Li*, Xiaofan Zhao, Weiqiang Li, Weidong Shi, Leilei Ji, Ling Zhou. Numerical prediction and performance experiment in an engine cooling water pump with different blade outlet widths. Mathematical Problems in Engineering, 2017, 8945712, 11 pages. (SCI, IF: 1.145)
[34] Wei Li*, Leilei Ji, Weidong Shi*, Ling Zhou, Xiaoping Jiang, Yang Zhang. Fluid-structure interaction study of a mixed-flow pump impeller during startup. Engineering Computations, 2018, 35(1): 18-34. (SCI, IF: 1.246)
[35] Wei Li, Leilei Ji, Weidong Shi, Yulu Wang, Ling Zhou, Xiaoping Jiang. Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions[J]. Shock and Vibration, 2018, 2059784. (SCI, IF: 1.628)
[36] Ling Zhou, Ling Bai, Lingjie Zhang, Weidong Shi, Ramesh Agarwal*. Validation and comparison of Discrete Element Model and Two-Fluid Model for dense gas–solid flow simulation in a fluidized bed[J]. International Journal of Energy for a Clean Environment, 2019, 20(2):135–151. (EI)
[37] Ling Zhou, Weidong Shi*, Wei Li. Optimization of impeller rear shroud radius in deep-well centrifugal pump based on golden section method. Energy Education Science and Technology Part A: Energy Science and Research, 2012, 30(SI.2): 377–382. (EI)
[38] Ling Zhou, Zheming Zhang, Ramesh Agarwal*. Simulation and validation of Chemical-looping Combustion using ASPEN Plus. International Journal of Energy and Environment, 2014, 5(1):53–58.
[39] Guangjian Zhang, Weidong Shi, Ling Zhou*, et al. Effect of the maximum density ratio between liquid and vapor on cavitating simulation. American Journal of Engineering and Applied Sciences, 2015, 9(1): 119–126.
[40] Mahmoud A. El-Emam, Saad Fathallah Ahmed, Mohamed Ahmed Sabah, Soliman Nasif, Weidong Shi*, Ling Zhou*. Design and construction of a pneumatic harvesting and cleaning machine for jojoba seeds. Engineering in Agriculture, Environment and Food, 2019, in press.
[41] Xiao Zhang, Subhodeep Banerjee, Ling Zhou, Ramesh Agarwal*. Process simulation and maximization of energy output in chemical-looping combustion using ASPEN plus. International Journal of Energy and Environment, 2015, 6(2): 201–226.

 
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