抽水蓄能电站安全稳定行
研究定/变速抽水蓄能机组工况转换过程的振动机理与减振策略,承担国家自然科学基金和国家科技重大专项
参与西南地区重大水电工程的水力安全和运行调控研究,解决超高水头、超大容量水力机械的关键技术难题
西南重大水电工程运行调控
基于1D-3D耦合仿真和数字孪生技术,构建水电站全流程数字孪生系统,实现电站智能运行与安全预警
数字孪生电站/泵站
重点研究方向
面向国家重大需求,  聚焦水力机械前沿,  三大方向协同推进
最新研究进展
课题组近年来在能源与水力机械领域取得的研究进展
贺卡轮播
学术成果
课题组近年来在能源与水力机械领域发表的高水平学术论文
学术成果列表
  1. Multi-objective optimization of nozzle-switchingstrategy for power regulation in Pelton turbine, ENERGY CONVERSION ANDMANAGEMENT-X, 2026.

  2. Unsteady behavior of vaneless space water ring anddraft-tube free surface during synchronous condenser operation of pump-turbine, JOURNAL OF ENERGY STORAGE, 2026.

  3. Pumped storage hydropower operation for supporting clean energy systems,NATURE REVIEWS CLEAN TECHNOLOGY, 2025.
  4. Concept and hydraulic optimization of a dual-layerrunner for ultra-high head ultra-large capacity Francis turbines, ENERGY, 2025.

  5. Enhancing operational stability of an ultra-high-headpump-turbine using guide-vanes with horizontal blades, ENERGY, 2025.

  6. Runner modification optimization design method forpump-turbine runner considering hydraulic transient guarantee parameterconstraints, ENERGY, 2025.

  7. Three-dimensional computational fluid dynamics analysisof the interaction mechanism of pump-turbines sharing one hydraulic systemduring successive load rejection transients, PHYSICS OF FLUIDS, 2025.

  8. CFD-based hydraulic-mechanical-electrical coupledsimulation method for variable-speed pumped storage units, ENERGY, 2025‍.

  9. Mechanism and effect of seal vibration of a radial gateat small opening heights: Fluid-structure interaction simulation, PHYSICS OFFLUIDS, 2025.

  10. Mechanism analysis of the abnormal head-cover vibrationof an ultra-high-head pump-turbine operating in pump mode by CFD and FEM, ENGINEERINGAPPLICATIONS OF COMPUTATIONAL FLUID MECHANICS, 2024.

  11. Predicting pump-turbine characteristic curves bytheoretical models based on runner geometry parameters, ENERGY, 2025.

  12. 1D-3D coupled simulation method of hydraulic transientsin ultra-long hydraulic systems based on OpenFOAM, ENGINEERINGAPPLICATIONS OF COMPUTATIONAL FLUID MECHANICS, 2023.

  13. Revealing the pressure pulsations that can cause watercolumn separation in pump-turbine, JOURNAL OF FLUIDS AND STRUCTURES, 2023.

  14. Broadening the operating range of pump-turbine todeep-part load by runner optimization, RENEWABLE ENERGY, 2023.

  15. Clearance flow patterns and pressure distribution of apump-turbine: Measurement and simulation of a rotating disk flow, FRONTIERS INENERGY RESEARCH, 2022.

  16. Distribution Features of Flow Patterns and PressurePulsations of Pump-Turbine in Five Operating Modes on the Four-Quadrant Plane, FRONTIERSIN ENERGY RESEARCH, 2022.

  17. Three-Dimensional CFD Simulations of Start-Up Processesof a Pump-Turbine Considering Governor Regulation, ENERGIES, 2021.

  18. Influence of Clearance Flow on Dynamic Hydraulic Forcesof Pump-Turbine during Runaway Transient Process, ENERGIES, 2021.

  19. Evaluating the pressure fluctuations during loadrejection of two pump-turbines in a prototype pumped-storage system by using1D-3D coupled simulation, RENEWABLE ENERGY, 2021.

  20. Water column separation in pump-turbine after loadrejection: 1D-3D coupled simulation of a model pumped-storage system, RENEWABLEENERGY, 2021.

  21. Three-dimensional simulationof reservoir temperature and pollutant transport by the lattice Boltzmannmethod, ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2021.

  22. Differences of Flow Patterns and Pressure Pulsations inFour Prototype Pump-Turbines during Runaway Transient Processes, ENERGIES, 2020.

  23. Influence of rotational inertia on the runner radialforces of a model pump-turbine running away through the S-shaped characteristicregion, IET RENEWABLE POWER GENERATION, 2020.

  24. Evolutions of flow patterns and pressure fluctuations ina prototype pump-turbine during the runaway transient process after pump-trip, RENEWABLEENERGY, 2020.

  25. Simulating vortex inducedvibration of an impulsively started flexible filament by an implicit IB-LBcoupling scheme, COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2020.

  26. A 1D-2D Coupled LatticeBoltzmann Model for Shallow Water Flows in Large Scale River-Lake Systems, APPLIEDSCIENCES-BASEL, 2020‍.

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