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Transient numerical analysis of rotor-stator interaction in a Francis turbine

机译:混流式水轮机中转子与定子相互作用的瞬态数值分析

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摘要

Pressure fluctuation due to rotor-stator interaction and occurrence of vortex rope in draft tube at partial load operation are obvious phenomena in Francis type reaction hydro turbines. These hydrodynamic effects are important issues and should be addressed during the design of hydraulic machines. A 3-dimensional transient state turbulent flow simulation in the entire flow passage of a 70 kW-Francis turbine having specific speed of 203.1 is conducted to investigate the rotor-stator interaction by adopting kω based SST turbulence model. The commercial 3D Navier-Stokes CFD solver Ansys-CFX is utilized to study the flow through this vertical shaft Francis turbine in its stationary and transient passages, at 100% optimum load and 72% of part load. The investigated turbine consists of a spiral casing with 16 guide vanes, 8 stay vanes, a runner with 13 blades and a draft tube. With a time step of 2° of a rotational period of the runner for 10 full rotations, the time dependent pressure and torque variations are monitored at the selected locations during the unsteady state calculation. A periodical behavior is observed for the pressure distribution in guide vanes, runner blades and torque in the runner blades. The pressure distribution curve in runner blades reveals the two dominating frequencies - the lower peaks due to runner speed and the upper peaks corresponding to the number of guide vanes interacting with the flow. The flow acceleration toward inside of the runner is depicted by the expanding wakes behind the stay vanes. Vortex rope is observed in draft tube, downstream the runner, at part-load operation.
机译:在弗朗西斯型反应水轮机中,由转子-定子相互作用引起的压力波动以及部分负荷运行时导流管中涡流绳的出现是明显的现象。这些流体动力效应是重要的问题,应在液压机的设计中加以解决。通过采用基于kω的SST湍流模型,对70 kW比转速为203.1的弗朗西斯涡轮的整个流道进行了三维瞬态湍流模拟,以研究转子-定子相互作用。商用3D Navier-Stokes CFD求解器Ansys-CFX用于研究在固定和瞬态通道中通过此立轴式混流式水轮机的流量,最佳负载为100%,部分负载为72%。所研究的涡轮机包括一个带有16个导向叶片,8个保持叶片,一个带有13个叶片的转轮和一个引流管的螺旋壳体。通过转轮旋转周期的2°的时间步长(连续10次完整旋转),可以在非稳态计算过程中在选定位置监视与时间有关的压力和扭矩变化。观察到导向叶片,流道叶片中的压力分布以及流道叶片中的扭矩具有周期性。转轮叶片中的压力分布曲线揭示了两个主要频率-由转轮速度引起的下峰值和与与流相互作用的导向叶片数量相对应的上峰值。转向叶片内部的流动加速由拉流叶片后面的扩展尾流描绘。在部分负荷运行时,在流道下游的导流管中观察到涡流绳。

著录项

  • 来源
    《Renewable energy》 |2014年第5期|227-235|共9页
  • 作者单位

    Flow Informatics Lab, Department of Mechanical & Energy System Engineering, Korea Maritime & Ocean University, Busan, South Korea;

    Department of Mechanical Engineering, School of Engineering, Kathmandu University, Dhulikhel, Nepal;

    Department of Mechanical and Energy System Engineering, Korea Maritime & Ocean University, 606-791 Busan, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Francis; Unsteady flow; Rotor-stator interaction; Vortex rope; CFD;

    机译:弗朗西斯;流量不稳定转子-定子相互作用;涡流绳;差价合约;

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