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Numerical investigation on inter-blade cavitation vortex in a Franics turbine

机译:弗朗西斯汽轮机中叶片空化涡流的数值研究

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Inter-blade cavitation vortex is substantially considered as a particular cavitation flowing phenomenon associated with liquid transportation in Francis turbine. It causes several adverse effects on the pressure and velocity fields and cannot be eliminated by hydraulic design or optimization. This paper presents the numerical and experimental investigations on cavitation fluid for a reduced scale model of Francis turbine. The inter-blade cavitation vortex structure predicted by numerical simulation yields a very good validation against the experimental visualization. The vapor volume caused by cavitation flowing oscillates periodically and is accompanied by the precessing frequency of inter-blade vortex that is equivalent to the rotational frequency of the runner. Flow separation induced by negative incident angle at the leading edge of runner is identified as the main reason for the incipient and development of the inter-blade cavitation vortex. Cavitation-vortex interaction analysis in terms of the relative vorticity transport equation evidently shows that the vortex stretching term and Coriolis force term always significantly influence the vorticity production near the suction side of the runner blades while the dilatation term and baroclinic torque term play decisive roles on vorticity development adjacent to the vortex center. (C) 2020 Elsevier Ltd. All rights reserved.
机译:叶片间空化涡流基本上被认为是与弗朗西斯涡轮机中的液体运输相关的特定空化流动现象。它对压力和速度场产生若干不利影响,不能通过液压设计或优化消除。本文介绍了对弗朗西斯汽轮机减小规模模型的空化流体的数值和实验研究。通过数值模拟预测的叶片内空化涡旋结构产生了对实验性可视化的非常好的验证。由空化引起的气相周期性地振荡,并且伴随着叶片间涡流的精确频率,其等同于跑步者的旋转频率。在跑步者前缘处的负面入射角引起的流动分离被识别为叶片空化涡流初始和开发的主要原因。关于相对涡度传输方程的空化 - 涡旋相互作用分析显然表明,涡旋拉伸术语和科里奥利力术语总是显着影响流道叶片的吸入侧附近的涡度产生,而扩张项和曲金扭矩术语在争斗的作用下起决定性的作用涡旋中心相邻的涡流发展。 (c)2020 elestvier有限公司保留所有权利。

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