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Runner blade number influencing RPT runner flow characteristics under off-design conditions

机译:转轮叶片数量在非设计条件下影响RPT转轮流量特性

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Reversible pump turbine (RPT)'s runner inter-blade flow unsteadiness onset and development especially under off-design conditions is still one of unresolved issues, yet continues to cause different complications on a daily basis within pumped storage power plants, detrimental pressure pulsations and resulting structural vibrations among others. Though different methods have been used to solve the issue at hand, an adequate solution suitable for all designs has not yet been found; a fact that calls for a more deep understanding in terms of RPT runner flow dynamics and possible influencing parameters. Therefore, the present study seeks to investigate the RPT flow dynamics and associated runner inlet pressure pulsations under off-design operating conditions, as well as the effect of runner blade number on the same. Three RPT models with different runner blade numbers were numerically investigated. The results showed that runner flow unsteadiness has a close relationship with the machine flow conditions, where flow vortices are mostly located at the runner shroud and vicinities. The runner flow unsteadiness decreased with the increasing blade number. The runner blade number considerably influenced runner inlet pressure pulsations where pulsation levels of models with 9 and 10 blades were the highest and lowest respectively. (c) 2020 Elsevier Ltd. All rights reserved.
机译:可逆式水轮机(RPT)的叶轮间流动不稳定和起步发展,特别是在非设计状态下,仍是未解决的问题之一,但仍每天在抽水蓄能电站中引起不同的复杂情况,有害的压力脉动和导致结构振动等。尽管已经采用了不同的方法来解决当前的问题,但尚未找到适合所有设计的适当解决方案。这一事实需要对RPT转轮流动力学和可能的影响参数有更深入的了解。因此,本研究旨在研究非设计工况下的RPT流动动力学和相关的流道入口压力脉动,以及流道叶片数量对其的影响。数值研究了三种具有不同叶轮编号的RPT模型。结果表明,流道的不稳定与机器的流动条件密切相关,其中的流动涡流大多位于流道的护罩和附近。流道的不稳定性随着叶片数量的增加而减小。转轮叶片数量极大地影响了转轮入口压力脉动,其中具有9个叶片和10个叶片的模型的脉动水平分别最高和最低。 (c)2020 Elsevier Ltd.保留所有权利。

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