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Experimental study of swirling flow from conical diffusers using the water jet control method

机译:水射流控制方法对锥形扩压器回旋流的实验研究

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摘要

The actual requirements of the energy market enforce the hydraulic turbine to operate far from the best efficiency point. When hydraulic turbines operate at partial discharge, downstream of the runner (in the conical diffuser), the decelerated swirling flow becomes highly unstable. In these conditions a spiral vortex breakdown occurs, also known in engineering literature as the precessing vortex rope. The flow unsteadiness produced by the vortex rope results in severe pressure fluctuations that hinder the turbine operation or may cause accidents. We propose the water jet method for decelerated swirling flow with vortex rope from conical diffuser to mitigate the unsteadiness. The method involves injecting water at the inlet of the conical diffuser. Initial experimental investigations of the unsteady pressure field at conical diffuser wall reveal that the water injection method mitigates the pressure pulsations associated to the precessing vortex rope. In this paper, we investigate experimental measurements of the unsteady velocity field in a conical diffuser using LDA (Laser Doppler Anemometry). The main goal of the paper is to show how different water-jet discharge rates change the velocity field and the characteristics of the vortex rope in the wake. (C) 2020 Elsevier Ltd. All rights reserved.
机译:能源市场的实际需求迫使水轮机无法达到最佳效率点。当水轮机在转轮下游(在锥形扩压器中)以部分排放的方式运行时,减速后的旋流会变得非常不稳定。在这些条件下,会发生螺旋涡旋破坏,在工程文献中也称为旋进旋涡绳。涡流绳产生的流动不稳定会导致严重的压力波动,从而阻碍涡轮机运行或可能导致事故。我们提出了一种水喷射方法,用锥形扩散器的涡流绳减速涡流,以减轻不稳定。该方法涉及在锥形扩散器的入口处注入水。锥形扩压器壁处非定常压力场的初步实验研究表明,注水方法可减轻与旋进旋涡绳相关的压力脉动。在本文中,我们使用LDA(激光多普勒风速仪)研究了锥形扩散器中非定常速度场的实验测量。本文的主要目的是显示不同的水喷射流量如何改变速度场和尾流中涡流绳的特性。 (C)2020 Elsevier Ltd.保留所有权利。

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