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Experimental study on the vibrational performance and its physical origins of a prototype reversible pump turbine in the pumped hydro energy storage power station

机译:抽水蓄能电站中可逆式水泵水轮机的振动性能及其物理成因的实验研究

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In the present paper, the vibrational performance and its physical origins of a prototype reversible pump turbine in the pumped hydro energy storage power station is experimentally investigated. Specifically, the vibrations of the unit in the X, Y and Z directions of the top cover, the upper and the lower brackets were all measured for three water heads (from 48% to 90% in terms of non-dimensional values) and nine load conditions (from 34% to 96% of the rated power) together with the pressure measurement at several typical monitoring points. Based on our analysis, it was found that the vibrations of the top cover are mainly induced by the fluid flow inside the reversible pump turbine while the vibrations of the upper and the lower brackets are generated by the mechanical aspects of the rotor. For the top cover, three regions are proposed with their characteristics and its physical origins fully demonstrated with the aid of several typical examples. In region I (with the low partial loads), the vibrational level of the unit is the highest and its physical origin is the pressure fluctuation in the vaneless space with the blade passing frequency. In region II (with the medium loads), the vibrational level of the unit is medium and its physical origin is the swirling vortex in the draft tube. In region III (with the high partial load), the vibrational level of the unit is the lowest and its physical origin is twofold: the pressure fluctuation in the vaneless space with the harmonics of blade passing frequency and the mechanical aspects of the rotor. For different water heads, transitions between aforementioned categorized regions could be observed with the primary characteristics maintained. At last, comparing with the cases of the top cover, the vibrations of the upper and the lower brackets are less affected by the load and the water head variations. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文对抽水蓄能电站中可逆式水泵水轮机的振动性能及其物理成因进行了实验研究。具体来说,针对三个水头(无量纲值从48%到90%)和九个水头,分别测量了顶盖,上支架和下支架在X,Y和Z方向上的单元振动。负载条件(从额定功率的34%到96%)以及几个典型监控点的压力测量。根据我们的分析,发现顶盖的振动主要由可逆泵涡轮内部的流体流动引起,而上,下支架的振动则由转子的机械方面产生。对于顶盖,提出了三个具有其特征的区域,并通过几个典型示例充分证明了其物理起源。在区域I(具有较低的部分负荷)中,单元的振动水平最高,其物理起因是无叶片空间中随叶片通过频率的压力波动。在区域II(具有中等载荷)中,设备的振动水平中等,其物理起因是引流管中的旋涡。在区域III中(具有较高的部分负荷),该装置的振动水平最低,其物理起因是双重的:无叶片空间中的压力波动与叶片通过频率的谐波以及转子的机械特性有关。对于不同的水位,可以在保持主要特征的情况下观察到上述分类区域之间的过渡。最后,与顶盖的情况相比,上托架和下托架的振动受载荷和水头变化的影响较小。 (C)2018 Elsevier Ltd.保留所有权利。

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