首页> 外文会议>ASME Fluids Engineering Division summer meeting >OPTIMIZATION AND INVESTIGATION ON THE IMPACT OF CENTRIFUGAL IMPELLER BLADE THICKNESS DISTRIBUTION ON HYDRO-INDUCED VIBRATION
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OPTIMIZATION AND INVESTIGATION ON THE IMPACT OF CENTRIFUGAL IMPELLER BLADE THICKNESS DISTRIBUTION ON HYDRO-INDUCED VIBRATION

机译:离心叶轮叶片厚度分布对水力振动影响的优化研究

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The vibration performance of centrifugal impellers is of great importance for pumps in some application areas such as automobiles and ships. Apart from mechanical excitations for instance, unbalanced rotor and misalignment, attentions should be concentrated on the hydraulic excitations. The complex internal secondary flow in the centrifugal impeller brings degradation on both hydraulic and vibration performances. On the purpose of repressing the internal secondary flow and alleviating vibration, an attempt of optimization by controlling the thickness distribution of centrifugal impeller blade is given. The vibration performances of the impellers are investigated numerically and experimentally. Meanwhile, further study on the mechanism of the influence of the thickness distribution optimization on vibration is conducted. There is a relative velocity gradient from suction side (SS) to pressure side (PS) due to the Coriolis force, which causes non-uniformity of energy distribution. By means of thickness distribution optimization, the impeller blade angle on the PS and SS along the blade-aligned (BA) streamwise location is respectively modified and therefore the flow field can be improved.
机译:离心叶轮的振动性能对于某些应用领域(例如汽车和轮船)中的泵非常重要。除了机械激励(例如转子不平衡和未对准)外,还应将注意力集中在液压激励上。离心式叶轮中复杂的内部二次流会导致液压性能和振动性能下降。为了抑制内部二次流并减轻振动,给出了通过控制离心式叶轮叶片的厚度分布进行优化的尝试。对叶轮的振动性能进行了数值和实验研究。同时,进一步研究了厚度分布优化对振动的影响机理。由于科里奥利力的作用,从吸力侧(SS)到压力侧(PS)会有相对速度梯度,这会导致能量分布不均匀。通过厚度分布优化,分别修改了PS和SS上沿叶片对齐(BA)流向位置的叶轮叶片角度,因此可以改善流场。

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