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Experimental Characterization of Unsteady Forces Triggered by Cavitation on a Centrifugal Pump †

机译:离心泵空化触发不稳定力的实验表征†

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摘要

The paper presents an experimental campaign aimed at the characterization of the relationship between cavitation-induced instabilities and forces acting on the shaft, relevant to space application turbopumps. The experiments have been carried out on a six-bladed unshrouded centrifugal turbopump. Pressure fluctuations are analyzed in their frequency content for understanding the instability nature (axial, rotating) and their main characteristics (e.g., amplitude, rotating direction). The spectral analysis of the force components highlights a strong relationship of the z-component (along the rotating axis) with axial instabilities. On the other hand, rotating cavitation may involve force oscillations along all the three components leading to unwanted and dangerous fluctuating unbalances perpendicular to the rotating axis.
机译:本文提出了一种实验活动,旨在表征空化诱导的稳定性和作用在轴上的力之间的关系,与空间涂布涡轮泵相关。实验已经在六个叶片的未遮盖离心涡轮突齿上进行。在其频率内容中分析压力波动以理解不稳定性质(轴向,旋转)及其主要特征(例如,幅度,旋转方向)。力部件的光谱分程突出显示Z-部件(沿旋转轴)与轴向稳定性的强烈关系。另一方面,旋转空化可以涉及沿着所有三个部件的力振荡,导致垂直于旋转轴的不需要和危险的波动的不平衡。

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