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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Relationship between unsteady flow, pressure fluctuations, and noise in a centrifugal pump-part A: use of PDV data to compute the pressure field
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Relationship between unsteady flow, pressure fluctuations, and noise in a centrifugal pump-part A: use of PDV data to compute the pressure field

机译:离心泵中不稳定流动,压力波动和噪声之间的关系 - A部分:使用PDV数据来计算压力场

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摘要

Velocity distributions determined by using Particle Displacement Velocimetry are used for computing the pressure field within the volute of a centrifugal pump. It is shown that blade-tongue interactions and nonuniform outflux from the impeller are primary contributors to local pressure fluctuations and far field noise. Consequently, a slight increase in the space between the impeller and the tongue causes significant changes in flow structure and reductions in the resulting noise. The impact issignificant as long as the tongue-impeller gap is less than 20 percent of the impeller radius. It is also shown that the vorticity distributions, particularly the large vortex trains associated with the jet/wake phenomenon, dominate variations in thetotal pressure. Thus, it is unlikely that a potential flow model can provide any realistic description of the flow structure.
机译:通过使用粒子位移速度确定确定的速度分布用于计算离心泵的蜗壳内的压力场。 结果表明,来自叶轮的刀片舌相互作用和非均匀的渗出是局部压力波动和远场噪声的主要贡献者。 因此,叶轮和舌片之间的空间略微增加,导致流动结构的显着变化并降低所产生的噪声。 由于舌头 - 叶轮间隙小于叶轮半径的20%,因此影响是无可敏感的。 还示出了涡旋分布,特别是与喷射/尾行现象相关的大型涡流列,其压力的压力变化。 因此,潜在的流动模型不太可能提供流动结构的任何现实描述。

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