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A Study of Flow-induced Noise in the Volute of Centrifugal Pump Based on Sysnoise

机译:基于Sysnoise的离心泵蜗壳流量噪声研究

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The internal flow-induced noise of the centrifugal pump is essentially caused by its complex internal flow, hence the research on the pump internal flow pattern is a crucial part of studying the flow-induced noise for centrifugal pumps. The DES unsteady simulation based on S-A model was applied to analyze the noise in the flow domains which are consist of the volute and the impeller passage in the paper. The frequency domains of pressure fluctuation at monitoring points under different operating conditions for different zones were analyzed by using SYSNOISE sound processing platform. The results show that the distribution of the acoustic source which was directly associated to the pressure fluctuation of the volute face generally aggregate at cutwater with the same frequency characteristic. Field sound pressure and dipole source do not have simple linear relationship and the strongest acoustic radiation intensity appears at blade passing frequency. Pipeline method applied in flow-induced noise measurement is effective and the flow rate is one of the major factors in acoustic radiation.
机译:离心泵的内部流量诱导的噪声基本上是由其复杂的内部流量引起的,因此对泵内部流动模式的研究是研究离心泵的流量诱导的噪声的关键部分。基于S-A模型的DES非定常模拟应用于分析流动域中的噪声,该域中由纸张中的蜗壳和叶轮通道组成。通过使用Sysnoise Sound Processing Platform来分析在不同区域的不同操作条件下监测点处的压力波动的频域。结果表明,与蜗壳面的压力波动直接相关的声学源的分布通常在具有相同频率特性的Cutw水中聚集。场声压和偶极源没有简单的线性关系,最强的声辐射强度出现在刀片通过频率。在流动引起的噪声测量中应用的管道方法是有效的,并且流量是声学辐射中的主要因素之一。

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