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首页> 外文期刊>Advances in Mechanical Engineering >Investigation on Flow-Induced Noise due to Backflow in Low Specific Speed Centrifugal Pumps
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Investigation on Flow-Induced Noise due to Backflow in Low Specific Speed Centrifugal Pumps

机译:低比速离心泵回流引起的流动噪声研究。

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Flow-induced noise causes disturbances during the operation of centrifugal pumps and also affects their performance. The pumps often work at off-design conditions, mainly at part-load conditions, because of frequent changes in the pump device system. Consequently numerous unstable phenomena occur. In low specific speed centrifugal pumps the main disturbance is the inlet backflow, which is considered as one of the most important factors of flow-induced noise and vibration. In this study, a test rig of the flow-induced noise and vibration of the centrifugal pump was built to collect signals under various operating conditions. The three-dimensional unsteady flow of centrifugal pumps was calculated based on the Reynolds-averaged equations that resemble the shear stress transport (SST) κ-ω turbulence model. The results show that the blade passing frequency and shaft frequency are dominant in the spectrum of flow-induced noise, whereas the shaft component, amplitude value at shaft frequency, and peak frequencies around the shaft increase with decreasing flow. Through flow field analysis, the inlet backflow of the impeller occurs under 0.7 times the design flow. The pressure pulsation spectrum with backflow conditions validates the flow-induced noise findings. The velocity characteristics of the backflow zone at the inlet pipe were analyzed, and the dynamic characteristics of the backflow eddy during one impeller rotating period were simultaneously obtained by employing the backflow conditions. A flow visualization experiment was performed to confirm the numerical calculations.
机译:流量引起的噪声会在离心泵运行期间造成干扰,并影响其性能。由于泵设备系统的频繁更换,这些泵通常在非设计条件下工作,主要在部分负载条件下工作。因此,发生许多不稳定的现象。在低比转速离心泵中,主要的干扰是入口回流,这被认为是流动引起的噪声和振动的最重要因素之一。在这项研究中,建立了离心泵的流动引起的噪声和振动的测试台,以收集各种运行条件下的信号。基于类似于剪切应力传输(SST)κ-ω湍流模型的雷诺平均方程计算离心泵的三维非定常流动。结果表明,叶片通过频率和轴频率在流动引起的噪声频谱中占主导地位,而轴分量,轴频率处的振幅值和轴周围的峰值频率随着流量的减小而增加。通过流场分析,叶轮的入口回流发生在设计流量的0.7倍以下。具有回流条件的压力脉动谱可验证流动引起的噪声发现。分析了进气管回流区的速度特性,并通过采用回流条件,同时获得了一个叶轮旋转期间回流涡流的动态特性。进行流动可视化实验以确认数值计算。

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