首页> 外文会议>5th Joint ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Fluids Engineering Division Summer Conference 2007(FEDSM2007) >ROTOR-STATOR INTERACTION INDUCED PRESSURE FLUCTUATIONS: CFD AND HYDROACOUSTIC SIMULATIONS IN THE STATIONARY COMPONENTS OF A MULTISTAGE CENTRIFUGAL PUMP
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ROTOR-STATOR INTERACTION INDUCED PRESSURE FLUCTUATIONS: CFD AND HYDROACOUSTIC SIMULATIONS IN THE STATIONARY COMPONENTS OF A MULTISTAGE CENTRIFUGAL PUMP

机译:转子-定子相互作用引起的压力波动:多级离心泵固定部件中的CFD和水声模拟

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In a centrifugal pump the interaction between the rotating impeller pressure field and the stationary diffuser pressure field yields pressure fluctuations as the result of a modulation process. These fluctuations may induce hydroacoustic pressure fluctuations in the exit chamber of the pump and could cause unacceptable vibrations. This paper presents a methodology for the prediction of hydroacoustic pressure fluctuations resulting from rotor-stator interaction in a multistage centrifugal pump. The method consists in the one-way coupling of incompressible CFD and hydroacoustic simulations. In a first step the rotor-stator pressure fluctuations are calculated using a commercial 3D-RANS CFD-code (CFX 10) for different flow rates. The acoustic simulations are performed in two consecutive steps. Initially a free oscillation analysis using white noise pressure fluctuations is performed, which provides hydroacoustic eigen frequencies and mode shapes of the outlet casing. In a second step the spatially distributed pressure fluctuations from the CFD simulation are used to perform a forced oscillation analysis. This approach allows the prediction of possible standing waves in the hydraulic collection elements in the last stage of multistage pumps.
机译:在离心泵中,旋转的叶轮压力场与固定的扩散器压力场之间的相互作用会由于调制过程而产生压力波动。这些波动可能会在泵的出口腔中引起水声压力波动,并可能导致不可接受的振动。本文提出了一种用于预测多级离心泵中的转子与定子相互作用而引起的水声压力波动的方法。该方法包括不可压缩CFD与水声模拟的单向耦合。第一步,使用商用3D-RANS CFD代码(CFX 10)计算不同流量下的转子-定子压力波动。声学模拟在两个连续的步骤中执行。最初,执行使用白噪声压力波动的自由振荡分析,该分析提供了水声特征频率和出口壳体的振型。在第二步中,使用CFD模拟得出的空间分布压力波动来执行强制振荡分析。这种方法可以预测多级泵最后阶段的液压收集元件中可能存在的驻波。

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