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PIV Measurements and CFD Computations of Secondary Flow in a Centrifugal Pump Impeller

机译:离心泵叶轮中二次流量的PIV测量和CFD计算

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Two-dimensional particle image velocimetry measurements and three-dimensional computational fluid dynamics (CFD) analyses have been performed on the steady velocity field inside the shrouded impeller of a low specific-speed centrifugal pump operating with a vaneless diffuser. Flow rates ranging from 80percent to 120percent of the design flow rate are considered in detail. It is observed from the velocity measurements that secondary flows occur. These flows result in the formation of regions of low velocity near the intersection of blade suction side and shroud. The extent of this jet-wake structure decreases with increasing flow rate. Velocity fields have also been computed from Reynolds-averaged Navier-Stokes equations with the Spalart-Allmaras turbulence model using a commercial CFD code. For the considered flow rates, the qualitative agreement between measured and computed velocity profiles is very good. Overall, the average relative difference between these velocity profiles is around 5percent. Additional CFD computations have been performed to assess the influence of Reynolds number and the shape of the inlet velocity profile on the computed velocity fields. It is found that the influence of Reynolds number is mild. The shape of the inlet profile has only a weak effect at the shroud.
机译:已经对使用无叶扩散器的低比转速离心泵的带罩叶轮内部的稳定速度场进行了二维粒子图像测速测量和三维计算流体动力学(CFD)分析。详细考虑了设计流量的80%至120%的流量。从速度测量中观察到发生二次流动。这些流动导致在叶片吸力侧与护罩的相交附近形成低速区域。这种喷射-尾流结构的程度随着流速的增加而减小。还使用商业CFD代码根据Spalart-Allmaras湍流模型根据雷诺平均Navier-Stokes方程计算了速度场。对于所考虑的流速,测量和计算的速度曲线之间的定性一致性非常好。总体而言,这些速度曲线之间的平均相对差异约为5%。已经执行了其他CFD计算,以评估雷诺数和入口速度曲线形状对计算出的速度场的影响。发现雷诺数的影响是轻微的。入口轮廓的形状在护罩上的作用很小。

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