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Analysis of Unsteady Flow in a Radial Diffuser Pump

机译:径向扩散泵中不稳定流动分析

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Three-dimensional, unsteady Reynolds-averaged NavierStokes equations are solved by the CFD code CFX-10 in a radial diffuser pump. The turbulence is simulated by the k-ε based shear stress transport turbulence model. To validate the CFD results, two-dimensional Laser Doppler Velocimetry (LDV) measurements have also been conducted. Both the phase-averaged velocity field and the turbulence field have been analyzed in detail. A comparison of the phase averaged velocity fields at the radial gap for both methods shows a very good agreement for the global periodic flow field. The analysis shows that a jet-wake structure is observed near the impeller outlet, and the diffuser flow strongly depends on the relative impeller positions which provide different inflow conditions for the downstream diffuser. The effects from the impeller rotation to the diffuser flow become very small at the diffuser outlet.
机译:在径向扩散器泵中,CFD码CFX-10解决了三维的不稳定雷诺平均导航方程。基于K-ε的剪切应力输送湍流模型模拟了湍流。为了验证CFD结果,还进行了二维激光多普勒速度(LDV)测量。已经详细分析了相平方速度场和湍流场。两种方法的径向间隙处的相平方速度场的比较显示了全球周期性流场的非常良好的一致性。该分析表明,叶轮出口附近观察到喷射唤醒结构,并且漫射器速率强烈取决于为下游扩散器提供不同流入条件的相对叶轮位置。从叶轮旋转到扩散器流的效果在扩散器出口处变得非常小。

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