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Numerical simulation of the stalled flow within a vaned centrifugal pump

机译:叶片式离心泵内失速流动的数值模拟

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The main goal of the present work is to analyse the numerical simulation of a centrifugal pump by solving Navier-Stokes equations, coupled with the 'standard k-ε' turbulence model. The pump consists of an impeller having five curved blades with nine diffuser vanes. The shaft rotates at 890 r/min. Flow characteristics are assumed to be stalled in the appropriate region of flowrate levels of 1.31-2.861/s. Numerical analysis techniques are performed on a commercial FLUENT package program assuming steady, incompressible flow conditions with decreasing flowrate. Under stall conditions the flow in the diffuser passage alternates between outward jetting when the low-pass-filtered pressure is high to a reverse flow when the filtered pressure is low. Being below design conditions, there is a consistent high-speed leakage flow in the gap between the impeller and the diffuser from the exit side of the diffuser to the beginning of the volute. Separation of this leakage flow from the diffuser vane causes the onset of stall. As the flowrate decreases both the magnitude of the leakage within the vaneless part of the pump and reverse flow within a stalled diffuser passage increase. As this occurs, the stall-cell size extends from one to two diffuser passages. Comparisons are made with experimental data and show good agreement.
机译:本工作的主要目标是通过求解Navier-Stokes方程并结合“标准k-ε”湍流模型来分析离心泵的数值模拟。该泵由一个叶轮组成,该叶轮具有五个带有九个扩散叶片的弯曲叶片。轴以890 r / min的速度旋转。假定流量特性在流量范围1.31-2.861 / s的适当区域内停滞。数值分析技术是在商业FLUENT软件包程序上执行的,假定流量恒定且不可压缩,流量不断降低。在失速条件下,扩散器通道中的流量在低通过滤压力较高时向外喷射与过滤压力较低时反向流动之间交替。在低于设计条件的情况下,从扩散器的出口侧到蜗壳的起点,在叶轮和扩散器之间的间隙中会出现一致的高速泄漏流。该泄漏流与扩散器叶片的分离导致失速的开始。随着流量的降低,泵的无叶部分内的泄漏量和停滞的扩散器通道内的反向流量都增加。发生这种情况时,停滞室的尺寸从一个扩散器通道延伸到两个扩散器通道。与实验数据进行了比较,并显示出良好的一致性。

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