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Numerical Simulation of Flow Field Formed in Water Pump-Sump

机译:水泵-水箱内流场的数值模拟

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摘要

Two fundamental types of flow problems besetting water intakes are swirling flow problems in the pump sump and sediment problems at entrance or within intakes. Both problems reduce intake performance and lead to increased plant operating costs.Experiments were conducted in a laboratory** in order to select best positions of the suction pipe of a water-intake sump. These experiments show qualitative results concerning flow disturbances in the pump-intake related to sump geometries and position of the pump intake. The purpose of the paper is to reproduce the flow pattern and confirm the geometrical parameter influences of the flow behavior in such a pump.The numerical model solves the Reynolds averaged Navier-Stokes (RANS) equations with a near- wall turbulence model. In the validation of this numerical model, emphasis was placed on the prediction of the number, location, size and strength of the various types of vortices. The paper mainly focuses first, on mesh geometry turbulence model, closures and boundary conditions. Secondly, a comparison of different flow patterns for several intake locations in the sump will be presented.
机译:困扰进水口的两种基本流动问题是泵池中的旋流问题和入口或进水口内的沉积物问题。这两个问题都会降低进水性能,并导致工厂运营成本增加。为了选择最佳的进水集水箱吸水管位置,在实验室中进行了实验**。这些实验显示了与进水口的几何形状和进水口位置有关的进水口流量扰动的定性结果。本文的目的是再现这种泵的流型并确定几何参数对这种流行为的影响。数值模型用近壁湍流模型求解了雷诺平均Navier-Stokes(RANS)方程。在验证该数值模型时,重点放在了各种类型旋涡的数量,位置,大小和强度的预测上。本文主要关注网格几何湍流模型,闭合和边界条件。其次,将对油箱中几个进气位置的不同流型进行比较。

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