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首页> 外文期刊>Advances and Applications in Fluid Mechanics >A NUMERICAL INVESTIGATION OF SURFACE VORTICES IN PUMP INTAKE SUMP (PART 2: EFFECT OF WATER LEVEL)
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A NUMERICAL INVESTIGATION OF SURFACE VORTICES IN PUMP INTAKE SUMP (PART 2: EFFECT OF WATER LEVEL)

机译:泵进气贮槽表面涡流的数值研究(第2部分:水位效果)

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摘要

A numerical study on the behavior of surface vortices in a pump suction sump was performed. A f'inite volume method with a RANS turbulence model and a VOF multiphase model was applied to solve the sump flow with a single intake channel. Multi-blocked structured grids and the open channel model were used to capture the tlow behavior and their mutual interactions between air and water phases with higher accuracy. Air-water interface level, air-entrained vortex length, and air volume fraction contours and iso-surfaces were used to visually identify the location and shape of the free surface as well as surface vortices. Hy monitoring the vortex length with varying water level, it was found that lower water levels induced stronger free surface vortices. The behavior of surface vortices and air bubbles caused by breaking off air-entrained vortices was explained well by using the volume rendering method and air volume fraction contours. The predicted velocity distributions at the entrance of bell mouth were in a good agreement with those of experiments.
机译:进行了对泵吸入贮槽中表面涡流的行为的数值研究。应用具有RAN湍流模型的F'INITE体积方法和VOF多相模型,用单个进气通道求解贮槽流量。多块结构栅格和开放通道模型用于捕获TLOW行为及其具有更高精度的空气和水阶段之间的相互作用。空气 - 水界面水平,空气夹带的涡流长度和空气体积分数轮廓和ISO-表面用于视觉上识别自由表面的位置和形状以及表面涡流。通过不同水位监测涡旋长度,发现较低的水位诱导更强的自由表面涡流。通过使用体积渲染方法和空气体积分数轮廓,很好地解释了通过断开空气夹带涡流引起的表面涡旋和气泡的行为。钟嘴入口处的预测速度分布与实验的吻合吻合良好。

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