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Gas–Liquid Two-Phase Flow Investigation of Side Channel Pump: An Application of MUSIG Model

机译:侧通道泵的气液两相流调查:Musig模型的应用

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This paper introduces a novel application of a multiphase flow model called the Multi-Size-Group model (MUSIG) to solve 3D complex flow equations in a side channel pump, in order to analyze the flow dynamics of the gas phase distribution and migration under different inlet gas volume fractions (IGVFs). Under different IGVF, the suction side is more likely to concentrate bubbles, especially near the inner radius of the impeller, while there is very little or no gas at the outer radius of the impeller. The diameter of bubbles in the impeller are similar and small for most regions even at IGVF = 6% due to the strong shear turbulence flow which eliminates large bubbles. Additionally, this method also can capture the coalescence and breakage evolution of bubbles. Once a mixture of fluid goes into the impeller from the inlet pipe, the large bubbles immediately break, which accounts for the reason why nearly all side channel pumps have the capacity to deliver gas–liquid two-phase flow. The results in this study provide a foundation and theoretical value for the optimal design of side channel pumps under gas–liquid two-phase conditions to increase their application.
机译:本文介绍了一种新颖的应用,称为多尺寸组模型(Musig)的多相流动模型,以解决侧通道泵中的3D复杂流方程,以分析不同的气相分布和迁移的流动动态入口气体体积分数(IGVF)。在不同的IGVF下,吸入侧更可能集中气泡,特别是在叶轮的内半径附近,而叶轮的外半径几乎没有气体。叶轮中气泡的直径相似,对于大多数区域,即使在IGVF = 6%上,由于消除了大气泡的强剪切湍流流量,即使在IGVF = 6%。另外,该方法还可以捕获气泡的聚结和破损演化。一旦流体的混合物从入口管进入叶轮,大气泡就会立即破裂,这是近乎所有侧通道泵具有输送气液两相流的能力的原因。该研究的结果为煤气液两相条件下的侧通道泵最优设计提供了基础和理论值,以增加其应用。

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