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A UNIFIED TWO-PHASE NUMERICAL METHOD FOR GENERAL GAS-LIQUID FLOW APPLICATIONS

机译:一种统一的一般气液流动应用的两相数值方法

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This paper summarizes the technical development and validation of a multiphase computational fluid dynamics (CFD) numerical method using the volume-of-fluid (VOF) model and a Lagrangian tracking model which can be employed to analyze general multiphase flow problems with free surface mechanism. The gas-liquid interface mass, momentum and energy conservations are modeled by continuum surface mechanisms. A new solution method is developed such that the present VOF model can be applied for all-speed flow regimes. The objectives of the present study are to develop and verify the fractional volume-of-fluid cell partitioning approach into a predictor-corrector algorithm and to demonstrate the effectiveness of the present innovative approach by simulating benchmark problems including the coaxial jet atomization.
机译:本文总结了使用流体体积(VOF)模型和拉格朗日跟踪模型的多相计算流体动力学(CFD)数值方法的技术开发和验证,可以采用与自由表面机制分析一般多相流动问题的拉格朗日跟踪模型。气液界面质量,动量和节能由连续的表面机制建模。开发了一种新的解决方案方法,使得目前的VOF模型可以应用于全速流动制度。本研究的目的是开发和验证分数流体电池划分方法,进入预测校正器算法,并通过模拟包括同轴喷射雾化的基准问题来展示当前创新方法的有效性。

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