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APPLICATION OF PRECONDITIONING METHOD TO GAS-LIQUID TWO-PHASE FLOW COMPUTATIONS

机译:预处理方法在气液两相流计算中的应用

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A preconditioned numerical method for gas-liquid two-phase flows is applied to solve cavitating flow. The present method employs a finite-difference method of dual time-stepping integration procedure and Roe's flux difference splitting approximation with MUSCL-TVD scheme. A homogeneous equilibrium cavitation model is used. The present density based numerical method permits simple treatment of the whole gas-liquid two-phase flow field including wave propagation, large density changes and incompressible flow characteristics at low Mach number. By this method, two-dimensional internal flows through a backward-facing step duct, a venturi tube and decelerating cascades are computed. Comparisons of predicted results with experiments are provided and discussed.
机译:施加一种用于气液两相流的预处理数值方法来解决空化流动。本方法采用了与Muscl-TVD方案的双时级步进集成程序和RoE的磁通差分裂近似的有限差分方法。使用均匀的平衡空化模型。本密度的数值方法允许简单地处理全部气液两相流场,包括波传播,大密度变化和低马赫数的不可压缩流动特性。通过该方法,计算穿过背面的步进管道的二维内部流动,将文丘里管和减速级联流动。提供并讨论了对实验的预测结果的比较。

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