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Numerical simulation of two-phase flows in complex geometries by using the volume-of-fluid/immersed-boundary method

机译:流体体积/浸入边界法对复杂几何形状中两相流的数值模拟

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摘要

The numerical modeling of two-phase flows in complex geometries is of special relevance in many scientific and industrial applications. In this paper, we describe a numerical method to perform three-dimensional simulations of such flow problems. This method adopts a volume-of-fluid (VOF) approach to capture and advance the fluid interface, and it integrates the fluid solver with the immersed boundary (IB) modeling of arbitrary-shape walls and moving bodies. The shape and movement of solid geometries are efficiently represented by an auxiliary signed distance function (SDF) with local coordinate transformation. Validation tests have been conducted using the present method, and the computational results are in good agreements with reference solutions and experimental data. We further present its application to the simulation of the air-water flow in a twin screw kneader. Hence, the adequacy and suitability of the present VOF-IB method are shown to successfully simulate complicated two-phase flows interacting with general geometries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在许多科学和工业应用中,复杂几何形状中的两相流数值模拟具有特殊的意义。在本文中,我们描述了一种用于对此类流动问题进行三维模拟的数值方法。该方法采用流体体积(VOF)方法捕获和推进流体界面,并将流体求解器与任意形状的壁和移动体的浸入边界(IB)模型集成在一起。实体几何的形状和运动可以通过带有局部坐标变换的辅助符号距离函数(SDF)有效地表示。使用本方法进行了验证测试,计算结果与参考溶液和实验数据吻合良好。我们进一步介绍了其在双螺杆捏合机中模拟空气-水流的应用。因此,显示了本VOF-IB方法的充分性和适用性成功地模拟了与一般几何形状相互作用的复杂的两相流。 (C)2015 Elsevier Ltd.保留所有权利。

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