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Numerical simulation of a single rising bubble by VOF with surface compression

机译:带有表面压缩的VOF对单个上升气泡的数值模拟

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The capability of the direct volume of fluid method for describing the surface dynamics of a free two-dimensional rising bubble is evaluated using quantities of a recently published benchmark. The model equations are implemented in the open source computational fluid dynamics library OpenFOAM. Here, a main ingredient of the numerical method is the so-called surface compression that corrects the fluxes near the interface between two phases. The application of this method with respect to two test cases of a benchmark is considered in the main part. The test cases differ in physical properties, thus in different surface tension effects. The quantities centre of mass position, circularity and rise velocity are tracked over time and compared with the ones given in the benchmark. For test case one, where surface tension effects are more pre-eminent, deviations from the benchmark results become more obvious. However, the flow features are still within reasonable range. Nevertheless, for test case two, which has higher density and viscosity ratios and above all a lower influence of the surface tension force, good agreement compared with the benchmark reference results is achieved. This paper demonstrates the good capabilities of the direct volume of fluid method with surface compression with regard to the preservation of sharp interfaces, boundedness, mass conservation and low computational time. Some limitation regarding the occurrence of parasitic currents, bad pressure jump prediction and bad grid convergence have been observed. With these restrictions in mind, the method is suitable for the simulation of similar two-phase flow configurations.
机译:直接体积流体方法描述自由二维上升气泡表面动力学的能力是使用最近发布的基准测试量进行评估的。模型方程式在开源计算流体动力学库OpenFOAM中实现。在此,数值方法的主要成分是所谓的表面压缩,它可以校正两相界面附近的通量。在主体部分中考虑了该方法对基准测试两个案例的应用。测试例的物理特性不同,因此表面张力效应也不同。随时间跟踪质量位置,圆度和上升速度的质量中心,并与基准中给出的质量中心进行比较。对于测试用例一,表面张力影响更为突出,与基准结果的偏差变得更加明显。但是,流量特征仍在合理范围内。然而,对于具有较高密度和粘度比并且最重要的是表面张力的影响较小的测试用例2,与基准参考结果相比,取得了良好的一致性。本文展示了带有表面压缩的直接体积流体方法在保留尖锐界面,有界,质量守恒和低计算时间方面的良好能力。已经观察到关于寄生电流的出现,不良的压力跳跃预测和不良的电网收敛性的一些限制。考虑到这些限制,该方法适用于模拟相似的两相流配置。

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