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Numerical Study on an Interface Compression Method for the Volume of Fluid Approach

机译:流体方法体积界面压缩方法的数值研究

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摘要

Many thermohydraulic issues about the safety of light water reactors are related to complicated two-phase flow phenomena. In these phenomena, computational fluid dynamics (CFD) analysis using the volume of fluid (VOF) method causes numerical diffusion generated by the first-order upwind scheme used in the convection term of the volume fraction equation. Thus, in this study, we focused on an interface compression (IC) method for such a VOF approach; this technique prevents numerical diffusion issues and maintains boundedness and conservation with negative diffusion. First, on a sufficiently high mesh resolution and without the IC method, the validation process was considered by comparing the amplitude growth of the interfacial wave between a two-dimensional gas sheet and a quiescent liquid using the linear theory. The disturbance growth rates were consistent with the linear theory, and the validation process was considered appropriate. Then, this validation process confirmed the effects of the IC method on numerical diffusion, and we derived the optimum value of the IC coefficient, which is the parameter that controls the numerical diffusion.
机译:关于光水反应器安全性的许多热液柱问题与复杂的两相流现象有关。在这些现象中,使用流体体积(VOF)方法的计算流体动力学(CFD)分析导致由音量分数方程的对流术语中使用的一阶Upwind方案产生的数值扩散。因此,在本研究中,我们专注于这种VOF方法的界面压缩(IC)方法;该技术可防止数值扩散问题,并使界限和保护具有负扩散。首先,在足够高的网格分辨率和没有IC方法的情况下,通过使用线性理论比较二维气体板和静止液之间的界面波的幅度生长来考虑验证过程。干扰增长率与线性理论一致,验证过程被认为是合适的。然后,该验证过程证实了IC方法对数值扩散的影响,我们导出了IC系数的最佳值,这是控制数值扩散的参数。

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