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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >A Numerical Method for Two-Phase Flow Based on a Phase-Field Model
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A Numerical Method for Two-Phase Flow Based on a Phase-Field Model

机译:基于相场模型的两相流数值方法

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摘要

For interface-tracking simulation of incompressible two-phase fluids with high density ratios, a new numerical method was proposed by combining Navier-Stokes equations with a phase-field model based on a van der Waals-Cahn-Hilliard free-energy theory. The method was applied to several benchmark problems. Major findings are as follows: (1) The volume flux derived from a local chemical potential gradient in the Cahn-Hilliard equation leads to accurate volume conservation, autonomic reconstruction of gas-liquid interface, and reduction of numerical diffusion and oscillation. (2) The proposed method gave good predictions of pressure increase inside a bubble caused by the surface tension force. (3) A single liquid drop falling in stagnant gas and merging into a stagnant liquid film was successfully simulated.
机译:为了对高密度比的不可压缩两相流体进行界面跟踪模拟,提出了一种新的数值方法,该方法将Navier-Stokes方程与基于van der Waals-Cahn-Hilliard自由能理论的相场模型相结合。该方法已应用于几个基准问题。主要研究结果如下:(1)从Cahn-Hilliard方程中的局部化学势梯度得出的体积通量可实现精确的体积守恒,气液界面的自主重建以及数值扩散和振荡的减少。 (2)所提出的方法很好地预测了由表面张力引起的气泡内部压力增加。 (3)成功模拟了一个液滴,该液滴落入了停滞的气体并合并成停滞的液膜。

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