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首页> 外文期刊>Journal of Computational Physics >A ghost fluid, level set methodology for simulating multiphase electrohydrodynamic flows with application to liquid fuel injection
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A ghost fluid, level set methodology for simulating multiphase electrohydrodynamic flows with application to liquid fuel injection

机译:用于模拟多相电动流体流动的幻影流体水平集方法,应用于液体燃料喷射

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In this paper, we present the development of a sharp numerical scheme for multiphase electrohydrodynamic (EHD) flows for a high electric Reynolds number regime. The electric potential Poisson equation contains EHD interface boundary conditions, which are implemented using the ghost fluid method (GFM). The GFM is also used to solve the pressure Poisson equation. The methods detailed here are integrated with state-of-the-art interface transport techniques and coupled to a robust, high order fully conservative finite difference Navier-Stokes solver. Test cases with exact or approximate analytic solutions are used to assess the robustness and accuracy of the EHD numerical scheme. The method is then applied to simulate a charged liquid kerosene jet.
机译:在本文中,我们提出了针对高雷诺数态的多相电液动力学(EHD)流动的清晰数值方案的开发。电位泊松方程包含EHD界面边界条件,该条件使用幻影流体方法(GFM)实施。 GFM还用于求解压力泊松方程。此处详细介绍的方法与最新的接口传输技术集成在一起,并与功能强大的高阶完全保守的有限差分Navier-Stokes求解器结合。具有精确或近似解析解的测试用例用于评估EHD数值方案的鲁棒性和准确性。然后将该方法应用于模拟带电的液体煤油射流。

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