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基于移动粒子半隐式法的表面张力模拟
引用本文:张帅,解利军,郑耀.基于移动粒子半隐式法的表面张力模拟[J].计算力学学报,2011,28(3):345-349.
作者姓名:张帅  解利军  郑耀
作者单位:浙江大学,工程与科学计算研究中心,浙江大学,航空航天学院,杭州,310027
基金项目:国家自然科学基金(10876036,10872182);浙江省科技厅(2009C31112);浙江大学"紫金计划"资助项目.
摘    要:采用移动粒子半隐式法(MPS)模拟了受表面张力影响的自由面流动。表面张力的计算采取了一种较适合于MPS方法的表面自由能模型。方形液滴振荡和射流断裂的模拟结果分别与理论分析和试验结果一致,同时进行了三维射流注水模拟,从而验证了MPS方法结合该表面张力模型可以有效、方便地进行自由面流动中表面张力现象的模拟。

关 键 词:移动粒子半隐式法(MPS)  自由面流动  表面张力  液滴振荡  射流断裂
收稿时间:2009/10/30 0:00:00
修稿时间:2010/1/20 0:00:00

Simulation of surface tension force using moving particle semi-implicit method
ZHANG Shuai,XIE Li-jun and ZHENG Yao.Simulation of surface tension force using moving particle semi-implicit method[J].Chinese Journal of Computational Mechanics,2011,28(3):345-349.
Authors:ZHANG Shuai  XIE Li-jun and ZHENG Yao
Affiliation:Center for Engineering and Scientific Computation, School of Aeronautics and Astronautics, Zhejiang University, Hangzhou 310027, China;Center for Engineering and Scientific Computation, School of Aeronautics and Astronautics, Zhejiang University, Hangzhou 310027, China;Center for Engineering and Scientific Computation, School of Aeronautics and Astronautics, Zhejiang University, Hangzhou 310027, China
Abstract:This study used the moving particle semi-implicit (MPS) method to simulate the surface tension force in the free surface flow. A surface tension force model for the MPS was implemented, which was proposed based on the potential energy. This numerical approach for the surface tension force in the free surface flow was verified by the numerical simulation of the two-dimensional liquid droplet oscillation and the liquid jet breakup. Simulation results agreed well with analytical or experimental ones. Moreover, a three-dimensional water jet into a cylinder was simulated using the MPS method together with the surface tension model. It was then validated that the MPS method together with the surface tension model can effectively and easily simulate the surface tension force in the free surface flows.
Keywords:Moving Particle Semi-implicit (MPS) Method  free surface flow  surface tension  droplet oscillation  jet breakup
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