基于欧拉单元的水下气泡高效数值仿真算法研究

苏怡然;唐文勇;郑绍文;李德聪

振动与冲击 ›› 2013, Vol. 32 ›› Issue (23) : 32-37.

PDF(1566 KB)
PDF(1566 KB)
振动与冲击 ›› 2013, Vol. 32 ›› Issue (23) : 32-37.
论文

基于欧拉单元的水下气泡高效数值仿真算法研究

  • 苏怡然1,唐文勇1,郑绍文2,李德聪2
作者信息 +

A High Efficiency Eulerian Numerical Method for the Simulation of Underwater Bubbles

  • SU Yi-ran1, TANG Wen-yong1, ZHENG Shao-wen2, LI De-cong2
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文章历史 +

摘要

基于Navier-Stokes方程的有限差分格式,对水下气泡脉动过程进行数值模拟,实现了一种能够精确处理复杂形状自由液面边界的数值算法。针对当前气泡脉动仿真算法计算效率低下的情况,提出能够提高计算效率的近场压力边界条件:将气泡远端流场近似为点源/汇流动,求出远端压力作为边界条件,从而实现小区域模型模拟无穷流域问题。通过近场边界压力合理性的判别机制,有效抑制了边界压力失真现象与数值震荡现象。将计算结果分别与理论公式和实验数据进行对比,证明了本文所述算法的可靠性与高效性。最后,对近壁气泡脉动和射流过程进行了数值模拟和定性分析。本方法可用于水下爆炸气泡脉动、螺旋桨空泡溃灭等过程的数值模拟和相应射流冲击载荷的预报。

Abstract

Based on the finite difference scheme of Navier-Stokes equations, the dynamic response of underwater bubbles is numerically simulated. A high accuracy numerical method is realized to define the free surface boundaries with severe deformation. An innovative outer boundary condition is proposed to improve the numerical efficiency, which was low in the past applications. First, the flow pattern far from the bubble is assumed to be generated by point-source/point-sink and therefore the pressure can be calculated. If this pressure is used as the boundary condition, the infinite domain problem can be converted to small region simulation. Invalid outer boundary pressure phenomena and numerical oscillation phenomena are inhibited by distinguishing the pressure’s rationality. The method is proved to be of high efficiency and accuracy. Good agreement is obtained between numerical results, Rayleigh-Plesset equation and experiments. Finally, the dynamic response of a bubble in the vicinity of a rigid wall is simulated and the process of jet formation is analyzed. The method can be used for the simulation of the underwater bubble pulsation as well as the prediction of jet loads.



关键词

气泡脉动 / 射流 / 计算流体力学 / 有限差分 / MAC法

Key words

Bubble pulsation / Jet / Computational fluid dynamics / Finite difference scheme / MAC method

引用本文

导出引用
苏怡然;唐文勇;郑绍文;李德聪. 基于欧拉单元的水下气泡高效数值仿真算法研究[J]. 振动与冲击, 2013, 32(23): 32-37
SU Yi-ran;TANG Wen-yong;ZHENG Shao-wen;LI De-cong. A High Efficiency Eulerian Numerical Method for the Simulation of Underwater Bubbles[J]. Journal of Vibration and Shock, 2013, 32(23): 32-37

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