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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Bubble collapse in compressible fluids using a spectral element marker particle method. Part 1. Newtonian fluids
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Bubble collapse in compressible fluids using a spectral element marker particle method. Part 1. Newtonian fluids

机译:使用光谱元素标记粒子方法在可压缩流体中气泡破裂。第1部分。牛顿流体

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This paper is concerned with the development of a high-order numerical scheme for the modelling of two-phase Newtonian flows. The companion paper, herein referred to as Part 2, extends the scheme to two-phase viscoelastic flows. The particular problem of the collapse of a two-dimensional bubble in the vicinity of a rigid boundary is considered. The governing equations are discredited using the spectral element method, and the two phases are modelled using a marker particle method. The marker particle scheme is validated using the Zalesak slotted disk rotation test problem. A comprehensive set of results is presented for the problem of bubble collapse near a rigid wall, and qualitative agreement is obtained with other numerical studies and experimental observations. Viscous effects are shown to inhibit bubble collapse and prevent jet formation and are therefore likely to have a mitigating effect on cavitation damage.
机译:本文关注于两相牛顿流建模的高阶数值格式的发展。随行文件(在本文中称为第2部分)将方案扩展到两相粘弹性流。考虑了在刚性边界附近的二维气泡破裂的特殊问题。控制方程使用谱元法进行辨识,而两个相位使用标记粒子法进行建模。使用Zalesak开槽磁盘旋转测试问题验证了标记粒子方案。对于刚性壁附近的气泡破裂问题,提出了一套综合的结果,并且与其他数值研究和实验观察也获得了定性的一致性。已显示出粘性作用可抑制气泡破裂并防止形成射流,因此很可能对空化损害具有缓解作用。

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