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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Three-dimensional transient free-surface flow of viscous fluids inside cavities of arbitrary shape
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Three-dimensional transient free-surface flow of viscous fluids inside cavities of arbitrary shape

机译:任意形状的腔体内粘性流体的三维瞬态自由表面流

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摘要

The three-dimensional transient free-surface flow inside cavities of arbitrary shape is examined in this study. An adaptive (Lagrangian) boundary-element approach is proposed for the general three-dimensional simulation of confined free-surface flow of viscous incompressible fluids. The method is stable as it includes remeshing capabilities of the deforming free-surface, and thus can handle large deformations. A simple algorithm is developed for mesh refinement of the deforming free-surface mesh. Smooth transition between large and small elements is achieved without significant degradation of the aspect ratio of the elements in the mesh. The method is used to determine the flow field and free-surface evolution inside cubic, rectangular and cylindrical containers. These problems illustrate the transient nature of the flow during the mixing process. Surface tension effects are also explored.
机译:在这项研究中,研究了空腔内任意形状的三维瞬态自由表面流动。提出了一种自适应(拉格朗日)边界元方法,用于粘性不可压缩流体的受限自由表面流的一般三维模拟。该方法是稳定的,因为它具有变形的自由表面的重切能力,因此可以处理较大的变形。针对变形的自由表面网格的网格细化,开发了一种简单的算法。实现了大型和小型元素之间的平滑过渡,而不会显着降低网格中元素的纵横比。该方法用于确定立方,矩形和圆柱形容器内的流场和自由表面演变。这些问题说明了混合过程中流体的瞬态特性。还探讨了表面张力效应。

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