收缩流体细丝凝固过程的数值研究

Binh D. Pham, Truong V. Vu, Lien V. T. Nguyen, Cuong T. Nguyen, Hoe D. Nguyen, Vinh Phu Nguyen, Hung V. Vu
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引用次数: 1

摘要

本文采用前沿跟踪法/有限差分格式研究了流体细丝的收缩和凝固过程。两个相位之间的界面由连接点(拉格朗日网格)处理,这些点在固定的网格域(欧拉网格)上移动。通过求解Navier-Stokes方程和能量方程来模拟该问题。最初,流体细丝的形状是与冷平面接触的圆柱形胶囊的一半。我们考虑了长径比(Ar)对流体长丝凝固的影响。结果表明,在2 ~ 14范围内,增大宽高比(Ar),会导致缩回长度增大。随着氩比的增加,流体细丝的凝固速率降低。考虑了长径比对凝固时间、凝固高度和凝固尖端角的影响。在完全凝固后,在凝固流体细丝的顶部发现一个小的突起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A numerical study of the solidification process of a retracting fluid filament
In this study, the retraction and solidification of a fluid filament are studied by a front-tracking method/finite difference scheme. The interface between two phases is handled by connected points (Lagrangian grid), which move on a fixed grid domain (Eulerian grid). The Navier-Stokes and energy equations are solved to simulate the problem. Initially, the fluid filament has a shape as half of a cylindrical capsule contact with a cold flat surface. We consider the effect of the aspect ratio (Ar) on the solidification of the fluid filament. It is found that an increase in the aspect ratio (Ar) in the range of 2 – 14 causes the retraction length to increase. The rate of the solidification of a fluid filament decreases when the Ar ratio increases. The solidification time, the solidification height and the tip angle of the fluid filament under the influence of the aspect ratio are also considered. After complete solidification, a small protrusion on the top of the solidified fluid filament is found.
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