温度驱动自由表面流动的数值模拟及其在激光熔化和抛光中的应用

Alexandre Caboussat , Julien Hess , Alexandre Masserey , Marco Picasso
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引用次数: 2

摘要

我们提出了一个多物理模型来近似由热方程和Navier-Stokes方程形成的具有凝固和自由表面的耦合系统。计算域是两个重叠区域的并集:一个较大的域用于说明热效应,另一个较小的区域用于说明流体流动。温度相关的表面效应通过表面张力和Marangoni力来解释。流体体积法用于跟踪金属(液体或凝固的)和环境空气之间的自由表面。数值方法将所有物理现象都包含在算子分裂策略中。离散化依赖于双网格方法,该方法对扩散现象使用非结构化有限元网格,对平流现象使用结构化笛卡尔网格。该模型通过数值实验进行了验证,主要应用于激光熔化和抛光。
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Numerical simulation of temperature-driven free surface flows, with application to laser melting and polishing

We present a multi-physics model for the approximation of the coupled system formed by the heat equation and the Navier-Stokes equations with solidification and free surfaces. The computational domain is the union of two overlapping regions: a larger domain to account for thermal effects, and a smaller region to account for the fluid flow. Temperature-dependent surface effects are accounted for via surface tension and Marangoni forces. The volume-of-fluid approach is used to track the free surfaces between the metal (liquid or solidified) and the ambient air. The numerical method incorporates all the physical phenomena within an operator splitting strategy. The discretization relies on a two-grid approach that uses an unstructured finite element mesh for diffusion phenomena and a structured Cartesian grid for advection phenomena. The model is validated through numerical experiments, the main application being laser melting and polishing.

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来源期刊
Journal of Computational Physics: X
Journal of Computational Physics: X Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
6.10
自引率
0.00%
发文量
7
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