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SIMULATION OF DENDRITIC GROWTH USING A VOF METHOD

机译:用VOF法模拟树突生长

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The volume of fluid (VOF) method is one of the most widely used methods to simulate interfacial flows using fixed grids. However, its application to phase change processes in solidification problems is relatively infrequent. In this work, preliminary results of the application of a new methodology to the simulation of dendritic growth of pure metals is presented. The proposed approach is based on a recent VOF method with PLIC (piece-wise linear interface calculation) reconstruction of the interface. A diffused-interface method is used to solve the energy equation, which avoids the need of applying the thermal boundary conditions directly at the solid front. The thermal gradients at both sides of the interface, which are needed to accurately obtain the front velocity, are calculated with the aid of a distance function. The advection equation of a discretized solid fraction function is solved using the unsplit VOF advection method proposed by Lopez et al. [J. Comput. Phys. 195 (2004) 718-742] (extended to three dimensions by Hernandez et al. [Int. J. Numer. Methods Fluids 58 (2008) 897-921]). The interface curvature is computed using an improved height function (HF) technique, which provides second-order accuracy. The assessment of the proposedmethodology is carried out by comparing the numerical results with analytical solutions and with results obtained by different authors for the formation of complex dendritic structures in two and three dimensions.
机译:流体体积(VOF)方法是使用固定网格模拟界面流动的最广泛使用的方法之一。但是,它很少用于固化问题中的相变过程。在这项工作中,提出了一种新方法在纯金属枝晶生长模拟中的应用的初步结果。所提出的方法基于具有接口的PLIC(逐段线性接口计算)重构的最新VOF方法。扩散界面方法用于求解能量方程,从而避免了直接在固体前沿应用热边界条件的需要。借助距离函数可以计算出在接口两侧的温度梯度,这些温度梯度是准确获得前端速度所需要的。离散固体分数函数的对流方程是使用Lopez等人提出的未分裂VOF对流方法求解的。 [J.计算物理195(2004)718-742](Hernandez等人[Int。J. Numer。Methods Fluids 58(2008)897-921)扩展到三个维度)。使用改进的高度函数(HF)技术计算界面曲率,该技术可提供二阶精度。拟议的评估 通过将数值结果与解析解以及由不同作者获得的关于在二维和三维中形成复杂的树枝状结构的结果进行比较,来进行方法学研究。

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