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首页> 外文期刊>Computational Mechanics >A cell-by-cell thermally driven mushy cell tracking algorithm for phase-change problems
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A cell-by-cell thermally driven mushy cell tracking algorithm for phase-change problems

机译:用于相变问题的逐单元热驱动糊状细胞跟踪算法

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摘要

A thermally driven mushy cell tracking algorithm for phase-change problems with a moving boundary is presented. The equation used to track the moving boundary is based on energy balance over the mushy cell and is applied to advance a moving front in a cell-by-cell manner. The efficacy of the tracking algorithm is demonstrated on specific problems solved using the finite volume method. An implicit scheme is adopted to ensure that the numerical solution is unconditionally stable in time. A preconditioned conjugated gradient (P-CG) solver is implemented to ensure that solutions converge in a finite number of iterations. Four benchmark cases are used to validate the algorithm including solidification in one dimensional space (two-region problem), melting of pure aluminum in two-dimensional (2D) space, solidification with periodic boundary conditions, and solidification of one-region problem. The results obtained show that the current algorithm is capable of converging to accurate solutions for moving fronts and the numerical predications are in excellent agreement with corresponding analytical solutions.
机译:提出了一种热驱动的糊状细胞跟踪算法,解决了边界移动的相变问题。用于跟踪移动边界的等式基于糊状细胞上的能量平衡,并用于逐个细胞地推进移动前沿。在使用有限体积方法解决的特定问题上证明了跟踪算法的有效性。采用隐式方案以确保数值解在时间上是无条件稳定的。实施了预处理共轭梯度(P-CG)求解器,以确保解决方案收敛于有限数量的迭代。使用四个基准案例来验证该算法,包括在一维空间中的固化(两区域问题),二维(2D)空间中的纯铝熔化,具有周期性边界条件的凝固以及一区问题的固化。所得结果表明,当前算法能够收敛到运动前沿的精确解,其数值预测与相应的解析解非常吻合。

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