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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

The finite volume based numerical approach is used to simulate phase-change processes including natural convection. This approach is based on a cell-by-cell, thermally driven mushy cell tracking equation, developed in Part I [20], to trace the front at which phase-change occurs. A mushy cell is a specialized cell where the interface between liquid and solid phases is located. In this paper, the mushy cell tracking equation and the associated boundary condition around the mushy cells are derived in a general manner and shown to have the same form as that used in Part I. The SIMPLE algorithm is adopted to solve the flow, including pressure field, as well, in the liquid phase and a conjugate gradient method is used when solving the system of discretized equations. To reduce computational time, an acceleration technique, based on a justified quasi-steady state assumption, is adopted. The proposed numerical method is applied to simulate the solidification and melting of Tin with natural convection. The numerical predictions are compared well with the available experimental data and previously published numerical results. Specifically, these comparisons demonstrate that the proposed methodology is capable of predicating the location of moving fronts and the temperature distributions for phase-change processes with natural convection.
机译:基于有限体积的数值方法用于模拟包括自然对流在内的相变过程。该方法基于在第I部分[20]中开发的逐个单元的热驱动糊状细胞跟踪方程,以跟踪发生相变的前沿。糊状细胞是液相和固相之间的界面所在的专用细胞。本文以一般的方式推导了糊状细胞的跟踪方程和相关的糊状细胞周围的边界条件,并显示出与第一部分中使用的形式相同的形式。采用SIMPLE算法求解包括压力在内的流动。在液相中也是如此,当求解离散方程组时,使用共轭梯度法。为了减少计算时间,采用了基于合理的准稳态假设的加速技术。将所提出的数值方法应用于模拟自然对流锡的凝固和熔化。将数值预测与可用的实验数据和先前发布的数值结果进行了很好的比较。具体而言,这些比较表明,所提出的方法能够为自然对流的相变过程预测运动前沿的位置和温度分布。

著录项

  • 来源
    《Computational Mechanics》 |2007年第2期|217-231|共15页
  • 作者

    Yih-Jena Jan;

  • 作者单位

    Department of Marine Engineering National Kaohsiung Marine University No. 482 Jhong Jhou 3rd Road Cijin District (805) Kaohsiung Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
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