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Source-and-sink method of solution of two and three-dimensional Stefan problems.

机译:解决二维和三维Stefan问题的源和汇方法。

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摘要

A source-and-sink method has been developed for the solution of conduction heat transfer with phase change in multiple dimensions. In this method, the heat transfer in one direction is decoupled from the other directions by changing the second partial differential in these directions where the phase change is less dominant to a finite difference form and solving the problem in the other direction with an analytical solution that accounts for the motion of the interface in a phase change problem. The solution developed in this work is thus independent of the equations used to represent the interface as well as the conditions imposed on the boundaries.; The method has been applied to the tracking of single, double, and coalescing interface fronts formed by different phases assuming equal properties. The method has been demonstrated to be accurate, convergent, and stable by numerical computation as well as experimental measurements. The method has also been applied to the solution of conjugate heat transfer including convection in a fluid medium and conduction in the phase change material, a problem applicable to the analysis of latent heat thermal energy storage systems.
机译:已经开发出一种源和汇的方法来解决具有多维相变的传导传热。在这种方法中,通过改变这些方向上的第二个偏微分使一个方向上的传热与其他方向解耦,其中相变不大局限于有限差分形式,并通过解析解解决另一方向上的问题,从而解决了相变问题中界面的运动。因此,这项工作中提出的解决方案与用于表示界面的方程式以及施加在边界上的条件无关。该方法已应用于跟踪由假定特性相同的不同相位形成的单,双和合并界面前沿。通过数值计算和实验测量证明该方法是准确,收敛和稳定的。该方法还已经应用于共轭传热的解决方案,包括在流体介质中的对流和在相变材料中的传导,这是一个适用于潜热储热系统分析的问题。

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