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Establishing heat-entropy analogies for interface tracking in phase change heat transfer with fluid flow

机译:建立热熵类比以进行流体流动相变传热中的界面跟踪

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摘要

In this paper, entropy is presented as an important variable in effectively describing and predicting various phase change processes. An interfacial entropy constraint, downward concavity condition and Second Law formulation are obtained. Modelling of interfacial momentum interactions and thermal recalescence are based on heat-entropy anal- ogies. It is shown that deeper insight into phase change processes with fluid flow can be realized through consideration of the analogy variable (entropy). Also, an entropy-based approach provides effective guidelines for interface tracking and numerical stability in phase change computations involving a control volume-based finite element method (CVFEM) formulation.
机译:在本文中,熵是有效描述和预测各种相变过程的重要变量。得到了界面熵约束,向下凹陷条件和第二定律公式。界面动量相互作用和热重结晶的模型基于热熵分析。结果表明,通过考虑类比变量(熵),可以更深入地了解流体流动的相变过程。同样,基于熵的方法为涉及基于控制体积的有限元方法(CVFEM)公式化的相变计算中的界面跟踪和数值稳定性提供了有效的指导。

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