首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >PHASES MODEL FOR BINARY-CONSTITUENT SOLID-LIQUID PHASE TRANSITION, .2. APPLICATIONS
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PHASES MODEL FOR BINARY-CONSTITUENT SOLID-LIQUID PHASE TRANSITION, .2. APPLICATIONS

机译:二元固液相变的相模型,.2。应用领域

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摘要

A new solution procedure for binary-constituent solid-liquid phase-transition problems has been applied to several one- and two-dimensional problems. Three one-dimensional applications (a pure material melting problem, a unidirectional Ag-Sn solidification problem, and a Bridgman furnace simulation) illustrate different interface solute redistribution and Ste number sensitivity results. In addition, two-dimensional applications examine Pb-Sn and NH4Cl-H2O solidification problems within moderate- and low-aspect-ratio enclosures. In these problems, buoyancy-driven and shear-driven recirculation cells in the liquid regions of the cavity, penetration of bulk fluid across the liquidus interface, and energy and species advection are observed. The model's results agree closely with previous analytical and experimental results, and its performance indicates a cost-effective and physically based approach to solid-liquid phase-transition discrete analysis. [References: 18]
机译:针对二元组成固液相变问题的一种新的求解程序已应用于多个一维和二维问题。三个一维应用程序(纯材料熔化问题,单向Ag-Sn凝固问题和Bridgman炉模拟)说明了不同的界面溶质再分布和Ste数敏感性结果。此外,二维应用程序还检查了中等和低纵横比外壳中的Pb-Sn和NH4Cl-H2O固化问题。在这些问题中,观察到了在腔体的液体区域中由浮力驱动和剪切驱动的再循环池,大量流体穿过液相线界面的渗透以及能量和物种对流。该模型的结果与以前的分析和实验结果非常吻合,其性能表明该方法是一种经济高效的基于物理的固-液相转变离散分析方法。 [参考:18]

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