Three-Dimensional Numerical Simulation of Convective Melting of Solid Particles in a Fluid

Y. Hao, Y. Tao
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Abstract

A physical model of two-phase flow and heat-mass transfer with the phase changes based on the theory of interacting continua is proposed. All terms in the conservation equations are analyzed and the constitutive equations are presented. A closed set of governing equations describing the convective melting of solid particles in a fluid is obtained. The numerical method is developed for the solution of velocity, temperature, and volume fraction of solid phase for the three-dimensional melting in a rectangular cross-section channel. Preliminary calculation, including gravity effects, shows that the result is reasonable. This study provides a basis for the theoretical and experimental investigation of convective melting of solid particles in a fluid.
流体中固体颗粒对流熔融的三维数值模拟
基于相互作用连续体理论,建立了相变条件下的两相流动和热质传递物理模型。对守恒方程中的各项进行了分析,建立了本构方程。得到了一组描述固体颗粒在流体中对流熔融的封闭控制方程。建立了求解矩形截面通道内三维熔融过程的速度、温度和固相体积分数的数值方法。考虑重力效应的初步计算表明,计算结果是合理的。该研究为固体颗粒在流体中对流熔融的理论和实验研究提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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