Immersed Boundary Method for Liquid-Solid Two-Phase Flow with Heat Transfer

A. Ueyama, S. Moriya, M. Nakamura, T. Kajishima
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引用次数: 9

Abstract

In this paper, extended immersed boundary method (IBM) for liquid-solid two-phase flow with heat transfer is proposed. The velocity and pressure field are solved based on IBM of body force type. To treat heat transfer at the interphase, the temperature field is computed with the thermal conductivity modelled by considering the direction of interface and heat flux. Present heat conduction model is validated by heat conduction problem of compound cylinder. In addition, the numerical stability is improved by the predictor-corrector method. It enables the simulation of flow laden with solid particles of neutral density. Then, the applicability of present method is shown by direct numerical simulation of two-dimensional cavity flow including multiple particles, and the influences of particle size, layout and behavior for heat transfer properties are investigated.
液固两相流传热的浸入边界法
本文提出了考虑传热的液固两相流动的扩展浸入边界法。速度场和压力场是基于体力型IBM求解的。考虑界面方向和热流密度,采用热导率模型计算界面的温度场。通过复合圆柱体的导热问题,验证了该导热模型的有效性。此外,采用预测校正方法提高了数值稳定性。它可以模拟带有中性密度固体颗粒的流动。然后,通过对含多颗粒的二维腔体流动的直接数值模拟,验证了该方法的适用性,并研究了颗粒尺寸、布局和行为对传热性能的影响。
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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