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A numerical technique for computing effective thermal conductivity of fluid-particle mixtures

机译:一种计算流体-颗粒混合物有效导热系数的数值技术

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摘要

Periodic arrays of particles, foams, and other structures impregnated with a static fluid play an important role in heat transfer enhancement. In this article, we develop a numerical method for computing conduction heat transfer in periodic beds by exploiting the periodicity of heat flux and the resulting linear variation of mean temperature. The numerical technique is developed within the framework of an unstructured finite-volume scheme in order to enable the computation of effective thermal conductivity for complex fluid-particle arrangements. The method is applied to the computation of effective thermal conductivity of ordered as well as random beds of spheres and rods. The effects of varying surface area, aspect ratio, volume fraction, orientation, and distribution are studied for various solid-to-fluid conductivity ratios. Unlike classical theories which predict only a dependence on volume fraction, these direct simulations show that aspect ratio, distribution, and alignment of particles have an important influence on the effective thermal conductivity of the bed.
机译:颗粒,泡沫和其他浸有静态流体的结构的周期性排列在增强传热方面起着重要作用。在本文中,我们通过利用热通量的周期性和平均温度的线性变化,开发了一种计算周期性床中传导传热的数值方法。数值技术是在非结构化有限体积方案的框架内开发的,以便能够计算出复杂流体-颗粒排列的有效导热系数。该方法适用于球和棒的有序床和无序床的有效导热系数的计算。对于各种固液比,研究了变化的表面积,纵横比,体积分数,取向和分布的影响。与仅预测体积分数相关性的经典理论不同,这些直接模拟表明,颗粒的长宽比,分布和排列对床的有效导热率具有重要影响。

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