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On the heat flux vector for flowing granular materials - part II: Derivation and special cases

机译:关于流动颗粒材料的热通量矢量-第二部分:推导和特殊情况

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Heat transfer plays a major role in the processing of many particulate materials. The heat flux vector is commonly modelled by the Fourier's law of heat conduction and for complex materials such as nonlinear fluids, porous media, or granular materials, the coefficient of thermal conductivity is generalized by assuming that it would depend on a host of material and kinematical parameters such as temperature, shear rate, porosity or concentration, etc. In Part I, we will give a brief review of the basic equations of thermodynamics and heat transfer to indicate the importance of the modelling of the heat flux vector. We will also discuss the concept of effective thermal conductivity (ETC) in granular and porous media. In Part II, we propose and subsequently derive a properly frame-invariant constitutive relationship for the heat flux vector for a (single phase) flowing granular medium. Standard methods in continuum mechanics such as representation theorems and homogenization techniques are used. It is shown that the heat flux vector in addition to being proportional to the temperature gradient (the Fourier's law), could also depend on the gradient of density (or volume fraction), and D (the symmetric part of the velocity gradient) in an appropriate manner. The emphasis in this paper is on the idea that for complex non-linear materials it is the heat flux vector which should be studied; obtaining or proposing generalized form of the thermal conductivity is not always appropriate or sufficient. Copyright (C) 2006 John Wiley & Sons, Ltd.
机译:传热在许多颗粒材料的加工中起主要作用。热通量矢量通常由热导傅立叶定律建模,对于复杂的材料(例如非线性流体,多孔介质或粒状材料),热导系数可以通过假设其将取决于多种材料和运动学来概括。在第一部分中,我们将简要回顾一下热力学和传热的基本方程,以表明热通量矢量建模的重要性。我们还将讨论粒状和多孔介质中有效热导率(ETC)的概念。在第二部分中,我们提出并随后推导了(单相)流动颗粒介质的热通量矢量的适当的框架不变本构关系。使用连续力学中的标准方法,例如表示定理和均化技术。结果表明,热通量矢量除了与温度梯度成比例(傅立叶定律)外,还可能取决于密度(或体积分数)和D(速度梯度的对称部分)的梯度。适当的方式。本文的重点是这样的思想:对于复杂的非线性材料,应该研究的是热通量矢量。获得或提出热导率的一般形式并不总是适当或充分的。版权所有(C)2006 John Wiley&Sons,Ltd.

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