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Three mathematical representations and an improved ADI method for hyperbolic heat conduction

机译:双曲线热传导的三种数学表示形式和改进的ADI方法

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Hyperbolic heat conduction models have been proposed to characterize the breakdown of Fourier's law, i.e. thermal waves. In this paper, three mathematical representations for hyperbolic heat conduction, namely temperature representation, hybrid representation and heat flux representation, and their corresponding characteristics are first analyzed. The hybrid representation is demonstrated to be preferable for numerical calculations and contains sufficient heat transport information. Specifically designed for solving transient heat conduction problems in the hybrid representation, an improved alternative direction implicit (ADI) method based on staggered grids is then developed. This algorithm focuses on the entire hyperbolic equation set instead of one single hyperbolic equation, and it adopts chasing method rather than iteration, which enables to significantly save computing time and storage space. Characteristics analyses on the definite conditions show that for each side only one boundary condition is necessary for Cattaneo-Vernotte (CV) type hyperbolic heat conduction. The advantages of the hybrid representation are also demonstrated by numerical simulations. Besides, the initial heat flux, which implies the initial phonon momentum in dielectrics, has an important influence on the propagation patterns of thermal waves, changing the way of energy conveying. The mechanism of phonon momentum conservation leads to the vector characteristics of thermal waves, and causes the direction preference in hyperbolic heat conduction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已经提出了双曲热传导模型来表征傅立叶定律,即热波的破坏。本文首先分析了双曲线热传导的三种数学表示形式,即温度表示,混合表示和热通量表示,以及它们的相应特性。混合表示被证明对于数值计算是优选的,并且包含足够的热传递信息。为了解决混合表示中的瞬态热传导问题,专门设计了一种基于交错网格的改进的替代方向隐式(ADI)方法。该算法着眼于整个双曲方程组,而不是单个双曲方程,它采用追赶法而不是迭代法,从而大大节省了计算时间和存储空间。对确定条件的特性分析表明,对于Cattaneo-Vernotte(CV)型双曲型热传导,每边仅需要一个边界条件。混合表示的优势还通过数值模拟得到了证明。此外,初始热通量(意味着电介质中的初始声子动量)对热波的传播方式有重要影响,从而改变了能量的传输方式。声子动量守恒的机理导致了热波的矢量特性,并引起了双曲线热传导中的方向偏向。 (C)2019 Elsevier Ltd.保留所有权利。

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