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Lattice Boltzmann methods for single-phase and solid-liquid phase-change heat transfer in porous media: A review

机译:多孔介质中单相和固液相变传热的格子Boltzmann方法:综述

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Over the past 30 years, the lattice Boltzmann (LB) method has been developed into a versatile and powerful numerical methodology for computational fluid dynamics and heat transfer. Owing to its kinetic nature, the LB method has the capability to incorporate the essential mesoscopic physics, and it is particularly successful in modeling transport phenomena involving complex boundaries and interfacial dynamics. Up to now, the LB method has achieved great success in modeling fluid flow and heat transfer in porous media. Since the LB method is inherently transient, it is especially useful for investigating transient solid-liquid phase-change processes wherein the interfacial behaviors are very important. In this article, a comprehensive review of the LB methods for single-phase and solid-liquid phase-change heat transfer in porous media at both the pore scale and representative elementary volume (REV) scale. The review first introduces the fundamental theory of the LB method for fluid flow and heat transfer. Subsequently, the REV-scale LB method for fluid flow and single-phase heat transfer in porous media and the LB method for solid-liquid phase-change heat transfer are discussed in detail. Moreover, the applications of the LB methods in single-phase and solid-liquid phase-change heat transfer in porous media are reviewed. The LB modeling and predictions of the effective thermal conductivity of porous materials are also reviewed. Finally, further developments of the LB method in the related areas are briefly discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在过去的30年中,格子玻尔兹曼(LB)方法已发展成为一种用于计算流体动力学和传热的通用且功能强大的数值方法。由于其动力学性质,LB方法具有整合基本介观物理学的能力,并且在建模涉及复杂边界和界面动力学的传输现象方面特别成功。到目前为止,LB方法已经成功地模拟了多孔介质中的流体流动和传热模型。由于LB方法本质上是瞬态的,因此对于研究瞬态固液相变过程(其中界面行为非常重要)特别有用。在本文中,对孔尺寸和代表性基本体积(REV)尺寸下多孔介质中单相和固液相变传热的LB方法进行了全面综述。这篇综述首先介绍了LB方法在流体流动和传热方面的基本理论。随后,详细讨论了用于多孔介质中流体流动和单相传热的REV标度LB方法以及用于固液相变传热的LB方法。此外,综述了LB方法在多孔介质中单相和固液相变传热中的应用。 LB模型和多孔材料有效导热系数的预测也进行了审查。最后,简要讨论了LB方法在相关领域的进一步发展。 (C)2018 Elsevier Ltd.保留所有权利。

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