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Mesoscopic scale simulations of heat transport in porous structures
Yan Su
2023
Source PublicationAdvances in Heat Transfer
PublisherAcademic Press
Pages121-209
Abstract

Mesoscopic scale simulations on heat transport in porous structures are shown with the coupled structure generation and transport simulation methods based on probability distribution functions in Gaussian quadrature grid and velocity sets (GQGVS). The mesoscopic scale method for various structure generation named a controllable structure generation scheme (CSGS) may generate not only multiple-phase isotropic homogenous random structures, but also shape-constrained anisotropic heterogeneous structures through relatively simple constraint integer indices with a high accuracy of global phase volume fractions. A nondimensional lattice Boltzmann method (NDLBM)-based solver for coupled transport equations is applied for direct mesoscopic scale simulations of thermal diffusion and natural convection in generated structures described by the local phase volume fraction matrix. Variable timesteps with transient mesoscopic March numbers and stretched space steps with local coordinate transformation gradients are discussed. The effective parallel NDLBM scheme with minimum information transferred during the data communication between subdomains is introduced. Two- and three-dimensional thermal diffusion and natural convection through various porous structures including random, sphere, fiber, and porous pellet packed structures are illustrated to provide a better mesoscopic scale understanding of the mechanism of heat transport in complex structures.

KeywordMesoscopic Scale Natural Convection Nondimensional Lattice Boltzmann Method Porous Structures Thermal Diffusion
DOI10.1016/bs.aiht.2023.01.001
URLView the original
Language英語English
ISBN0065-2717
Volume55
Scopus ID2-s2.0-85150052035
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Citation statistics
Document TypeBook chapter
CollectionFaculty of Science and Technology
DEPARTMENT OF ELECTROMECHANICAL ENGINEERING
AffiliationDepartment of Electromechanical Engineering,FST,University of Macau,HengQin,Macao
First Author AffilicationFaculty of Science and Technology
Recommended Citation
GB/T 7714
Yan Su. Mesoscopic scale simulations of heat transport in porous structures[M]. Advances in Heat Transfer:Academic Press, 2023, 121-209.
APA Yan Su.(2023). Mesoscopic scale simulations of heat transport in porous structures. Advances in Heat Transfer, 55, 121-209.
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