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Current status of Lattice Boltzmann Methods applied to aerodynamic, aeroacoustic, and thermal flows
Progress in Aerospace Sciences ( IF 9.6 ) Pub Date : 2020-05-01 , DOI: 10.1016/j.paerosci.2020.100616
Keerti Vardhan Sharma , Robert Straka , Frederico Wanderley Tavares

Abstract We present a review of the evolutionary advancement of the lattice Boltzmann methods (LBM) and current status of their applications in dealing with diverse flow problems such as advection-diffusion, forced convection, natural convection, conjugate heat transfer, radiative heat transfer, thermal flow through porous media, phase transition and phase separation, aerodynamics and aeroacoustics, and thermal jet flows. We analyze and discuss various thermal LBM frameworks and methodologies since the time of Lattice Gas Automata (LGA) to recently developed methods to model simple and complex aerodynamic, aeroacoustic and thermal flow problems. Multi-speed (M-S) models, hybrid LBM models, and double distribution function LBM (DDF-LBM) models, along with their applications and improvements are discussed in details. Moreover, the recent developments in addressing various applications such as energy storage devices, systems with electro-thermo convection, aerodynamic flows, simulations of noise profiles in nozzles with and without chevrons, and thermal simulations of jet flow with LBM are presented in great detail.

中文翻译:

应用于空气动力学、气动声学和热流的格子玻尔兹曼方法的现状

摘要 我们回顾了格子玻尔兹曼方法 (LBM) 的进化进展及其在处理各种流动问题(如对流扩散、强制对流、自然对流、共轭传热、辐射传热、热力学等)方面的应用现状。流过多孔介质、相变和相分离、空气动力学和空气声学以及热射流。我们分析和讨论了各种热 LBM 框架和方法,从格子气体自动机 (LGA) 到最近开发的方法来模拟简单和复杂的空气动力学、气动声学和热流问题。详细讨论了多速 (MS) 模型、混合 LBM 模型和双分布函数 LBM (DDF-LBM) 模型及其应用和改进。而且,
更新日期:2020-05-01
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