基于晶格玻尔兹曼方法的地幔对流盖驱动空腔模拟

U. Fauzi
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引用次数: 1

摘要

晶格玻尔兹曼方法是一种基于气体微观和动力学理论的计算流体力学方法,可以应用于模拟流体。在本研究中,利用二维系统(D2Q9)中的Lattice Boltzmann方法,将盖子驱动空腔模拟的概念与自然对流相结合,模拟了地球地幔对流。盖驱动腔体和自然对流的模拟结果与前人的研究成果相当。研究表明,在一定的盖子速度下,运动羽流的方向发生了变化。考虑更复杂的边界条件和适当的模拟系统,将得到更好、更可靠的地幔对流模拟结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lid-Driven Cavity For Mantle Convection Modelling Using Lattice Boltzmann Method
The Lattice Boltzmann Method is one of the computational fluid dynamics methods that can be applied to simulate fluid based on the microscopic and kinetic theory of gases. In this study, earth mantle convection is simulated by combining the concept of lid-driven cavity simulation and natural convection using the Lattice Boltzmann method in a two-dimensional system (D2Q9). The results of the lid-driven cavity and natural convection simulation are comparable to previous works. This study shows that at a certain lid velocity, the direction of the moving plume is changed. This earth mantle convection simulation will give better and more reliable results by considering more complicated boundary conditions and adequate simulation systems.
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