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Accuracy and efficiency study of lattice Boltzmann method for steady-state flow simulations

机译:稳态流动模拟的格子Boltzmann方法的精度和效率研究

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In this article, a systematic investigation of the lattice Boltzmann method is reported by calculating both two-dimensional and three-dimensional steady-state incompressible flows. Accuracy is determined following a standard estimation procedure, while efficiency is evaluated by comparing with an advanced finite-volume Navier-Stokes solver. The objective of the article is to provide a brief review of the lattice Boltzmann method, to report the accuracy and efficiency of the method, and to identify possible future research directions. Overall, it is found that the accuracy of the lattice Boltzmann method is between first and second order, depending on the boundary conditions used. The regular lattice-based lattice Boltzmann method is still computationally expensive for obtaining steady-state solutions on single-node computers in comparison with the more advanced conventional Navier-Stokes solvers. [References: 35]
机译:在本文中,通过计算二维和三维稳态不可压缩流,报道了对格子玻尔兹曼方法的系统研究。精度是根据标准估算程序确定的,而效率是通过与先进的有限体积Navier-Stokes求解器进行比较来评估的。本文的目的是简要介绍格子Boltzmann方法,以报告该方法的准确性和效率,并确定未来可能的研究方向。总的来说,发现格子Boltzmann方法的精度介于一阶和二阶之间,这取决于所使用的边界条件。与更高级的常规Navier-Stokes求解器相比,基于规则晶格的晶格Boltzmann方法在单节点计算机上获得稳态解在计算上仍然昂贵。 [参考:35]

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