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Comparative study of thermal flows with different finite volume and lattice Boltzmann schemes

机译:不同有限体积和晶格玻尔兹曼方案的热流比较研究

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摘要

In the present paper, a comparative study of numerical solutions for steady flows with heat transfer based on the finite volume method (FVM) and the relatively new lattice Boltzmann method (LBM) is presented. In the last years, the LB methods have challenged the classical FV methods to solve the Navier-Stokes equations and have proven to be superior in accuracy and efficiency for certain applications. Most of these studies were related to the transport of mass and momentum. In the meantime, significant effort has been invested in the application of the LBM to simulate flows including heat transfer. The studies in the present paper are the analysis of performance and accuracy aspects of LBM applied to the prediction of these flows. For a fully developed laminar flow between parallel plates, analytical solutions for the heat transfer in fully developed thermal boundary layers are available and may be compared with the respective numerical results. Finally, a hybrid approach is proposed to circumvent numerical problems of the thermal LB methods.
机译:本文基于有限体积法(FVM)和相对较新的格子玻尔兹曼法(LBM),对稳态传热数值解进行了比较研究。在过去的几年中,LB方法已经挑战了传统的FV方法来求解Navier-Stokes方程,并被证明在某些应用中具有卓越的准确性和效率。这些研究大多数与质量和动量的传递有关。同时,在LBM的应用上投入了大量的精力来模拟包括传热在内的流动。本文的研究是对应用于这些流量预测的LBM的性能和准确性方面的分析。对于平行板之间完全展开的层流,可以使用完全展开的热边界层中传热的分析解决方案,并将其与相应的数值结果进行比较。最后,提出了一种混合方法来规避热LB方法的数值问题。

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