平板自然对流湍流等温问题网格的研究与验证

V. R. Silva, S. A. V. Júnior, Célio Caminaga, R. C. M. Neves
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引用次数: 3

摘要

平板上自然对流的研究在工程领域引起了极大的兴趣,既因为几何的简单性,又因为其广泛的应用。在数值模型的研究和定义中,理想的网格结构是在物理上最好地代表所解决的问题,具有最小的数值影响和最低的计算成本。研究了两种网格构型(非均匀交错和完全均匀)在不同细化水平下对平板自然对流换热率的影响,以评估AR = 5的平板自然对流换热率;在等温条件下,在湍流状态下使用κ−ω SST RANS模型,并使用免费和开源软件OpenFOAM®。采用了物理数值方法,得到的数值结果得到了文献实验结果的验证。结果表明,非均匀交错网格结构在计算精度和计算成本上都较好。由于单元数量多,计算成本高,完全均匀网格是不可行的。
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STUDY AND VALIDATION OF MESHES IN TURBULENT ISOTHERMAL PROBLEMS OF NATURAL CONVECTION IN FLAT PLATES
The study of natural convection on flat plates is of great interest in the areas of Engineering, both for the simplicity of geometry and the wide variety of applications. In the study and definition of a numerical model, an ideal mesh configuration is the one that best represents physically, with minimal numerical influence and with the lowest computational cost, the problem addressed. The influence of two mesh configurations (non-uniform staggered and entirely uniform), at different refinement levels, was studied to evaluate natural convection heat transfer rates in flat plates of AR = 5; in isothermal conditions, in turbulent regime with the κ−ω SST RANS model and using free and open-source software OpenFOAM®. The physical-numerical methodology applied, and the numerical results obtained were validated from experimental results in the literature. The non-uniform staggered mesh configuration proved to be more adequate in precision, and computational cost to the problem situation studied. The entirely uniform mesh proved to be infeasible due to the high number of elements and computational cost demanded.
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