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A computation of flow and heat transfer past three heated cylinders in a vee shape by a double distribution MRT thermal lattice Boltzmann model

机译:通过双重分布MRT热晶格Boltzmann模型计算通过三个加热圆柱体的流动和传热

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摘要

Laminar convective flow heat transfer from a three heated square blocks arranged as a vee shaped inside a two-dimensional plane channel is numerically investigated. We propose a numerical scheme to solve the flow and the temperature fields using the MRT-D2Q9 model and the MRT-D2Q5 model, respectively. The fluid considered here is air (Pr = 0.71) and the analysis is carried out for Reynolds numbers ranged between 10 and 100 and for gap-to-diameter ratio 1 and 2. The velocity plots and isotherm patterns obtained are systematically presented and discussed to interpret the flow and heat transfer visualization. The variations of drag coefficient and time-averaged local Nusselt number around the surface of the three cylinders as well as the surface-averaged values of the time-averaged Nusselt number for each block are also investigated and discussed. It is found that the numerical results agree well with other numerical results. This demonstrates that the presented numerical model is a promising tool to investigate the simultaneous solution of fluid flow and heat transfer in complex geometries.
机译:数值研究了在二维平面通道内部布置为V形的三个加热方形块的层流对流传热。我们提出了一种数值方案,分别使用MRT-D2Q9模型和MRT-D2Q5模型求解流场和温度场。这里考虑的流体是空气(Pr = 0.71),并且对雷诺数在10到100之间以及气隙直径比1和2进行了分析。系统给出了速度图和等温线图,并进行了讨论。解释流动和传热的可视化。还研究并讨论了三个圆柱体表面的阻力系数和时间平均局部Nusselt数的变化以及每个块的时间平均Nusselt数的表面平均值。发现数值结果与其他数值结果吻合良好。这表明,提出的数值模型是研究复杂几何形状中流体流动和传热的同时解决方案的有前途的工具。

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