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Lattice-Boltzmann simulations of the thermally driven 2D square cavity at high Rayleigh numbers

机译:高瑞利数下热驱动2D方腔的Lattice-Boltzmann模拟

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The thermal lattice Boltzmann equation (TLBE) with multiple-relaxation-times (MRT) collision model is used to simulate the steady thermal convective flows in the two-dimensional square cavity with differentially heated vertical walls at high Rayleigh numbers. The MRT-TLBE consists of two sets of distribution functions, i.e., a D2Q9 model for the mass-momentum equations and a D2Q5 model for the temperature equation. The dimensionless flow parameters are the following: the Prandtl number Pr = 0.71 and the Rayleigh number Ra = 10~6, 10~7, and 10~8. The D2Q9 + D2Q5 MRT-TLBE is shown to be second-order accurate and to be capable of yielding results of benchmark quality, including various Nusselt numbers and local hydrodynamic intensities. Our results also agree well with existing benchmark data obtained by other methods.
机译:利用具有多重弛豫时间(MRT)碰撞模型的热晶格玻尔兹曼方程(TLBE)来模拟具有高瑞利数的垂直加热壁的二维方腔中的稳态热对流。 MRT-TLBE由两组分布函数组成,即用于质量动量方程的D2Q9模型和用于温度方程的D2Q5模型。无因次流动参数如下:普朗特数Pr = 0.71,瑞利数Ra = 10〜6、10〜7和10〜8。 D2Q9 + D2Q5 MRT-TLBE被证明是二阶准确的,并且能够产生基准质量的结果,包括各种努塞尔数和局部流体动力强度。我们的结果也与通过其他方法获得的现有基准数据非常吻合。

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