首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Heat transfer enhancement in a channel partially filled with a porous block: Lattice boltzmann method
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Heat transfer enhancement in a channel partially filled with a porous block: Lattice boltzmann method

机译:部分填充有多孔块的通道中的传热增强:格子螺栓曼兹曼法

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摘要

The main goal of the present study is to investigate the heat transfer enhancement in a channel partially filled with an anisotropic porous block (Porous Foam) using the lattice Boltzmann method (LBM). Combined pore level simulation of flow and heat transfer is performed for a 2D channel which is partially filled with square obstacles in both ordered and random arrangements by LBM which is not studied completely in the literature. The effect of the Reynolds number, different arrangements of obstacles, blockage ratio and porosity on the velocity and temperature profiles inside the porous region are studied. The local and averaged Nusselt numbers on the channel walls along with the respective confidence interval and comparison between results of regular and random arrangements are presented for the first time. For constant porosity and block size, the maximum value of averaged Nusselt number in the porous block is obtained in the case of random arrangement of obstacles. Also, by decreasing the porosity, the value of averaged Nusselt number is increased. Heat transfer to the working fluids increases significantly by increasing the blockage ratio. Several blockage ratios with different arrangements are checked to obtain a correlation for the Nusselt number.
机译:本研究的主要目的是使用格子玻尔兹曼方法(LBM)研究部分填充各向异性多孔块(多孔泡沫)的通道中的传热增强。对二维通道进行流动和传热的组合孔隙水平模拟,该二维通道由LBM以有序和随机排列部分填充有方形障碍物,这在文献中还没有完全研究。研究了雷诺数,障碍物的不同排列,堵塞率和孔隙率对多孔区域内部速度和温度分布的影响。首次显示了通道壁上的局部和平均Nusselt数,以及各自的置信区间和常规与随机排列结果之间的比较。对于恒定的孔隙率和块尺寸,在随机布置障碍物的情况下,将获得多孔块中平均努塞尔数的最大值。另外,通过降低孔隙率,平均努塞尔数的值增加。通过增加堵塞率,传给工作流体的热量显着增加。检查具有不同布置的几个阻塞率以获得与努塞尔数的相关性。

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