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Three dimensional fluid flow within a rectangular channel with several cylindrical (and/or) elliptical blocks: lattice boltzmann investigation

机译:具有多个圆柱形(和/或)椭圆形块内的矩形通道内的三维流体流动:Lattice Boltzmann调查

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摘要

Through this paper, we investigate numerically a Three-dimensional laminar flow of an incompressible Newtonian fluid within a rectangular channel; including several adiabatic partitions of a cylindrical (and/or) elliptical shape. To do so, a numerical code based on the Lattice Boltzmann approach is used. In other words, three dimensions D3Q19 model is adopted all based on a cubic Lattice, where each pattern of the latter is characterized by nineteen discrete speeds. Our numerical code has been successfully validated after a wide comparison between the present results and those of the literature. By taking into account the Reynolds number, the partitions’ shape impact on the flow fields within the channel is taking all attention and that throughout the time’ Streamlines and the velocity profiles. The pressure drop within our channel is also investigated to come out with the best arrangement of these kinds of partitions within.
机译:通过本文,我们在数值上调查了矩形通道内的不可压缩牛顿流体的三维层流;包括圆柱形(和/或)椭圆形状的多个绝热隔板。为此,使用基于格子Boltzmann方法的数值代码。换句话说,基于立方晶格来采用三维D3Q19模型,其中后者的每个图案的特征在于千分之一离散速度。我们的数值代码在当前结果和文献的广泛比较后已成功验证。通过考虑到雷诺数,分区对信道内的流场的形状影响正在全部注意,并且在整个时间的流线和速度配置文件中。我们的渠道内的压力下降还调查,以满足这些种类的分区的最佳安排。

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