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LAMINAR FLUID FLOW AROUND TWO WALL-MOUNTED BLOCKS OF DIFFERENT SIZE

机译:两种尺寸的壁挂式砌块周围的层流流动

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Fluid flow around single or multiple bluff bodies mounted on a surface has great significance in science and engineering. Understanding the characteristics of different vortices formed around wall-mounted bodies is quite necessary for different applications. Although the case of a single surface mounted cube has been studied extensively, only little attention has been paid to the flow around two or more rectangular blocks in array. Therefore, a CFD code is developed to calculate three dimensional steady state laminar fluid flow around two cuboids of arbitrary size and configuration mounted on a surface in free stream conditions. The employed numerical scheme is finite volume and SIMPLE algorithm is used to treat pressure and velocity coupling.Results are presented for two rectangular blocks of the different size mounted on a surface in various inline arrangements. Streamlines are plotted for blocks of different size ratio. Velocity and pressure distributions are also plotted in the wake region behind the obstacles. It is shown that how the behavior of flow field and vortical structures depend on the respective size and location of the larger block in comparison with the case of two inline wall mounted cubes of the same size.
机译:在表面上安装的单个或多个钝体周围的流体流动在科学和工程中具有重要意义。对于不同的应用,了解壁挂式主体周围形成的不同涡旋的特性是非常必要的。尽管已经对单个表面安装立方体的情况进行了广泛的研究,但很少关注围绕阵列中的两个或更多矩形块的流动。因此,开发了CFD代码以计算在自由流条件下安装在表面上的任意大小和构造的两个长方体周围的三维稳态层流。所采用的数值方案是有限体积,并且使用SIMPLE算法来处理压力和速度耦合。 给出了以各种内联方式安装在表面上的两个大小不同的矩形块的结果。绘制了不同大小比例的块的流线。在障碍物后面的尾流区域中还绘制了速度和压力分布。结果表明,与两个相同大小的直列壁装立方体相比,流场和旋涡结构的行为如何取决于较大块的相应大小和位置。

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