首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Numerical analysis of fluid flow dynamics around two side-by-side square cylinders in the presence and absence of splitter plate
【24h】

Numerical analysis of fluid flow dynamics around two side-by-side square cylinders in the presence and absence of splitter plate

机译:在有和没有分流板的情况下,两个并排方圆柱体周围的流体流动动力学的数值分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This study is concerned with the analysis of the characteristics of flow around two side-by-side square cylinders in presence and absence of splitter plate. The gap spacing (g) between both cylinders as well as between splitter plate and cylinders is varied from 0 to 4 and height of splitter plate is varied from 0.2 to 0.8 with fixed Reynolds number (Re) = 150. Lattice Boltzmann method is used in this analysis to numerically compute the fluid flow characteristics. Two different arrangements are considered in this study; arrangement-I: two side-by-side square cylinders without a splitter plate, arrangement-II: splitter plate placed at the rear side of two side-by-side square cylinders. Based on different characteristics, the flow structure is divided into seven different flow patterns for both arrangements. The mean drag coefficient (Cdmean), Strouhal number (St), root-mean-square values of drag and lift coefficients (Cdrms and Clrms) of two side-by-side square cylinders with and without splitter plate are compared. It is observed that Cdmean, Cdrms and Clrms of both cylinders reduced significantly at smaller splitter heights as compared to higher splitter heights at small g while at intermediate g these values reduced at all values of splitter heights. An interesting fact is observed that the placement of splitter plate at downstream of two side-by-side square cylinders does not always minimize the magnitude of fluid forces instead for some splitter heights the magnitude of fluid forces increases instead of decreasing.
机译:本研究涉及分析在存在和不存在分流板的情况下围绕两个并排方形圆柱体的流动特性。两个圆柱体之间以及分流板和圆柱体之间的间隙间距 (g) 从 0 到 4 变化,分流板的高度从 0.2 到 0.8 变化,雷诺数 (Re) = 150。本分析采用莱迪思玻尔兹曼方法对流体流动特性进行数值计算。本研究考虑了两种不同的安排;布置-I:两个并排的方形圆柱体,没有分流板,布置-II:分流板放置在两个并排的方形圆柱体的背面。根据不同的特性,两种布置的流动结构分为七种不同的流动模式。比较了带和不带分流板的两个并排方形圆柱体的平均阻力系数(Cdmean)、斯特劳哈尔数(St)、阻力和升力系数(Cdrms和Clrms)的均方根值。据观察,在较小的g下,与较高的分流器高度相比,两个圆柱体的Cdmean、Cdrms和Clrms在较小的分流器高度下显着降低,而在中间g下,这些值在所有分流器高度值下都降低。观察到一个有趣的事实,即在两个并排的方形圆柱体的下游放置分流板并不总是使流体力的大小最小化,相反,对于某些分流器高度,流体力的大小增加而不是减少。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号