Experimental study of the flow around two finite square cylinders

IF 1.1 4区 工程技术 Q3 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
A. Sohankar, M. Abbasi, M. Nili-Ahmadabadi, M. Alam, F. Zafar
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引用次数: 13

Abstract

An experimental investigation is conducted on the air flow past two wallmounted finite length side-by-side square cylinders, each of the aspect ratio AR = 7. The cylinder center-to-center spacing ratio T/d is varied from 2 to 6, where d is the side-width of the cylinder. The cylinders are placed at three incidence angles with respect to the freestream velocity, i.e. both cylinders at zero incidence angle (case I), both cylinders at 45° incidence angle (case II), and one cylinder at zero incidence angle with the other at 45° incidence angle (case III). The pressure distributions on the surfaces of the cylinders are measured at Reynolds numbers of 5.9 × 10 4 –8.1 × 10 4 . In addition, the flow structures are visualized in a smoke wind tunnel at the Reynolds number of 2 × 10 3 . Depending on the flow characteristics, four flow structures are identified at the mid-height of the cylinders, namely the asymmetric flow, antiphase shedding flow, leading-edge separated flow and wedge flow. The sectional drag near the bottom is more sensitive to T/d than that near the top. The sectional drag coefficient measured at 0.5 d below the mid-span can represent the surface-averaged drag coefficient on the entire cylinder.
有限方圆柱绕流的实验研究
对通过两个壁装有限长度并排方形圆柱体的气流进行了实验研究,每个圆柱体的纵横比为AR=7。圆柱体中心间距比T/d在2到6之间变化,其中d是圆柱体的侧宽度。相对于自由流速度,圆柱体以三个入射角放置,即两个圆柱体均处于零入射角(情况i),两个圆柱体都处于45°入射角(情形II),一个圆柱体处于零入射角度,另一个圆柱体位于45°入射角度(情况III)。在雷诺数为5.9×104–8.1×104的情况下,测量了气缸表面的压力分布。此外,在雷诺数为2×103的烟风洞中对流动结构进行了可视化。根据流动特性,在圆柱体的中间高度确定了四种流动结构,即不对称流动、反相脱落流动、前缘分离流动和楔形流动。靠近底部的截面阻力比靠近顶部的截面阻力对T/d更敏感。在中跨下方0.5d处测得的截面阻力系数可以表示整个圆柱体上的表面平均阻力系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Mechanics
Archives of Mechanics 工程技术-材料科学:表征与测试
CiteScore
1.40
自引率
12.50%
发文量
0
审稿时长
>12 weeks
期刊介绍: Archives of Mechanics provides a forum for original research on mechanics of solids, fluids and discrete systems, including the development of mathematical methods for solving mechanical problems. The journal encompasses all aspects of the field, with the emphasis placed on: -mechanics of materials: elasticity, plasticity, time-dependent phenomena, phase transformation, damage, fracture; physical and experimental foundations, micromechanics, thermodynamics, instabilities; -methods and problems in continuum mechanics: general theory and novel applications, thermomechanics, structural analysis, porous media, contact problems; -dynamics of material systems; -fluid flows and interactions with solids. Papers published in the Archives should contain original contributions dealing with theoretical, experimental, or numerical aspects of mechanical problems listed above. The journal publishes also current announcements and information about important scientific events of possible interest to its readers, like conferences, congresses, symposia, work-shops, courses, etc. Occasionally, special issues of the journal may be devoted to publication of all or selected papers presented at international conferences or other scientific meetings. However, all papers intended for such an issue are subjected to the usual reviewing and acceptance procedure.
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