首页> 外文期刊>Journal of Fluids and Structures >Numerical simulation of viscous oscillatory flow past four cylinders in square arrangement
【24h】

Numerical simulation of viscous oscillatory flow past four cylinders in square arrangement

机译:方形排列流经四个圆柱体的粘性振荡流的数值模拟

获取原文
获取原文并翻译 | 示例
           

摘要

The results of a numerical study of the viscous oscillating flow past four circular cylinders, for a constant frequency parameter equal to 50 and KC ranging between 0.2 and 10, are presented. The cylinders were placed on the vertices of a square, two sides of which were perpendicular and two parallel to the oncoming flow, for pitch ratios, P/D, ranging between 2 and 5. The finite-element method was employed for the solution of the Navier-Stokes equations, in the formulation where the stream function and the vorticity are the field variables, whereas the pressure distribution throughout the computational domain was obtained from the solution of Poisson's equation. When the Keulegan-Carpenter number is lower than 4, the flow remains symmetrical with respect to the horizontal axis of symmetry of the solution domain and periodic at consecutive cycles. As KC increases to 4, the flow becomes aperiodic in different cycles, although symmetry with respect to the horizontal central line of the domain is preserved. For KC equal to 5, asymmetries appear intermittently in the flow, which are eventually amplified as KC increases still further. These asymmetries, in association with the aperiodicity of flow in different cycles, lead to an almost chaotic configuration as KC grows larger. For characteristic cases the flow pattern and the time histories of the in-line and transverse forces exerted on the cylinders are presented. The mean transverse forces acting on the cylinders, the r.m.s. values of the in-line and transverse forces, together with the drag and inertia coefficients of the in-line force, were evaluated for each pitch ratio in the range of Keulegan-Carpenter numbers examined and are presented in diagrams.
机译:给出了对于等于50的恒定频率参数和0.2至10的KC的流经四个圆柱的粘性振荡流的数值研究结果。将圆柱体放置在正方形的顶点上,正方形的两个侧面垂直且两个平行于即将来临的流,其螺距比P / D介于2和5之间。采用有限元法求解在公式中,Navier-Stokes方程以流函数和涡度为场变量的公式表示,而整个计算域中的压力分布是从Poisson方程的解获得的。当Keulegan-Carpenter数小于4时,流相对于溶液域的对称水平轴保持对称,并在连续循环中保持周期性。随着KC增大到4,尽管保持了相对于畴的水平中心线的对称性,但流量在不同的周期中变为非周期性的。当KC等于5时,流动中会间歇性地出现不对称现象,最终随着KC进一步增加而逐渐扩大。这些不对称性与不同周期中流动的非周期性相关,导致随着KC的增大,几乎是混乱的配置。对于典型情况,给出了施加在气缸上的轴向力和横向力的流型和时间历史。作用在圆柱上的平均横向力,r.m.s.对于所检查的Keulegan-Carpenter数范围内的每个螺距比,评估了轴向力和横向力的值以及轴向力的阻力和惯性系数,并在图中显示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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