西安交通大学人居环境与建筑工程学院,西安,710049
网络首发:2007-07-10,
纸质出版:2007
移动端阅览
王沣浩 1, 姜歌东 2, 孟祥兆 1, 等. 单列圆柱流体诱导振动数值模拟研究[J]. 西安交通大学学报, 2007,41(7):870-874.
王沣浩 1, 姜歌东 2, 孟祥兆 1, et al. Numerical Simulation for Vortex Shedding Induced Vibration of Cylinder Array[J]. 2007, 41(7): 870-874.
基于表面涡方法和流固耦合模型
研究了雷诺数为 2.67×10
4
时的单列圆柱流体诱导振动问题
并计算了涡云图、流体力、振动响应、涡脱落频率等.计算模拟结果很好地重现了刚性单列圆柱在小间隙比(1.5)下以宽、窄尾涡交替和多频为特征的非均匀流态
以及间隙比为2.0时的涡脱落现象.此外
还研究了单列自由振动的弹性圆柱在间隙比为 2.0时的流体诱导振动问题
结果表明:在大振幅条件下
流体诱导力在x方向和y方向有较强烈的耦合; 随着振幅的减小
x方向振动对y方向振动的影响可以忽略
可采用单自由度的动力学模型假设进行计算.
The cross-flow induced vibration of a row of cylinders at sub-critical Reynolds number Re=2.67×10
4
is simulated based on surface vorticity method and a fluid-structure interaction model incorporating the effects of cylinder motions and displacements. The computational results of the vorticity map
fluid force
vibration response
and shedding frequency are presented. The non-uniform flow behind a rigid cylinder row with a small pitch ratio T/D=1.5 is characterized by narrow and wide near wakes and multiple frequencies
and the vortex shedding behind a rigid cylinder row with T/D=2.0 is replicated properly by the simulation results. Furthermore
the flow induced vibration of a flexible cylinder row with T/D=2.0 is also investigated. The numerical results show that the coupling between x- and y-direction occu
rs obviously for large-amplitude vibration
and declines rapidly with the reduced vibration amplitude to be expected to choose single DOF dynamic model for the flow-induced vibration of a cylinder row.
Pettigrew M J, Tayor C E. Vibration analysis of shell-and-tube heat exchangers: an overview- part 1: flow, damping, fluidelastic instability [J]. Journal of Fluids and Structures, 2003, 18(5): 469-483.
Liu Y, So R M C, Lau Y L, et al. Numerical studies of two side-by-side elastic cylinders in a cross-flow [J]. Journal of Fluids and Structures, 2001, 15(7): 1009-1030.
Mittal S, Kumar V. Flow-induced oscillations of two cylinders in tandem and staggered arrangements [J]. Journal of Fluids and Structures, 2001, 15(5): 717-736.
Kevlahan N, Ghidaglia J M. Computation of turbulent flow past an array of cylinders using a spectral method with Brinkman penalization [J]. European Journal of Mechanics: B, 2001, 20(3): 333-350.
王沣浩,张联英,罗昔联.流体横掠波状圆柱的动特性研究[J].西安交通大学学报, 2006, 40(3): 360-364.
Wang Fenghao, Zhang Lianying, Luo Xilian. Experimental investigation to dynamics of wavy cylinders in cross flow [J]. Journal of Xi'an Jiaotong University, 2006, 40(3): 360-364.
王沣浩,姜歌东,罗昔联.一种基于表面涡方法的流体诱导管束振动计算模型[J].西安交通大学学报, 2006, 40(9): 1109-1113.
Wang Fenghao, Jiang Gedong, Luo Xilian. A flow induced vibration model based on grid-free surface vorticity method [J]. Journal of Xi'an Jiaotong University, 2006, 40(9): 1109-1113.
王沣浩,姜歌东,罗昔联.高雷诺数下双圆柱绕流诱发振动的数值模拟[J].西安交通大学学报, 2007, 41(1): 101-105.
Wang Fenghao, Jiang Gedong, Luo Xilian. Numerical simulation for flow around two cylinders at high Reynolds number by surface vorticity method [J]. Journal of Xi'an Jiaotong University, 2007, 41(1): 101-105.
Zdravkovich M M. Flow around circular cylinders-a comprehensive guide through flow phenomena, experiments, applications, mathematical models, and computer simulations: Vol 2 [M]. New York: Oxford University Press Inc., 2003.
0
浏览量
5
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621