Effect on the flow and heat transfer characteristics for sinusoidal pulsating laminar flow in a heated square cylinder

被引:0
作者
Jiu-Yang Yu
Wei Lin
Xiao-Tao Zheng
机构
[1] Wuhan Institute of Technology,School of Mechanical and Electronic Engineering
[2] Wuhan University of Technology,School of Mechanical and Electronic Engineering
来源
Heat and Mass Transfer | 2014年 / 50卷
关键词
Vortex; Heat Transfer; Nusselt Number; Drag Coefficient; Strouhal Number;
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中图分类号
学科分类号
摘要
Two-dimensional numerical simulation is performed to understand the effect of flow pulsation on the flow and heat transfer from a heated square cylinder at Re = 100. Numerical calculations are carried out by using a finite volume method based on the pressure-implicit with splitting of operators algorithm in a collocated grid. The effects of flow pulsation amplitude (0.2 ≤ A ≤ 0.8) and frequency (0 ≤ fp ≤ 20 Hz) on the detailed kinematics of flow (streamlines, vorticity patterns), the macroscopic parameters (drag coefficient, vortex shedding frequency) and heat transfer enhancement are presented in detail. The Strouhal number of vortices shedding, drag coefficient for non-pulsating flow are compared with the previously published data, and good agreement is found. The lock-on phenomenon is observed for a square cylinder in the present flow pulsation. When the pulsating frequency is within the lock-on regime, time averaged drag coefficient and heat transfer from the square cylinder is substantially augmented, and when the pulsating frequency in about the natural vortex shedding frequency, the heat transfer is also substantially enhanced. In addition, the influence of the pulsating amplitude on the time averaged drag coefficient, heat transfer enhancement and lock-on occurrence is discussed in detail.
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页码:849 / 864
页数:15
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