On Drag Reduction and Heat Transferin Turbulent Channel Flow over Circular Dimples: The Shift of the Deepest Point of Dimples

Y. Eng, C. Tay, B. C. Khoo
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Abstract

- In this study, the flow characteristics and enhanced heat transfer performance of circular dimples in a channel flow were numerically analysed and compared with a flat channel. The effect of shifting the deepest point of the dimples in turbulent flow on their drag and heat transfer performance are also discussed. The strength and extent of the induced recirculating flow is suppressed significantly when the deepest point is shifted downstream, enhancing the heat transfer performance of the dimpled wall. At the same time, the flow structure above the dimpled wall is manipulated by the geometry changes. The flow impingement on the dimpled wall increases drag; consequently, the power required to drive the flow is increased. A parametric study is conducted to optimize the shifting of the deepest point to maximize heat transfer performance while minimizing the drag increase.
圆形凹痕紊流的减阻和换热:凹痕最深点的移动
在本研究中,对通道流动中圆形凹窝的流动特性和增强的传热性能进行了数值分析,并与平坦通道进行了比较。文中还讨论了在湍流中改变波纹最深点对其阻力和换热性能的影响。当最深点向下游移动时,诱导再循环流动的强度和程度明显受到抑制,从而增强了凹陷壁面的换热性能。同时,凹槽壁面上方的流动结构也受到几何形状变化的影响。流动对凹陷壁面的冲击使阻力增大;因此,驱动气流所需的功率增加了。通过参数化研究,优化了最深点的位移,以最大限度地提高传热性能,同时最小化阻力增加。
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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