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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Flow structure and heat transfer characteristics of a 90 degrees-turned pin-finned wedge duct with dimples at different locations
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Flow structure and heat transfer characteristics of a 90 degrees-turned pin-finned wedge duct with dimples at different locations

机译:流动结构和传热特性为90度转动的销钉楔管,不同位置的凹坑

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In this study, numerical simulations are performed to investigate the effect of dimple location on the flow structure and heat transfer characteristics in a 90 degrees-turned channel with pin fins. Results of the flow structure, heat transfer on the endwall, and friction factor are included in this study. It is found that the dimple location has an impact on the flow structure and heat transfer both for the pin fins arranged with in-line and staggered layout. The horseshoe vortex near the pin fin is influenced by the location of the dimple. The dimple enhances the Nusselt number on the endwall surface significantly. In addition, the dimple location has an effect on the low-speed recirculation, impingement, and vortex which are generated by the dimple. However, the dimple has very limited effects on the friction factor for all cases. It is also found that the area goodness factor and volume goodness factor are improved by the dimple.
机译:在该研究中,执行数值模拟,以研究具有销翅片的90度转向通道中的流动结构和传热特性的凹坑位置的效果。 本研究包括流动结构,端壁上的传热和摩擦因子的结果。 发现凹坑位置对流动结构和热传递的影响,该销翅片均有线和交错布局。 销钉附近的马蹄形涡旋受到凹坑位置的影响。 凹坑显着增强了端壁表面上的良好数量。 此外,凹坑位置对由凹坑产生的低速再循环,冲击和涡旋产生影响。 然而,凹坑对所有病例的摩擦因子影响非常有限。 还发现凹坑的面积良性因素和体积良性因素得到改善。

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