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Experimental and Numerical Study of Heat Transfer and Flow Friction in Channels With Dimples of Different Shapes

机译:异形凹坑通道内传热与流动摩擦的实验与数值研究

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摘要

An experimental and numerical study was conducted to investigate the effects of dimple shapes on the heat transfer and flow friction of a turbulent flow over dimpled suifaces with different dimple shapes: spherical, teardrop, elliptical, and inclined elliptical. These dimples all have the same depth. The heat transfer, friction factor, and flow structure characteristics in the cooling channels with dimples of different shapes have been obtained and compared with each other for a Reynolds number range of 8500-60,000. The study showed that the dimple shape can have distinctive effects on the heat transfer and flow structure in the dimpled channels. The teardrop dimples show the highest heat transfer, which is about 18% higher than the conventional spherical dimples; and the elliptical dimples have the lowest heat transfer, which is about 10% lower than the spherical dimples; and however the inclined elliptical dimples have comparable heat transfer and pressure loss performance with the spherical dimples. The experiments still showed the realistic heat transfer enhancement capabilities of the dimpled channels relative to a smooth rectangular channel flow under the same flow and thermal boundary conditions, even after considering the thermal entrance effects in the channel flow and the enlarged heat transfer (wetted) area due to the dimpled surface. The three-dimensional numerical computations showed different vortex flow structures and detailed heat transfer characteristics of the dimples with different shapes, which revealed the influential mechanisms of differently shaped dimples on the convective heat transfer enhancement.
机译:进行了实验和数值研究,以研究凹坑形状对带有不同凹坑形状(球形,泪珠状,椭圆形和倾斜椭圆形)的凹表面上湍流的传热和流动摩擦的影响。这些酒窝都具有相同的深度。获得了具有不同形状的凹坑的冷却通道中的传热,摩擦系数和流动结构特征,并将其相互比较,得出雷诺数范围为8500-60,000。研究表明,凹坑形状可以对凹坑中的传热和流动结构产生显着影响。泪珠状凹痕显示出最高的热传递,比传统的球形凹痕高约18%。椭圆形凹窝的传热最低,比球形凹窝低约10%。但是倾斜的椭圆形凹窝具有与球形凹窝相当的传热和压力损失性能。即使在考虑了通道流中的热入口效应和扩大的传热(湿润)区域后,实验仍显示出在相同的流动和热边界条件下,相对于平滑矩形通道流,凹坑通道的实际传热增强能力。由于表面凹陷。三维数值计算表明,不同形状的酒窝具有不同的涡流结构和详细的传热特性,揭示了不同形状的酒窝对流换热的影响机理。

著录项

  • 来源
    《Journal of Heat Transfer》 |2015年第3期|031901.1-031901.10|共10页
  • 作者单位

    Gas Turbine Research Institute, School of Mechanical Engineering, Shanghai Jiao Tong University, Dongchuan Road 800, Shanghai 200240, China;

    Gas Turbine Research Institute, School of Mechanical Engineering, Shanghai Jiao Tong University, Dongchuan Road 800, Shanghai 200240, China;

    Gas Turbine Research Institute, School of Mechanical Engineering, Shanghai Jiao Tong University, Dongchuan Road 800, Shanghai 200240, China;

    Institute of Aerospace Thermodynamics (ITLR), University of Stuttgart, Pfaffenwaldring 31, Stuttgart 70569, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gas turbine cooling; dimple shape; heat transfer enhancement; pressure loss; flow structure;

    机译:燃气轮机冷却酒窝形状传热增强;压力损失流结构;

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