首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATION OF IMPINGEMENT HEAT TRANSFER ON CONCAVE-AND CONVEX-DIMPLED PLATE WITH DIFFERENT DIMPLE ARRANGEMENTS
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NUMERICAL INVESTIGATION OF IMPINGEMENT HEAT TRANSFER ON CONCAVE-AND CONVEX-DIMPLED PLATE WITH DIFFERENT DIMPLE ARRANGEMENTS

机译:凹形和凸形不同平板布置板上冲击传热的数值研究

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The present numerical study is conducted to investigate the flow and heat transfer characteristics for impingement cooling on concave or convex dimpled plate with four different dimple arrangements. The investigation of the impingement cooling on the flat plate is also conducted to serve as a contrast and these results are compared with experimental measurements to verify the computational method. Dimples studied here are placed, relative to impingement holes, in either spanwise shifted, in staggered, in in-line, or in streamwise shifted arrangements. The flow structure, pressure loss and heat transfer characteristics of the concave and convex dimpled plate of four different dimple arrangements have been obtained and compared with flat plate for the Reynolds number range of 15000 to 35000. The results show that compared with flat plate, the added concave or convex dimples only causes a negligible increase in the pressure loss, and the pressure loss is insensitive to concave or convex dimple arrangement patterns. In addition, compared with flat plate, both spanwise shifted and staggered concave dimple arrangements show better heat transfer performance, while in-line concave dimple arrangement show worse results. Besides that, the heat transfer performance for streamwise shifted concave dimple arrangement is the worst. Furthermore, compared with flat plate, all convex dimple arrangements studied here show better heat transfer performance.
机译:进行本数值研究以研究具有四个不同凹坑布置的凹或凸凹坑板上冲击冷却的流动和传热特性。还对平板上的冲击冷却进行了研究,以作为对比,并将这些结果与实验测量结果进行比较,以验证计算方法。相对于冲击孔,此处研究的凹坑可以沿翼展方向移位,交错,成一直线或沿流线方向移位的方式放置。得到了四种凹窝布置的凹凸板的流动结构,压力损失和传热特性,并将其与雷诺数为15000至35000的平板进行了比较。结果表明,与平板相比,添加的凹或凸凹痕只会导致压力损失的增加可忽略不计,并且压力损失对凹或凸凹痕布置图案不敏感。另外,与平板相比,沿展向移动和交错的凹窝结构都表现出更好的传热性能,而直列凹窝结构则表现出较差的传热性能。除此之外,沿流向移动的凹窝的布置的传热性能最差。此外,与平板相比,这里研究的所有凸凹窝布置都表现出更好的传热性能。

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