首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >A Study of Heat Transfer Augmentation for Recuperative Heat Exchangers: Comparison Between Three Dimple Geometries
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A Study of Heat Transfer Augmentation for Recuperative Heat Exchangers: Comparison Between Three Dimple Geometries

机译:换热器换热强化研究:三种酒窝几何形状的比较

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This study presents an investigation of the heat transfer augmentation for the purpose of obtaining high effectiveness recuperative heat exchangers for waste heat recovery. The focus of the present work is in the fully developed portion of a 2:1 aspect ratio rectangular channel characterized by dimples applied to one wall at channel Reynolds numbers of 10,000, 18,000, 28,000, and 36,000. The dimples are applied in a staggered-row, racetrack configuration. In this study, a segmented copper test section was embedded with insulated dimples in order to isolate the heat transfer within the dimpled feature. The insulated material used to create a dimpled geometry isolates the heat transfer within the dimple cavity from the heat transfer augmentation on the surrounding smooth walls promoted by the flow disturbances induced by the dimple. Results for three different geometries are presented, a small dimple feature, a large dimple, and a double dimple. The results of this study indicate that there is significant heat transfer augmentation even on the nonfeatured portion of the channel wall resulting from the secondary flows created by the features. Overall heat transfer augmentations for the small dimples are between 13-27%, large dimples between 33-54%, and double dimples between 22-39%, with the highest heat transfer augmentation at the lowest Reynolds number for all three dimple geometries tested. Heat transfer within the dimple was shown to be less than that of the surrounding flat regions at low Reynolds numbers. Results for each dimple geometry show that dimples are capable of promoting heat transfer over the entire bottom wall surface as well as the side walls; thus the effects are not confined to within the dimple cavity.
机译:这项研究提出了一种对换热增加的研究,目的是为了获得用于废热回收的高效换热热交换器。当前工作的重点是长宽比为2:1的矩形通道的充分展开的部分,其特征在于在通道雷诺数为10,000、18,000、28,000和36,000的一个壁上施加了凹痕。酒窝以交错的行,赛道配置应用。在这项研究中,分段的铜测试部分嵌入了绝缘的凹坑,以隔离凹陷特征内的热传递。用于产生凹坑几何形状的绝缘材料将酒窝腔内的传热与酒窝引起的流动扰动促进的周围光滑壁上的传热增加隔离开来。给出了三种不同几何形状的结果:一个小凹痕特征,一个大凹痕和一个双凹痕。这项研究的结果表明,即使由于特征产生的二次流动而导致通道壁的非特征部分也存在明显的传热增加。小酒窝的总传热增强在13%至27%之间,大酒窝在33%至54%之间,双酒窝在22%至39%之间,对于所有测试的三个酒窝几何形状,传热增强最高,雷诺数最低。在低雷诺数下,酒窝内的传热小于周围平坦区域的传热。每个凹痕几何形状的结果表明,凹痕能够促进整个底壁表面以及侧壁上的热传递。因此,效果不仅仅局限于酒窝腔内。

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