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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Fluid flow and convective heat transfer of combined swirling and straight impinging jet arrays
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Fluid flow and convective heat transfer of combined swirling and straight impinging jet arrays

机译:涡流和直冲射流组合的流体流动和对流传热

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Impinging swirling jets generate interesting flow fields. In this paper, the flow and heat transfer characteristics of a staggered combination of straight and swirling jets are reported in order to access flow details and to show complex flow structures as well as the strong coupling between the feeding and the exhaust phases experienced by the cooling air. Herein, numerical and experimental study are conducted for a given jet-to-jet distance s/D = 5 and nozzle-to-plate distance of HID = 4 to allow for the understanding of the thermo-fluid dynamic of multiple jets with swirl. The jets were arranged as a staggered array. The swirling jet assembly consists of a blade-type swirl generator. The different blade orientations give jets with different swirl intensities. Results obtained with swirling impinging jets are compared with those obtained with a circularimpinging jets in the same testing conditions. They supply information on the behavior of the resulting flow field. The flow patterns on an impinged surface are also visualized using oil film technique. Both the numerical and experimental analysis shows the cell topology and the resulting fountain flow at the impingement. It is found that every jet possesses an independent cooling area on the impingement plate. The dependence of heat transfer rate and uniformity on the swirl is also explained. In particular, this study shows that the swirl motion can affect mixing at a short distance from the nozzles exit but it rapidly loses its intensity which limits the contribution to wall interference. (C) 2014 Elsevier Ltd. All rights reserved.
机译:撞击的旋流产生有趣的流场。在本文中,报告了直射流和旋流射流交错组合的流动和传热特性,以便获得流动细节并显示复杂的流动结构以及冷却过程中进料和排气相之间的强耦合。空气。在此,对给定的喷射距离s / D = 5和HID = 4的喷嘴到平板距离进行了数值和实验研究,以了解具有旋流的多个喷射流的热流体动力学。喷嘴排列成交错排列。旋流喷嘴组件由叶片式旋流发生器组成。不同的叶片方向使射流具有不同的旋流强度。在相同的测试条件下,将旋流射流获得的结果与圆弧射流获得的结果进行比较。它们提供有关最终流场行为的信息。使用油膜技术还可以看到被撞击表面上的流动模式。数值分析和实验分析均显示了单元的拓扑结构以及在碰撞时产生的喷泉流。发现每个射流在冲击板上都具有独立的冷却区域。还说明了传热速率和均匀性对涡旋的依赖性。特别是,这项研究表明,涡旋运动会影响到距喷嘴出口很短距离的混合,但是旋涡运动会迅速失去强度,从而限制了对壁干扰的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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