首页> 外文期刊>Heat Transfer Asian Research >Heat Transfer Enhancement of Turbulent Duct Flow by Vortex Generators Attached to a Large Eddy Break-Up Manipulator
【24h】

Heat Transfer Enhancement of Turbulent Duct Flow by Vortex Generators Attached to a Large Eddy Break-Up Manipulator

机译:涡旋发生器的涡流发生器传热增强,该涡发生器附接到大型涡流破碎操纵器上

获取原文
获取原文并翻译 | 示例
           

摘要

Department of Mechanical Engineering, Kyoto University, Japan An experimental study was conducted to investigate the characteristics of wall heat transfer and momentum loss for turbulent duct flow disturbed by insertion of a complicated body composed of a Large Eddy Break-Up (LEBU) plate and winglet- type vortex generators. It was found that the LEBU plate reduces the wall heat transfer in the region downstream of the insertion position and that this suppression of heat transfer could be recovered by attaching vortex generators to the LEBU plate, i.e., conspicuous heat transfer enhancement was achieved over a large streamwise distance. The spatial distribution of the heat transfer coefficient obtained shows the same features as that observed in a previous study of a flat plate turbulent boundary layer. Therefore, the flow and thermal field structure of the turbulent duct flow downstream of the inserted body should be basically the same as those in the same region of the turbulent boundary layer. The effect of a notch, open in the LEBU plate behind the vortex generator, on heat transfer and pressure drop was also examined. The notch simulates the hole of the LEBU plate to be produced in a practical application when a vortex generator is produced by punching from the original plain LEBU plate. It was found that a vortex generator with an open notch works best in augmenting the wall heat transfer and also in suppressing the increase of momentum loss.
机译:日本京都大学机械工程系进行了一项实验研究,以研究壁面传热和动量损失的特性,该动量损失是由于插入了由大涡流破碎(LEBU)板和小翼组成的复杂物体而扰动的湍流管道-型涡流发生器。发现LEBU板减少了插入位置下游区域的壁传热,并且通过将涡流发生器安装到LEBU板上可以回收这种对传热的抑制,即,在较大范围内实现了显着的传热增强。流向距离。获得的传热系数的空间分布显示出与先前对平板湍流边界层的研究中观察到的特征相同的特征。因此,插入体下游的湍流管道流的流场和热场结构应与湍流边界层相同区域中的流场和流场的基本相同。还检查了在涡流发生器后面的LEBU板上开口的缺口对传热和压降的影响。当通过从原始的普通LEBU板上冲孔产生涡流发生器时,该槽口模拟实际应用中要制造的LEBU板的孔。已经发现,具有开口凹口的涡流发生器在增加壁的热传递以及抑制动量损失的增加方面效果最好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号