首页> 外文学位 >Heat transfer and discharge coefficient effects of jet impingement on a surface with hemispherical and teardrop shaped bumps.
【24h】

Heat transfer and discharge coefficient effects of jet impingement on a surface with hemispherical and teardrop shaped bumps.

机译:喷射撞击在具有半球形和泪珠状凸起的表面上的传热和排放系数效应。

获取原文
获取原文并翻译 | 示例

摘要

Jet impingement is among the most effective methods of enhancing heat transfer in practical applications, enabling high heat transfer coefficients without the high pressure losses associated with flow through turbulated channels. The gas turbine industry is interested in combining jet impingement with dimpled and bumped plates as a method of improving heat transfer, enabling greater efficiency. This study investigates the average effects on heat transfer and discharge coefficients (Cd) created by arrays of jets impinging on target surfaces with hemispherical or teardrop shaped bumps using heated copper plates with embedded thermocouples. Reynolds number (Re) ranged from 5000 to 20,000 and 5000 to 26,000 for heat transfer and Cd tests, respectively, for all configurations. The jet pitch-to-diameter ratio x/d ranged between 3.3 and 12 and the jet exit-to-target-plate spacing ratio (z/d) ranged from 2 to 5 for all configurations. Additional Re and z/d values were tested for various configurations in order to fully quantify trends. The effects of spent air discharging in multiple directions was also analyzed. Depending on configuration, impinging on the bumped plates produced minor increases, no change, or a reduction in heat transfer compared to the baseline smooth plate depending on configuration. However, when accounting for the increase in surface area associated with the bumped plates, heat transfer was universally improved. Heat transfer was found to be quadratically related to Re and z/d and exponentially related to x/d. Spent air flow had minimal effect on heat transfer except for the x/d=12 configuration. Discharge coefficients were found to be either unaffected or only marginally affected by plate geometry. Cd was found to be independent of z/d for z/d greater than or equal to 2. Although Re and x/d have an effect on Cd, there is no clear relationship between these parameters. Overall, a jet array with x/d=6.6 and z/d=5 impinging directly on every other bump of the hemispherical target plate produced the greatest improvement in heat transfer over the baseline smooth plate, but at the expense of slightly lower Cd values. Overall, jet impingement on bumped surfaces provides an improvement in heat transfer with a small decrease in Cd.
机译:射流撞击是在实际应用中增强传热的最有效方法之一,可实现高传热系数,而不会产生与通过湍流通道的流动相关的高压损失。燃气轮机行业对将射流冲击与凹坑和凸块板结合起来作为改进传热,提高效率的方法感兴趣。这项研究调查了使用内置热电偶的加热铜板,通过喷射流的阵列撞击半球形或泪滴形凸点对目标表面产生的传热和排放系数(Cd)的平均影响。对于所有配置,传热和Cd测试的雷诺数(Re)分别为5000至20,000和5000至26,000。对于所有配置,射流的直径与直径之比x / d在3.3至12之间,射流的出口与目标板的间距比(z / d)在2至5之间。测试了各种配置的其他Re和z / d值,以便完全量化趋势。还分析了沿多个方向排放废空气的影响。取决于配置,与基线平滑板(取决于配置)相比,撞击在碰撞板上产生的热量增加很小,没有变化或传热减少。然而,当考虑到与凸块板相关的表面积增加时,普遍改善了热传递。发现传热与Re和z / d呈二次关系,与x / d呈指数关系。除了x / d = 12的配置外,剩余的气流对传热的影响很小。发现放电系数不受板几何形状的影响或仅受到板几何形状的轻微影响。对于大于或等于2的z / d,发现Cd独立于z / d。尽管Re和x / d对Cd有影响,但是这些参数之间没有明确的关系。总体而言,x / d = 6.6和z / d = 5的射流阵列直接撞击到半球形靶板的每个其他凸块上,在传热方面比基线光滑板有最大的改善,但其代价是Cd值略低。总的来说,喷射撞击在凸起的表面上可改善传热效果,而Cd的降低很小。

著录项

  • 作者

    McKanas, Steven A.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Mechanical engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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