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An experimental and numerical investigation of mixed convection in channels and the application of extended surfaces for heat transfer enhancement.

机译:通道内混合对流的实验和数值研究,以及扩展表面在强化传热中的应用。

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摘要

Experiments were performed to determine secondary flow development and Nusselt number distributions for laminar mixed convection in the thermal entry region of a parallel plate channel heated uniformly from below. Flow visualization showed the onset of secondary flow on the heater surface and revealed the developing longitudinal plumes and vortices. Longitudinal distributions of the local Nusselt number initially followed forced convection. Subsequent mixing associated with the development of secondary flow caused Nusselt numbers to rise to an initial maximum before decreasing slightly and assuming a fully developed value. Simultaneous flow visualization and heat transfer measurements showed that noticeable secondary flow development preceeded any appreciable increase in heat transfer. Data were scaled with z;Additional computations were performed to investigate fully developed laminar mixed convection in a channel with longitudinal fins. In general, the effect of the additional surface area was largely offset by a reduction in the strength of the buoyancy-driven secondary flow, resulting in only a modest increase in performance. Experiments for fully developed flow between a heated isothermal bottom plate and a cooled upper plate were also performed. Fins mounted on the bottom surface greatly increased heat transfer for forced convection, but had a much smaller effect on fully developed mixed convection. In some instances, the fins reduced heat transfer.;Further experiments concentrated on measuring and enhancing heat transfer from a heated upper surface, which is largely unaffected by mixed convection. Perforated ribs mounted on the top surface effectively enhanced heat transfer, while vortex generators had only a slight effect beyond that of mixed convection alone. This smaller effect was attributed to the correspondence between the flow driven by the vortex generators and the buoyancy driven vortices.
机译:进行实验以确定从下方均匀加热的平行板通道的热入口区域中层流混合对流的二次流发展和Nusselt数分布。流动可视化显示了加热器表面二次流的开始,并揭示了正在发展的纵向羽状流和涡流。局部对流努塞尔特数的纵向分布最初是在强制对流之后进行的。随后与二次流发展相关的混合导致Nusselt数上升到初始最大值,然后略微下降并假定为完全发展的值。同时进行的流动可视化和传热测量表明,明显的二次流发展先于传热显着增加。数据按z缩放;进行了其他计算,以研究具有纵向鳍片的通道中充分发展的层流混合对流。通常,增加浮力驱动的二次流的强度会大大抵消额外表面积的影响,从而仅会适度提高性能。还进行了在加热的等温底板和冷却的上板之间完全展开的流动的实验。安装在底面上的散热片大大增加了强制对流的热传递,但对充分发展的混合对流的影响却小得多。在某些情况下,翅片减少了热传递。进一步的实验集中在测量和增强从加热的上表面的热传递上,该表面在很大程度上不受混合对流的影响。安装在顶面上的多孔肋有效地增强了热传递,而涡旋发生器仅比混合对流产生的影响更小。这种较小的影响归因于涡流发生器驱动的流与浮力驱动的涡流之间的对应关系。

著录项

  • 作者

    Maughan, James R.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 374 p.
  • 总页数 374
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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