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INTERFEROMETRIC STUDY OF NATURAL CONVECTION HEAT TRANSFER FROM A VERTICAL FLAT PLATE WITH TRANSVERSE ROUGHNESS ELEMENTS.

机译:横向平整度垂直平板的自然对流传热的干涉法研究。

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摘要

The study of natural convection heat transfer is of significance in several areas of technology. Natural convection represents a limit on the heat transfer rate and this becomes a very important consideration for situations in which other modes are either not possible or not practical. Natural convection from vertical surfaces with some sort of large-scale surface roughness elements is encountered in many technological applications. Of particular interest is the dissipation of heat from electronic circuits, where component performance and reliability are strongly dependent on operating temperature. Natural convection is an inherently reliable cooling process. Circuit boards represent a naturally enhanced free convection situation. In other applications, it may be necessary to enhance the surface to achieve the desired temperature level.;Several different types of surfaces were studied--namely, repeated ribbed, stepped, and sinusoidal surfaces. The effects of parameters such as protuberance height-to-spacing ratios, amplitude of spacing, conductivity of ribs, leading edge geometry, and angle of inclination were studied.;It was found that heat transfer enhancement was possible in laminar natural convection using transverse roughness elements with proper sizing and shape selection. The heat transfer from the ribbed surfaces was found to be less than that from a plane flat plate of equal projected area. It was found that stepped surfaces could be used to improve the heat transfer performance relative to a plane flat plate of equal projected area. The study indicated the presence of an optimum step-pitch-to-height ratio. The performance of sinusoidal surfaces was not significantly different from that of a plane flat plate of equal projected area at low amplitude-to-wavelength ratios. The heat transfer performance decreased as the amplitude-to-wavelength ratio increased. The study also showed that roughness elements induced an early transition to turbulent flow.;The present research was undertaken to provide information on the nature of heat transfer from rough surfaces. An interferometric technique was used to experimentally measure local heat transfer coefficients. This method is essentially non-intrusive and therefore extremely suitable for the study of low-flux phenomena such as natural convection.
机译:自然对流换热的研究在若干技术领域中具有重要意义。自然对流代表了传热速率的限制,这对于不可能或不可行其他模式的情况成为非常重要的考虑因素。在许多技术应用中都会遇到带有某种大规模表面粗糙度元素的垂直表面的自然对流。特别令人感兴趣的是电子电路的散热,其中元件的性能和可靠性在很大程度上取决于工作温度。自然对流是固有的可靠冷却过程。电路板代表自然增强的自由对流情况。在其他应用中,可能有必要对表面进行增强以达到所需的温度水平。研究了几种不同类型的表面-即重复的肋状,阶梯状和正弦形表面。研究了突起的高宽比,间距的幅度,肋的电导率,前缘的几何形状和倾斜角度等参数的影响;发现在使用横向粗糙度的层流自然对流中可以提高传热具有适当大小和形状选择的元素。发现从肋状表面传热要小于投影面积相等的平面平板传热。已经发现,相对于相等投影面积的平面平板,阶梯状表面可用于改善传热性能。研究表明存在最佳的步距与高度之比。在低振幅/波长比下,正弦表面的性能与投影面积相等的平面平板的性能没有显着差异。传热性能随振幅/波长比的增加而降低。这项研究还表明,粗糙元素会导致向湍流的早期过渡。本研究旨在提供有关粗糙表面传热性质的信息。干涉技术被用于实验测量局部传热系数。这种方法本质上是非侵入性的,因此非常适合研究低通量现象(例如自然对流)。

著录项

  • 作者

    BHAVNANI, SUSHIL HIROO.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:01

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