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Study of Cross-flow Cooling Effects in a Stirling Engine Heat Exchanger.

机译:斯特林发动机热交换器中横流冷却效果的研究。

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摘要

While much effort in Stirling engine development is placed on making the high-temperature region of the Stirling engine warmer, this research explores methods to lower the temperature of the cold region by improving heat transfer in the cooler.;This paper presents heat transfer coefficients obtained for a Stirling engine heat exchanger with oscillatory flow. The effects of oscillating frequency and input heat rate on the heat transfer coefficients are evaluated and details on the design and development of the heat exchanger test apparatus are also explained.;Featured results include the relationship between overall heat transfer coefficients and oscillation frequency which increase from 21.5 to 46.1 Wm -2K-1 as the oscillation frequency increases from 6.0 to 19.3 Hz. A correlation for the Nusselt number on the inside of the heat exchange tubes in oscillatory flow is presented in a concise, dimensionless form in terms of the kinetic Reynolds number as a result of a statistical analysis. The test apparatus design is proven to be successful throughout its implementation due to the usefulness of data and clear trends observed.;The author is not aware of any other publicly-available research on a Stirling engine cooler to the extent presented in this paper. Therefore, the present results are analyzed on a part-by-part basis and compared to segments of other research; however, strong correlations with data from other studies are not expected.;The data presented in this paper are part of a continuing effort to better understand heat transfer properties in Stirling engines as well as other oscillating flow applications.
机译:尽管在斯特林发动机的开发上付出了很多努力,以使斯特林发动机的高温区域变暖,但本研究探索了通过改善冷却器中的传热来降低寒冷区域温度的方法。用于具有振荡流的斯特林发动机热交换器。评估了振荡频率和输入热量对传热系数的影响,并详细说明了换热器测试设备的设计和开发。特色结果包括总传热系数与振荡频率之间的关系,从振荡频率从6.0增至19.3 Hz时为21.5至46.1 Wm -2K-1。统计分析的结果,以动力学雷诺数的形式以简洁,无量纲的形式呈现了振荡流中换热管内的努塞尔数的相关性。由于数据的有用性和观察到的明显趋势,该测试设备的设计在整个实施过程中都被证明是成功的。作者在本文所介绍的范围内,没有意识到任何其他公开的斯特林发动机冷却器研究。因此,目前的结果是逐部分分析的,并与其他研究的各个部分进行了比较;但是,与其他研究的数据之间没有强相关性。本文中提供的数据是不断努力的一部分,目的是更好地了解斯特林发动机以及其他振荡流应用中的传热特性。

著录项

  • 作者

    Eppard, Erin.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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