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Measuring Transport Coefficients in Heterogeneous and Hierarchical Heat Transfer Devices

机译:测量非均质和分级传热设备中的传输系数

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摘要

Experimental determination of transport coefficients, in particular internal heat transfer coefficients, in heterogeneous and hierarchical heat transfer devices such as compact heat exchangers and high surface density heat sinks has posed a persistent challenge for designers. This study presents a unique treatment of the experimental determination of such design data. A new combined experimental and computational method for determining the internal heat transfer coefficient within a heterogeneous and hierarchical heat transfer medium is explored and results are obtained for the case of cross flow of air over staggered cylinders to provide validation of the method. Along with appropriate pressure drop measurements, these measurements allow for thermal-fluid modeling of a heat exchanger by closing the volume averaging theory (VAT)-based equations governing transport phenomena in porous media, which have been rigorously derived from the lower-scale Navier-Stokes and thermal energy equations. To experimentally obtain the internal heat transfer coefficient the solid phase is subjected to a step change in heat generation rate via induction heating, while the fluid flows through under steady flow conditions. The transient fluid phase temperature response is measured. The heat transfer coefficient is then determined by comparing the results of a numerical simulation based on the VAT model with the experimental results. The friction factor is determined through pressure drop measurements, as is usually done. With the lower-scale heat transfer coefficient and friction factor measured, the VAT-based equations governing the transport phenomena in the heat transfer device are closed and readily solved. Several configurations of staggered cylinders in cross flow were selected for this study. Results for the heat transfer coefficient and friction factor are compared to widely accepted correlations and agreement is observed, lending validation to this experimental method and analysis procedure. It is expected that a more convenient and accurate tool for experimental closure of the VAT-based equations modeling transport in heterogeneous and hierarchical media, which comes down to measuring the transport coefficients, will allow for easier modeling and subsequent optimization of high performance compact heat exchangers and heat sinks for which design data does not already exist.
机译:在诸如紧凑型热交换器和高表面密度散热器的非均质和分级传热装置中,实验确定传输系数,特别是内部传热系数,对设计人员提出了持续的挑战。这项研究提出了对此类设计数据进行实验确定的独特方法。探索了一种新的实验和计算相结合的新方法,用于确定异质和分层传热介质中的内部传热系数,并获得了交错气缸上空气交叉流动的结果,以验证该方法的有效性。除了适当的压降测量值外,这些测量值还可以通过闭合基于体积平均理论(VAT)的方程式来控制热交换器的热流体模型,该方程式控制着多孔介质中的传输现象,这些方程式是严格根据较低规模的Navier-斯托克斯和热能方程式。为了通过实验获得内部传热系数,固相通过感应加热使热量产生速率发生阶跃变化,而流体则在稳定的流动条件下流过。测量了瞬态液相温度响应。然后,通过将基于VAT模型的数值模拟结果与实验结果进行比较,确定传热系数。通常通过压降测量来确定摩擦系数。在测量了较小尺度的传热系数和摩擦系数的情况下,控制传热装置中传热现象的基于VAT的方程式被封闭并易于求解。本研究选择了错流错列圆柱体的几种配置。将传热系数和摩擦因数的结果与广泛接受的相关性进行比较,并观察到一致性,从而对该实验方法和分析程序进行了验证。预计将有一个更方便,更准确的工具用于实验结束基于VAT的方程式在异质和分层介质中的迁移建模,这取决于测量迁移系数,这将使高性能紧凑型热交换器的建模和后续优化更加容易和尚无设计数据的散热器。

著录项

  • 来源
    《Journal of Heat Transfer》 |2013年第6期|061101.1-061101.9|共9页
  • 作者单位

    Transfer Memorial Laboratory,School of Engineeringand Applied Science,Department of Mechanicaland Aerospace Engineering,University of California, Los Angeles,48-121 Engineering IV,420 Westwood Plaza,Los Angeles, CA 90095-1597;

    Transfer Memorial Laboratory,School of Engineeringand Applied Science,Department of Mechanicaland Aerospace Engineering,University of California, Los Angeles,48-121 Engineering IV,420 Westwood Plaza,Los Angeles, CA 90095-1597;

    Transfer Memorial Laboratory,School of Engineeringand Applied Science,Department of Mechanicaland Aerospace Engineering,University of California, Los Angeles,48-121 Engineering IV,420 Westwood Plaza,Los Angeles, CA 90095-1597;

    Transfer Memorial Laboratory,School of Engineeringand Applied Science,Department of Mechanicaland Aerospace Engineering,University of California, Los Angeles,48-121 Engineering IV,420 Westwood Plaza,Los Angeles, CA 90095-1597;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    volume averaging theory; experimental closure; compact heat exchangers; heat sinks; design data; heat transfer coefficient; friction factor; staggered cylinders; tube banks; pin fins;

    机译:体积平均理论;实验性关闭;紧凑型热交换器;散热片;设计数据;传热系数摩擦系数交错的圆柱体;管束;脚鳍;
  • 入库时间 2022-08-18 00:23:53

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