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Heat Transfer Investigation of Air Flow in Microtubes—Part I:Effects of Heat Loss, Viscous Heating, and Axial Conduction

机译:微管中空气流的传热研究—第一部分:热损失,粘性加热和轴向传导的影响

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摘要

Experiments were conducted to investigate local heat transfer coefficients and flow characteristics of airflow in a 962 μm inner diameter stainless steel microtube (minichannel). The effects of heat loss, axial heat conduction and viscous heating were systematically analyzed. Heat losses during the experiments with gas flow in small diameter tubes vary considerably along the flow length, causing the uncertainties to be very large in the downstream region. Axial heat conduction was found to have a significant effect on heat transfer at low Re. Viscous heating was negligible at low Re, but the effect was found to be significant at higher Re. After accounting for varying heat losses, viscous heating and axial conduction, Nu was found to agree very well with the predictions from conventional heat transfer correlations both in laminar and turbulent flow regions. No early transition to turbulent flow was found in the present study.
机译:进行实验以研究962微米内径不锈钢微管(微型通道)中的局部传热系数和气流的流动特性。系统分析了热损失,轴向导热和粘性加热的影响。在小直径管中进行气体流动的实验过程中,热损失沿流动长度变化很大,导致下游区域的不确定性非常大。发现轴向热传导在低Re下对传热有显着影响。在低Re下,粘性加热可忽略不计,但在高Re下发现效果显着。在考虑了变化的热损失,粘性加热和轴向传导之后,发现Nu与层流和湍流区域中常规传热相关性的预测非常吻合。在本研究中未发现早期向湍流过渡。

著录项

  • 来源
    《Journal of Heat Transfer》 |2013年第3期|031703.1-031703.9|共9页
  • 作者单位

    Thermal Analysis, Microfluidics,and Fuel Cell Laboratory,Department of Mechanical Engineering,Rochester Institute of Technology,76 Lomb Memorial Drive,Rochester, NY 14623;

    Thermal Analysis, Microfluidics,and Fuel Cell Laboratory,Department of Mechanical Engineering,Rochester Institute of Technology,76 Lomb Memorial Drive,Rochester, NY 14623;

  • 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

    heat transfer coefficient; microtube; heat loss; axial heat conduction; viscous heating; minichannel;

    机译:传热系数微管热损失;轴向导热;粘性加热;小频道;

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