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Effect of Experimental Method on the Heat Transfer Performance of Supercritical Carbon Dioxide in Microchannel

机译:实验方法对超临界二氧化碳在微通道中传热性能的影响

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摘要

This paper provides an experimental investigation of heat transfer and pressure drop of supercritical carbon dioxide cooling in a microchannel heat exchanger. An extruded flat aluminum tube with 37 parallel channels and each channel of 0.5 mm × 0.5 mm cross section was used as the test section. The temperature drops of supercritical CO2 cooled inside the test section were controlled at 2 °C, 4 °C, and 8 °C separately for each test to investigate the effect of property change on the friction and heat transfer performance at various temperature cooling ranges near the critical point. The test results showed that while the test conditions were away from the critical point, both heat transfer and pressure drop performance agreed very well with those predicted by conventional correlations. However, for the test conditions near the critical point, the difference between those of the test results and the predicted values is very high. Both heat transfer and pressure drop were strongly affected by the ranges of temperature cooling in the test section while they were near the critical conditions. Since there is a drastic peak of the property change near the critical point, if we use the properties integrated but not averaged from inlet to the exit temperatures, we obtain the results that agree well with the values predicted by conventional correlations. The heat transfer and pressure drop performance of supercritical carbon dioxide in microchannels with size near 0.5 mm are indeed similar to these at normal conditions if its properties are appropriately evaluated.
机译:本文提供了在微通道换热器中超临界二氧化碳冷却的传热和压降实验研究。将具有37个平行通道且每个通道横截面为0.5 mm×0.5 mm的挤压扁平铝管用作测试部分。在每次测试中,分别将测试区域内冷却的超临界CO2的温度降分别控制在2°C,4°C和8°C,以研究性能变化对接近温度的各种温度冷却范围内的摩擦和传热性能的影响。关键点。测试结果表明,尽管测试条件远离临界点,但传热和压降性能与常规相关性预测的结果非常吻合。但是,对于接近临界点的测试条件,测试结果与预测值之间的差异非常大。当接近临界条件时,测试部分的温度冷却范围会严重影响传热和压降。由于在临界点附近存在一个急剧的特性变化峰值,因此,如果使用积分的特性,但未对入口温度与出口温度进行平均,则我们获得的结果与常规相关性预测的值非常吻合。如果适当评估其性能,超临界二氧化碳在尺寸接近0.5毫米的微通道中的传热和压降性能确实与正常条件下的相似。

著录项

  • 来源
    《Journal of Heat Transfer》 |2017年第11期|112404.1-112404.7|共7页
  • 作者

    Yang Chienyuh; Liao Kunchieh;

  • 作者单位

    Department of Mechanical Engineering, Institute of Energy Engineering, National Central University, Jhong-Li, Taoyuan, Taiwan;

    Department of Mechanical Engineering, Institute of Energy Engineering, National Central University, Jhong-Li, Taoyuan, Taiwan;

  • 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

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