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Experimental Study on Heat Transfer and Pressure Drop of Recuperative Heat Exchangers Using Carbon Foam

机译:碳泡沫换热换热器传热与压降实验研究

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摘要

This work focuses on the development of high-effectiveness recuperative heat exchangers using solid and corrugated carbon foam blocks. Characterization tests were conducted on heat transfer and pressure drop for a single carbon foam block with different sizes. Results show that carbon foam can be an effective medium for heat transfer enhancement, and a short length in the flow direction yields a high heat transfer coefficient. The corrugation can enhance heat transfer and reduce pressure drop at the same time. A recuperative heat exchanger with carbon foam, which consists of separate blocks of carbon foams packed between thin sheets of stainless steel, was designed. The hot and cold flow paths were arranged in counterflow in the recuperator. The heat exchanger was designed in a modular manner so that it can be scaled up for a larger heat transfer requirement or a higher overall effectiveness. The anisotropic property of carbon foam was exploited to achieve higher effectiveness for one pair of foam blocks. Experiments with four pairs of carbon foams were conducted to evaluate the performance of carbon foam used in the recuperative heat exchanger. Measurements were made for both solid and corrugated foams for comparison. With four pairs of carbon foam blocks, an overall effectiveness ε_(total) greater than 80% was achieved. This paper demonstrates an approach to reach an effectiveness ε_(total) of 98% by placing many pairs of carbon foams in series.
机译:这项工作着重于开发使用固态和波纹碳泡沫块的高效换热热交换器。对具有不同尺寸的单个碳泡沫块进行了传热和压降的表征测试。结果表明,碳泡沫可以作为增强传热的有效介质,并且在流动方向上较短的长度会产生较高的传热系数。波纹可以同时增强热传递并减少压降。设计了一种碳泡沫换热器,它由填充在不锈钢薄板之间的碳泡沫分开的块组成。热流路径和冷流路径在换热器中逆流排列。换热器采用模块化设计,因此可以按比例放大,以满足更大的传热要求或更高的整体效率。利用碳泡沫的各向异性特性来获得一对泡沫块的更高有效性。进行了四对碳泡沫的实验,以评估换热热交换器中使用的碳泡沫的性能。对固体泡沫和瓦楞泡沫均进行了测量以进行比较。使用四对碳泡沫块,可获得总效率ε_(总计)大于80%。本文演示了一种通过串联放置多对碳泡沫来使效率ε_(总)达到98%的方法。

著录项

  • 来源
    《Journal of Heat Transfer》 |2010年第9期|P.113-122|共10页
  • 作者单位

    Department of Mechanical, Materials and Aerospace Engineering,University of Central Florida,Orlando, FL 32816-2450;

    rnDepartment of Mechanical, Materials and Aerospace Engineering,University of Central Florida,Orlando, FL 32816-2450;

    rnDepartment of Mechanical, Materials and Aerospace Engineering,University of Central Florida,Orlando, FL 32816-2450;

    rnDepartment of Mechanical, Materials and Aerospace Engineering,University of Central Florida,Orlando, FL 32816-2450;

    rnCryogenic Test Laboratory,Kennedy Space Center,Titusville, FL 32899;

  • 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; recuperators; cryogenics;

    机译:传播热量;换热器;低温;

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