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Heat Transfer and Entropy Generation in Concentric/Eccentric Double-Pipe Helical Heat Exchangers

机译:同心/偏心双管螺旋换热器中的传热和熵生成

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摘要

Double-pipe helical heat exchangers are integral to contemporary mechanical refrigeration equipment. Modification of flow geometry has been widely adopted to enhance heat transfer performance of a heat exchanger. The objective of this study is to numerically investigate heat transfer and entropy generation in a double pipe helical heat exchanger with various cross-sections. A computational model for laminar convective heat transfer was developed and validated against the results from previously published literature. To capture entropy generation, the entropy balance equation for open system is adopted. Effect of inner pipe Dean number, inner pipe and annulus inlet mass flow rate ratio, eccentricity, and flow configuration (co-flow and counter-flow) were examined and discussed in light of computational results. To ensure fair comparison, the considered geometries have same inner pipe cross-section area, same annulus cross-section area, and same outer surface area of inner pipe. The results suggest that square cross-section offers best performance in term of heat transfer, pressure drop and entropy generation. In addition, concentric configuration is more appropriate for low flow rate application while eccentric outer configuration is more suitable for high flow rate application.
机译:双管螺旋热交换器是现代机械制冷设备的一体化。流动几何的改变已被广泛采用以增强热交换器的传热性能。本研究的目的是在具有各种横截面的双管螺旋热交换器中进行数值研究热传递和熵生物。制定了层流导热传热的计算模型并验证了先前发表文献的结果。为了捕获熵生成,采用了开放系统的熵平衡方程。内部管道院位数,内管和环形入口质量流量比,偏心和流动配置(循环和反流)的效果被检查并根据计算结果讨论。为了确保公平比较,所考虑的几何形状具有相同的内管横截面区域,相同的环形横截面区域,和内管的外表面区域。结果表明,方形横截面在传热,压降和熵生成期间提供最佳性能。另外,同心配置更适合于低流速应用,而偏心外部构造更适合高流速应用。

著录项

  • 来源
    《Heat Transfer Engineering》 |2020年第18期|1552-1575|共24页
  • 作者单位

    Department of Mechanical Engineering Universiti Teknologi PETRONAS Seri Iskandar Malaysia;

    Norman B. Keevil Mining Engineering Institute The University of British Columbia Vancouver Canada;

    Department of Mining and Materials Engineering McGill University Montreal Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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