首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Heat transfer and pressure drop correlations of microchannel heat exchangers with S-shaped and zigzag fins for carbon dioxide cycles
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Heat transfer and pressure drop correlations of microchannel heat exchangers with S-shaped and zigzag fins for carbon dioxide cycles

机译:S型翅片和曲折翅片的微通道热交换器在二氧化碳循环中的传热和压降相关性

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A new microchannel heat exchanger (NICHE) with S-shaped fins was developed using the three-dimensional computational fluid dynamics (3D CFD) FLUENT code. The MCHE provided 6 - 7 times lower pressure drop while maintaining heat-transfer performance that was almost equivalent to that of a conventional MCHE with zigzag fins. This study was done to confirm the simulation results of thermal-hydraulic performance using a supercritical carbon dioxide loop, and to propose empirical correlations of Nusselt numbers and pressure-drop factors for a new MCHE with S-shaped fins and a conventional one with zigzag fins. This study is also intended to confirm the independence of Pr obtained in the previous study by widely varying Pr from 0.75 to 2.2. Experimental results show that the pressure-drop factor of the MCHE with S-shaped fins is 4 - 5 times less than that of MCHE with zigzag fins, although Nu is 24 - 34% less, depending on the Re within its range. The Nusselt number correlations are expressed, respectively as Nu(S-shaped fins)=0.1740 Re-0.593 Pr-0.430 and Nu(zigzag fins)=0.1696 Re-0.629 Pr-0.317 for the MCHEs with S-shaped and zigzag fins, and their pressure-drop factors are given as f(S-shaped fins)=0.4545 Re-0.340 and f(zigzag fins)=0.1924 Re-0.091. The Nu correlation of the MCHE with S-shaped fins reproduces the experimental data of overall heat transfer coefficients with a standard deviation (1 sigma) of +/- 2.3%, although it is +/- 3.0% for the MCHE with zigzag fins. The calculated pressure drops obtained from pressure-drop factor correlations agree with the experimental data within a standard deviation of +/- 16.6% and +/- 13.5% for the MCHEs with S-shaped and zigzag fins, respectively. (c) 2007 Elsevier Inc. All rights reserved.
机译:使用三维计算流体动力学(3D CFD)FLUENT代码开发了一种带有S形翅片的新型微通道换热器(NICHE)。 MCHE的压降降低了6-7倍,同时保持了几乎与带锯齿形翅片的传统MCHE相同的传热性能。这项研究是为了证实使用超临界二氧化碳回路进行热工水力性能的模拟结果,并提出了新型S型鳍片MCHE和传统的曲折鳍片MCHE的Nusselt数与压降因子的经验相关性。 。这项研究还旨在通过将Pr从0.75大幅变化到2.2来确认先前研究中获得的Pr的独立性。实验结果表明,S型翅片的MCHE的压降系数比之字形翅片的MCHE的压降系数小4-5倍,尽管根据其Re的不同,Nu减小了24-34%。对于具有S形和锯齿形鳍片的MCHE,Nusselt数相关性分别表示为Nu(S形鳍片)= 0.1740 Re-0.593 Pr-0.430和Nu(锯齿形鳍片)= 0.1696 Re-0.629 Pr-0.317它们的压降系数为f(S形鳍)= 0.4545 Re-0.340和f(Z字形鳍)= 0.1924 Re-0.091。具有S形鳍片的MCHE的Nu相关性可再现整体传热系数的实验数据,标准偏差(1 sigma)为+/- 2.3%,而带有锯齿形鳍片的MCHE为+/- 3.0%。从压降因子相关性获得的计算压降与实验数据相符,分别为带有S形和锯齿形鳍片的MCHE的标准偏差为+/- 16.6%和+/- 13.5%。 (c)2007 Elsevier Inc.保留所有权利。

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