首页> 外文期刊>International journal of hydrogen energy >Thermal analysis of Al2O3-water ethylene glycol mixture nanofluid for single PEM fuel cell cooling plate: An experimental study
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Thermal analysis of Al2O3-water ethylene glycol mixture nanofluid for single PEM fuel cell cooling plate: An experimental study

机译:单PEM燃料电池冷却板用Al2O3-水乙二醇混合纳米流体的热分析:实验研究

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摘要

Thermal enhancement through application of nanofluid coolant in a single cooling plate of Polymer Electrolyte Membrane (PEM) fuel cell was experimentally investigated and reported in this paper. The study focuses on 0.1 and 0.5% volume concentrations of Al2O3 dispersed in 60:40 and 50:50 of water (W)-ethylene glycol (EG) mixtures as coolant in a carbon graphite PEM fuel cell cooling plate. The study was conducted in a cooling plate with 22 parallel mini channels and large fluid distributors under constant heat load of 100 W. The effect of different flow rates to heat transfer enhancement and fluid flow in Reynolds number range of 20-120 was observed. Positive heat transfer enhancement was obtained where the heat transfer was improved up to 23% and 21% for 0.5% concentration Al2O3 nanofluid in 60:40 and 50:50 (W:EG) consecutively as compared to the base fluid. However, higher pressure drop was also experienced as much as 17% and 20% for 0.5% concentration Al2O3 in 60:40 and 50:50 (W:EG) consecutively as compared to the base fluid. Combination of both heat transfer enhancements and pressure drop demerits was then analyzed using advantage ratio. The results implied that 0.1% Al2O3 in 60:40 (W:EG) is the most advantageous nanofluid candidate followed by 0.1% Al2O3 in 50:50 (W:EG). Both nanofluids have advantage ratio values of greater than 1. Copyright (C) 2016, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文通过实验研究和报道了通过在聚合物电解质膜(PEM)燃料电池的单个冷却板中应用纳米流体冷却剂来提高热效率。该研究的重点是分散在碳石墨PEM燃料电池冷却板中作为冷却剂的60:40和50:50的水(W)-乙二醇(EG)混合物中分散的0.1%和0.5%的Al2O3体积浓度。该研究是在具有22个平行微型通道和大型流体分配器的冷却板上在100 W恒定热负荷下进行的。在20-120的雷诺数范围内,观察到不同流速对传热增强和流体流动的影响。与基础流体相比,获得了正的传热增强,其中对于浓度为0.5%的Al2O3纳米流体,在60:40和50:50(W:EG)中的传热分别提高了23%和21%。但是,与基础流体相比,对于浓度为0.5%的Al2O3,在60:40和50:50(W:EG)中也连续经历了更高的压降,分别高达17%和20%。然后使用优势比分析传热增强和压降缺点的组合。结果表明,最有利的纳米流体候选物是60:40(W:EG)中的0.1%Al2O3,其次是50:50(W:EG)中的0.1%Al2O3。两种纳米流体的优势比率值均大于1。版权所有(C)2016,Hydrogen Energy Publications,LLC。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2016年第9期|5096-5112|共17页
  • 作者单位

    Univ Teknol Mara, Fac Mech Engn, Shah Alam, Selangor, Malaysia;

    Univ Malaysia Pahang, Fac Mech Engn, Automot Engn Ctr, Pekan 26600, Pahang, Malaysia;

    Univ Teknol Mara, Fac Mech Engn, Shah Alam, Selangor, Malaysia;

    Univ Malaysia Pahang, Fac Mech Engn, Automot Engn Ctr, Pekan 26600, Pahang, Malaysia;

    King Fahd Univ Petr & Minerals, Ctr Res Excellence Renewable Energy, Dhahran 31261, Saudi Arabia;

    Univ Teknol Mara, Fac Mech Engn, Shah Alam, Selangor, Malaysia;

    Univ Teknol Mara, Fac Mech Engn, Shah Alam, Selangor, Malaysia;

  • 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
  • 关键词

    Nanofluid; PEM fuel cell; Heat transfer; Pumping power; Mini channel;

    机译:纳米流体;PEM燃料电池;传热;泵浦功率;小通道;

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