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Experimental Investigation of Al2O3 - Water Ethylene Glycol Mixture Nanofluid Thermal Behaviour in a Single Cooling Plate for PEM Fuel Cell Application

机译:PEM燃料电池单冷却板中Al2O3-水-乙二醇混合物纳米流体热行为的实验研究。

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摘要

Thermal enhancement through application of nanofluid coolant in a single cooling plate of Proton Exchange Membrane (PEM) fuel cell was experimentally investigated in this paper. The study focuses on low concentration of Al2O3 dispersed in Water - Ethylene Glycol mixtures as coolant in a carbon graphite PEM fuel cell cooling plate. The study was conducted in a cooling plate size of 220 mm x 300 mm with 22 parallel mini channels and large fluid distributors. The mini channel dimensions are 100 mm x 1 mm x 5 mm. A constant heat load of 100W was applied by a heater pad that represents the artificial heat load of a single cell. Al2O3 nanoparticle used was 0.1 and 0.5 vol % concentration which was then dispersed in 50:50 (water: Ethylene Glycol) mixture. The effect of different flow rates to heat transfer enhancement and fluid flow represented in Re number range of 20 to 120 was observed. Heat transfer was improved up to 13.87% for 0.5 vol % Al2O3 as compared to the base fluid. However the pressure drop also increase which result in pumping power increment up to 0.02W. The positive thermal results implied that Al2O3 nanofluid is a potential candidate for future applications in PEM fuel cell thermal management.
机译:本文通过实验研究了通过在质子交换膜(PEM)燃料电池的单个冷却板上应用纳米流体冷却剂来增强热量。该研究的重点是将低浓度的Al2O3分散在碳-石墨PEM燃料电池冷却板中作为冷却剂的水-乙二醇混合物中。该研究是在220毫米x 300毫米的冷却板尺寸下进行的,该冷却板具有22个平行的微型通道和大型流体分配器。迷你通道尺寸为100毫米x 1毫米x 5毫米。通过代表单个电池的人工热负荷的加热垫施加100W的恒定热负荷。所用的Al 2 O 3纳米颗粒的浓度为0.1和0.5体积%,然后分散在50∶50(水:乙二醇)混合物中。观察到不同流量对传热增强和Re数范围为20至120的流体流动的影响。与基础流体相比,对于0.5%(体积)的Al2O3,传热率提高了13.87%。但是,压降也会增加,导致泵浦功率增加至0.02W。积极的热结果表明,Al2O3纳米流体是PEM燃料电池热管理未来应用的潜在候选者。

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