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Experimental Investigation of Thermal Conductivity and Electrical Conductivity of Al2O3 Nanofluid in Water - Ethylene Glycol Mixture for Proton Exchange Membrane Fuel Cell Application

机译:质子交换膜燃料电池水-乙二醇混合物中Al2O3纳米流体导热系数和电导率的实验研究。

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摘要

Nanofluid is an alternative promising cooling liquid with superior performance characteristic compared to conventional cooling liquid for Proton Exchange Membrane fuel cell (PEMFC). In this paper, new findings onudratio of thermal conductivities and electrical conductivities of nanofluids inwater: ethylene glycol (EG) mixtures are established. Thermal conductivities and electrical conductivities of base fluids which are water: EG mixtures with concentration ranging from 0 % ethylene glycol up to 100 % ethylene glycol were measured. These base fluids are then dispersed with Al2O3 at 0.1, 0.3 and 0.5 % of volume concentration and thermal conductivitiesudand electrical conductivities are then measured at temperature of 20 °C. The result demonstrates that thermal conductivities reduced as the EG content percentage increases in the water: EG mixture. Thermal conductivities for 0.5 % volume concentration of Al2O3 is 0.6478 W/m.K and 0.2816 W/m.K for 0 and 100 % EG content in water: EG mixture. However, at a specific EG percentage, thermal conductivities also increased as a function of volume concentration. Electrical conductivities measured in 0.1, 0.3 and 0.5 % volume concentration of Al2O3 in base fluid also observed to decrease as the EG concentration increased even though the base fluids’ electrical conductivity behave differently. Thermo-electrical conductivity ratio (TEC) has also been established based on both thermal and electrical conductivity findings.
机译:与质子交换膜燃料电池(PEMFC)的常规冷却液相比,纳米流体是一种替代的有前途的冷却液,具有比常规冷却液优越的性能。在本文中,建立了关于纳米流体在水中的热导率和电导率的总和的新发现:乙二醇(EG)混合物。水为基础流体的热导率和电导率:测量浓度为0%乙二醇至100%乙二醇的EG混合物。然后将这些基础流体用体积百分比分别为0.1%,0.3%和0.5%的Al2O3分散,然后在20°C的温度下测量热导率/ ud。结果表明,随着水:EG混合物中EG含量百分比的增加,热导率降低。当水和EG混合物中的EG含量为0和100%时,0.5%Al2O3体积浓度的导热系数为0.6478 W / m.K和0.2816 W / m.K。但是,在特定的EG百分比下,热导率也随体积浓度而增加。即使基础流体的电导率表现不同,在基础流体中以0.1%,0.3%和0.5%的Al2O3体积浓度测量的电导率也会随着EG浓度的增加而降低。还基于热导率和电导率的发现确定了热电导率比(TEC)。

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