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首页> 外文期刊>International journal of hydrogen energy >Natural convection investigation in square cavity filled with nanofluid using dispersion model
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Natural convection investigation in square cavity filled with nanofluid using dispersion model

机译:利用弥散模型研究纳米流体填充方腔中的自然对流。

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摘要

A cooling achieved with compact and efficient device is one of the major challenges encountered in the promising technique of fuel cell stacks. The safe and reliable use of such a system is highly dependent on the efficiency of the assured heat transfer and consequently on the quality of the coolant used. To test the possible improvement of the coolant performances, laminar natural convection in square cavity filled with copper-water nanofluid is numerically carried out taking into account the thermal dispersion effect on the heat transfer intensity. The finite element method is used to solve the governing equations. The hydrodynamic structure of the flow and its thermal behavior are studied for a wide range of Rayleigh numbers. The obtained results showed an enhancement of heat transfer with an increase in nanoparticle volume fraction for all examined Rayleigh numbers. However, it is found that an increase in nanoparticle diameter enhances heat transfer only when thermal dispersion is significant. Correlation with 99.94% confidence coefficient is proposed to quantify the heat transfer intensity according to the Rayleigh number and particle diameter and concentration. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:用紧凑而有效的装置实现的冷却是在有前途的燃料电池堆技术中遇到的主要挑战之一。这种系统的安全可靠使用在很大程度上取决于保证的热传递效率,因此取决于所用冷却液的质量。为了测试冷却剂性能的可能改善,考虑了热扩散对传热强度的影响,在充满铜-水纳米流体的方腔中进行了层流自然对流。有限元法用于求解控制方程。在广泛的瑞利数范围内研究了流体的流体动力学结构及其热行为。对于所有检查的瑞利数,获得的结果显示出随着纳米颗粒体积分数的增加,传热增强。然而,发现仅当热分散显着时,纳米颗粒直径的增加才增强热传递。提出了与99.94%置信系数的关系,以根据瑞利数,粒径和浓度来量化传热强度。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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