Numerical Analysis of Nanofluid Thermal Flows through a Model Heat Exchanger:

Q4 Materials Science Journal of Textile Engineering Pub Date : 2021-08-15 DOI:10.4188/jte.67.65
T. Onishi, Y. Tsujinaka, Takehiro Yamamoto
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引用次数: 1

Abstract

The present paper numerically analyzed the effect of nanoparticle volume fraction on thermal flows of Al 2 O 3 / Water nanofluids through a two-dimensional model heat exchanger channel. The trade-off relation between thermal conductivity and pressure drop in nanofluid flows was studied using numerical thermal flow simulation in which the dependence of both thermal conductivity and viscosity on the nanoparticle volume fraction and the distribution of nanoparticles in flows were considered. The Batchelor model and the Lu and Lin model were applied to models of viscosity and thermal conductivity of nanofluids, respectively. The results obtained are: (1) Nanofluids contribute to make an improvement of heat transfer without harmful effects to flow. (2) From the energy efficiency point of view, it was found that the use of nanofluids at low particle volume fractions was appropriate. This is because a remarkable increase in the temperature efficiency due to the addition of nanoparticles relative to an increase in the power required for flowing nanofluids in the channel is not expected at high particle volume fractions.
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模型换热器中纳米流体热流的数值分析
本文数值分析了纳米颗粒体积分数对氧化铝/水纳米流体通过二维模型换热器通道热流的影响。采用数值热流模拟方法研究了纳米流体的导热系数和压降之间的权衡关系,其中考虑了导热系数和粘度对纳米颗粒体积分数和纳米颗粒在流动中的分布的依赖关系。Batchelor模型和Lu和Lin模型分别应用于纳米流体的粘度和导热系数模型。研究结果表明:(1)纳米流体在不影响流动的情况下,有利于改善换热。(2)从能源效率的角度来看,发现在低颗粒体积分数下使用纳米流体是合适的。这是因为在高颗粒体积分数的情况下,由于纳米颗粒的加入,相对于纳米流体在通道中流动所需的功率的增加,温度效率的显着提高是不可预期的。
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来源期刊
Journal of Textile Engineering
Journal of Textile Engineering Materials Science-Materials Science (all)
CiteScore
0.70
自引率
0.00%
发文量
4
期刊介绍: Journal of Textile Engineering (JTE) is a peer-reviewed, bimonthly journal in English and Japanese that includes articles related to science and technology in the textile and textile machinery fields. It publishes research works with originality in textile fields and receives high reputation for contributing to the advancement of textile science and also to the innovation of textile technology.
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