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Heat transfer through heat exchanger using Al 2O 3 nanofluid at different concentrations

机译:使用不同浓度的Al 2 O 3 纳米流体通过热交换器进行热传递

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摘要

This article reports an experimental study on the forced convective heat transfer and flow characteristics of a nanofluid consisting of water and different volume concentrations of Al2O3nanofluid (0.3–2)% flowing in a horizontal shell and tube heat exchanger counter flow under turbulent flow conditions are investigated. The Al2O3nanoparticles of about 30nm diameter are used in the present study. The results show that the convective heat transfer coefficient of nanofluid is slightly higher than that of the base liquid at same mass flow rate and at same inlet temperature. The heat transfer coefficient of the nanofluid increases with an increase in the mass flow rate, also the heat transfer coefficient increases with the increase of the volume concentration of the Al2O3nanofluid, however increasing the volume concentration cause increase in the viscosity of the nanofluid leading to increase in friction factor.
机译:本文对由水和不同体积浓度的Al2O3纳米流体(0.3–2)%在水平壳管式换热器中逆流的湍流条件下的强迫对流换热和流动特性进行了实验研究。在本研究中使用直径约30nm的Al2O3纳米颗粒。结果表明,在相同的质量流量和相同的入口温度下,纳米流体的对流换热系数略高于基础液体。纳米流体的传热系数随质量流量的增加而增加,并且随着Al2O3纳米流体的体积浓度的增加而传热系数也随之增加,但是,随着体积浓度的增加,纳米流体的粘度增加,从而导致纳米流体的粘度增加。摩擦系数。

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