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Evaluating the effects of different parameters on rheological behavior of nanofluids: A comprehensive review

机译:评价不同参数对纳米流体流变行为的影响:全面审查

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摘要

Nanofluids refers to a new form of heat transfer material that is produced by suspending nanoscale metal and non-metallic particles (1-100 nm) in the base fluid and is one of the newest attempts in the heat sciences. In fact, conventional fluids that are used for heat transfer have a low thermal conductivity. On the other hand, nano particles increase the thermal conductivity coefficient of the fluid due to their high thermal conductivity coefficient with presence in the base fluid. As a result, the vast investment of advanced countries in nanotechnology, research into the thermal properties of nanofluids has been given particular attention. In recent years, nanofluids have attracted the attention of many scientists due to the significant increase in thermal properties. They have been considered as a new approach in heat transfer operations. This paper presents an overview of researches on rheological behavior of nanofluids. This paper examines the effects of parameters such as nanoparticle size and shear rate on rheological behavior of nanofluids. In addition, nanoparticle types and their volume fraction are investigated. It is observed that nanoparticle size, volume fraction and shear rate significantly affect the rheological behavior of the nanofluids. (C) 2018 Elsevier B.V. All rights reserved.
机译:纳米流体是指通过悬浮在基础流体中悬浮纳米金属和非金属颗粒(1-100nm)而产生的新形式的传热材料,并且是热科学中最新的尝试之一。实际上,用于传热的常规流体具有低导热率。另一方面,纳米颗粒由于其在基础流体中存在的高导热系数而增加了流体的导热系数。因此,在纳米技术的广泛投资中,研究了纳米流体的热性能。近年来,由于热性能显着增加,纳米流体引起了许多科学家的注意。它们被认为是传热操作中的一种新方法。本文概述了纳米流体的流变行为研究。本文研究了纳米粒子尺寸和剪切速率等参数的影响纳米流体的流变行为。另外,研究了纳米颗粒类型及其体积分数。观察到纳米颗粒尺寸,体积分数和剪切速率显着影响纳米流体的流变行为。 (c)2018 Elsevier B.v.保留所有权利。

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