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Metal oxide nanofluids: Review of formulation, thermo-physical properties, mechanisms, and heat transfer performance

机译:金属氧化物纳米流体:配方,热物理性质,机理和传热性能的综述

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摘要

Nanofluids, engineered colloidal dispersions of solid nanoparticles in liquid, belong to new category of heat transfer fluids that have evinced intense research activities in the recent past. Metal oxides have been widely used as solid phase for nanofluid formulation owing to their advantages such as relatively lower density, chemical stability and ease of preparation. This review paper resumes the research carried out on metal oxide based nanofluids: preparation, thermo-physical properties, the molecular level mechanisms influencing the transport properties and the testing of nanofluids for cooling applications. The influence of nanofluid formulation and physical parameters such as nanomaterial morphology, temperature, pH, additives, and the viscosity of base fluid on the transport properties of nanofluids has been reviewed. The physico-chemical interactions between the metal oxide nanoparticles and the molecules of the base fluid play an important role in determining the thermal conductivity and viscosity of the colloidal dispersions. Hence, desirable thermophysical properties of nanofluids can be achieved by engineering the interactions between the metal oxide nanoparticles and the base fluid molecules by adopting appropriate formulation strategy. Scale-up of preparation of nanofluids is still a challenge and needs to be addressed, upon which the use of nanofluids as heat transfer fluids in solar thermal applications, industrial cooling, thermal management in fuel cells, etc. can be accomplished.
机译:纳米流体是固体纳米颗粒在液体中的工程胶体分散体,属于新的传热流体类别,在最近的研究中已进行了广泛的研究。金属氧化物由于其诸如相对较低的密度,化学稳定性和易于制备的优点而被广泛用作纳米流体制剂的固相。本文将继续对基于金属氧化物的纳米流体进行的研究:制备,热物理性质,影响迁移性质的分子水平机制以及用于冷却应用的纳米流体的测试。综述了纳米流体配方和物理参数(如纳米材料的形态,温度,pH,添加剂和基础流体的粘度)对纳米流体传输性能的影响。金属氧化物纳米粒子与基础流体分子之间的物理化学相互作用在确定胶体分散体的导热率和粘度方面起着重要作用。因此,通过采用适当的配制策略,通过工程化金属氧化物纳米颗粒和基础流体分子之间的相互作用,可以实现纳米流体的理想的热物理性质。纳米流体的制备的规模化仍然是挑战,并且需要解决,在此上可以实现在太阳热应用,工业冷却,燃料电池中的热管理等中将纳米流体用作传热流体。

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