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FUNDAMENTAL ISSUES OF NANOFLUID BEHAVIOR

机译:纳米流体行为的基本问题

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This paper will elucidate some of the behaviors of nanofluids other than the abnormal conductivity enhancement, which are of importance to the experimental and engineering use of nanofluids. Nanofluid is the common name of any sol colloid involving nanoscale (less than 100nm) sized particles dispersed within a base fluid. It has been shown previously that the dispersion of nano-particulate metallic oxides into water can increase thermal conductivity up to 30-40% over that of the base fluid and anomalously more than the mere weighed average of the colloid. There is a great potential for the use of nanofluids as a way to enhance fluid/thermal energy transfer systems. Due to the recentness of nanofluid science, there are still many issues which have not been fully investigated. This paper should act as a primer for the basic understanding of nanofluid behavior. Particle size and colloid stability are of key importance to the functionality of nanofluids. The pH and concentration/loading of nanofluids can alter the size of the nanoparticles and also the stability of the fluids. It will be shown through experiment and colloid theory the importance of these parameters. Furthermore, most of the existing literature uses volume percentage as the measure of particle loading, which can often be misleading. There will be discussion of this and other misleading ideas in nanofluid science.
机译:本文将阐明除异常电导率增强以外的纳米流体的某些行为,这些行为对于纳米流体的实验和工程应用具有重要意义。纳米流体是任何溶胶胶体的通用名称,其中涉及分散在基础流体中的纳米级(小于100nm)尺寸的颗粒。先前已经表明,纳米颗粒金属氧化物在水中的分散可将导热率提高至比基础流体的导热率高30-40%,并且反常地超过胶体的仅加权平均值。使用纳米流体作为增强流体/热能传递系统的方法具有巨大的潜力。由于纳米流体科学的最新发展,仍然有许多问题尚未得到充分研究。本文应作为对纳米流体行为的基本了解的入门。粒度和胶体稳定性对于纳米流体的功能至关重要。纳米流体的pH值和浓度/负载量可以改变纳米颗粒的大小,也可以改变流体的稳定性。通过实验和胶体理论将显示这些参数的重要性。此外,大多数现有文献使用体积百分比作为颗粒负载的量度,这常常会产生误导。纳米流体科学将对此和其他误导性思想进行讨论。

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