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Analysis of the Parameters Required to Properly Define Nanofluids for Heat Transfer Applications

机译:分析正确定义纳米流体以进行传热应用所需的参数

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摘要

Nanofluids are obtained by dispersing nanoparticles and dispersant, when present, in a base fluid. Their properties, in particular their stability, however, are strictly related to several other parameters, knowledge of which is important to reproduce the nanofluids and correctly interpret their behavior. Due to this complexity, the results appear to be frequently unreliable, contradictory, not comparable and/or not repeatable, in particular for the scarcity of information on their preparation. Thus, it is essential to define what is the minimum amount of information necessary to fully describe the nanofluid, so as to ensure the possibility of reproduction of both their formulation and the measurements of their properties. In this paper, a literature analysis is performed to highlight what are the most important parameters necessary to describe the configuration of each nanofluid and their influence on the nanofluid’s properties. A case study is discussed, analyzing the information reported and the results obtained for the thermophysical properties of nanofluids formed by water and TiO2 nanoparticles. The aim is to highlight the differences in the amount of information given by the different authors and exemplify how results can be contradictory. A final discussion gives some suggestions on the minimum amount of information that should be given on a nanofluid to have the possibility to compare results obtained for similar nanofluids and to reproduce the same nanofluid in other laboratories.
机译:通过将纳米颗粒和分散剂在碱基流体中分散纳米颗粒和分散剂来获得纳米流体。然而,它们的性质,特别是它们的稳定性与其他几个参数严格相关,了解哪些知识对于再现纳米流体并正确解释其行为是重要的。由于这种复杂性,结果似乎经常是不可靠的,矛盾的,而不是可重复的和/或不可重复的,特别是对于他们制备的信息稀缺。因此,必须定义完全描述纳米流体所需的最小信息量是必需的,以确保其配方和其性质的测量的再现的可能性。在本文中,进行了文献分析以突出显示每个纳米流体的结构所需的最重要参数及其对纳米流体的影响。讨论了案例研究,分析了所报道的信息和通过水和TiO2纳米颗粒形成的纳米流体热物理性质的结果。目的是突出不同作者给出的信息量的差异,并举例说明了如何矛盾的结果。最后的讨论提供了关于纳米流体上应给予的最小信息量的一些建议,以便能够比较为类似纳米流体的结果进行比较并在其他实验室中繁殖相同的纳米流体。

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