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用于电力变压器的矿物和酯基纳米流体作为介电冷却液

Mineral and Ester Nanofluids as Dielectric Cooling Liquid for Power Transformers.

作者信息

Olmo Cristian, Méndez Cristina, Quintanilla Pedro J, Ortiz Félix, Renedo Carlos J, Ortiz Alfredo

机构信息

Department of Electrical and Energy Engineering, Universidad de Cantabria, 39005 Santander, Spain.

出版信息

Nanomaterials (Basel). 2022 Aug 8;12(15):2723. doi: 10.3390/nano12152723.

Abstract

Amidst the new techniques facing the improvement of cooling and insulating efficiency and the design of electric transformers, constrained by the current technologies, one of the more promising is the substitution of traditional dielectric oils for nanofluids. Research on nanofluids for their application in transformers as a coolant and dielectric medium have been performed during the last two decades and continue today. This review tries to collect and analyze the available information in this field and to offer it already dissected to researchers, focusing on the preparation methods and how nanoparticles affect the main properties of the base fluids. Here we also addressed the influence of different parameters as particle characteristics or environmental conditions in nanofluids performance, the evolution with time of the measured properties, or the neighboring relationship of nanofluids with other transformer components. In this sense, the most reviewed articles reflect enhancements of thermal conductivity or dielectric strength, as well as an improvement of time evolution of these properties, with respect to those that are found in base fluids, and, also, a better interaction between these nanofluids and dielectric cellulosics. Thus, the use of dielectric nanofluids in transformers may allow these machines to work safer or over their design parameters, reducing the risk of failure of the electrical networks and enhancing their life expectancy. Nevertheless, these advantages will not be useful unless a proper stability of nanofluids is ensured, which is achieved in a small part of revised articles. A compendium of the preparation methodology with this aim is proposed, to be checked in future works.

摘要

在提高冷却和绝缘效率以及设计电力变压器所面临的新技术中,受当前技术限制,其中一种较有前景的方法是用纳米流体替代传统的介电油。在过去二十年中一直在进行纳米流体作为变压器冷却剂和介电介质应用的研究,并且至今仍在继续。本综述试图收集和分析该领域的现有信息,并将其整理后提供给研究人员,重点关注制备方法以及纳米颗粒如何影响基础流体的主要性能。在这里,我们还讨论了不同参数(如颗粒特性或环境条件)对纳米流体性能的影响、测量性能随时间的变化,以及纳米流体与其他变压器组件的相邻关系。从这个意义上说,大多数综述文章都反映出与基础流体相比,纳米流体的热导率或介电强度有所提高,以及这些性能随时间的演变得到改善,并且纳米流体与介电纤维素之间的相互作用也更好。因此,在变压器中使用介电纳米流体可能使这些设备更安全地运行或超出其设计参数工作,降低电网故障风险并延长其使用寿命。然而,除非确保纳米流体具有适当的稳定性,否则这些优势将无法发挥作用,而在少数综述文章中才实现了这一点。为此,本文提出了一个制备方法的概要,有待在未来的工作中进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cf6/9370386/5419ee7cd340/nanomaterials-12-02723-g001.jpg

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