环保变压器用季戊四醇合成酯绝缘油的分子行为研究

IF 2.9 3区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Shi Li;Feipeng Wang;Pawel Rozga;Xiaoxiao Chen;Ying Zhang;Bojun Li;Sichen Yan;Ungarala Mohan Rao;Jian Li
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引用次数: 0

摘要

酯基绝缘油具有高闪点和可生物降解性。然而,它们较低的雷击击穿电压(LIBDV)阻碍了高压、大容量、环保变压器的发展。本研究比较了25#矿物油(25#MO)和自主研发的季戊四醇合成酯油(SEO-KA)的负LIBDV。随后,采用密度泛函、时变密度泛函和波函数分析方法进行计算,提出了前沿轨道和陷阱、电离和电子亲和过程、激发过程、放电活性位点和分子极性对两种油的LIBDV的影响机理。结果表明,25#MO在测试油隙下的负LIBDV是SEO-KA的1.4倍以上。与25#MO相比,SEO-KA具有更大的固有偶极矩、诱导偶极矩和分子极性。边界轨道易移动,陷阱能级分布更密集。表面静电电位的不均匀分布触发了更多的放电活性位点。幸运的是,SEO-KA可以保持负电子亲和和局部激发类型,表现出与25#MO相似的电子反应性和分子稳定性。今后的工作重点是提高SEO-KA的电离能,以提高其LIBDV。本研究为高性能环保绝缘液体的设计、开发和应用提供了科学依据和指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Hidden Vulnerabilities of Pentaerythritol Synthetic Ester Insulating Oil for Eco-Friendly Transformers: A Dive Into Molecular Behavior
Ester-based insulating oils exhibit high flash points and biodegradability. Their inferior lightning impulse breakdown voltage (LIBDV), however, hinders the development of high-voltage, large-capacity, eco-friendly transformers. This study compares the negative LIBDV of 25#mineral oil (25#MO) and self-developed pentaerythritol synthetic ester oil (SEO-KA). Subsequently, employing density functional, time-dependent density functional, and wave function analysis methods, calculations are conducted to propose the influence mechanisms of frontier orbitals and traps, ionization and electron affinity processes, excitation processes, discharge active sites, and molecular polarity on LIBDV for both oils. The results indicate that the negative LIBDV of 25#MO is over 1.4 times that of SEO-KA under tested oil gaps. SEO-KA exhibits greater inherent dipole moment, induced dipole moment, and molecular polarity than 25#MO. The frontier orbitals are easily movable, and the trap energy level distribution is denser. The uneven distribution of surface electrostatic potential triggers more discharge active sites. Fortunately, SEO-KA can maintain negative electron affinity and local excitation types, demonstrating similar electronic reactivity and molecular stability to 25#MO. Future work can focus on improving the ionization energy of SEO-KA to enhance its LIBDV. This research provides a scientific basis and guidance for the design, development, and application of superior-performance eco-friendly insulating liquids.
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来源期刊
IEEE Transactions on Dielectrics and Electrical Insulation
IEEE Transactions on Dielectrics and Electrical Insulation 工程技术-工程:电子与电气
CiteScore
6.00
自引率
22.60%
发文量
309
审稿时长
5.2 months
期刊介绍: Topics that are concerned with dielectric phenomena and measurements, with development and characterization of gaseous, vacuum, liquid and solid electrical insulating materials and systems; and with utilization of these materials in circuits and systems under condition of use.
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