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统一测试条件下绝缘气体的研究与分析

Research and Analysis of Insulating Gas in Unified Test Conditions.

作者信息

You Tianpeng, Dong Xuzhu, Zhou Wenjun, Qiu Rui, Hou Hua, Luo Yunbai

机构信息

School of Electrical and Automation, Wuhan University, 430072 Wuhan, China.

College of Chemistry and Molecular Sciences, Wuhan University, 430072 Wuhan, China.

出版信息

ACS Omega. 2022 Mar 8;7(11):9221-9228. doi: 10.1021/acsomega.1c05760. eCollection 2022 Mar 22.

Abstract

In order to study the insulation mechanism of SF substitute gas, it is suggested to calculate the dielectric strength of insulating gas from the molecular structure. The dielectric strength of a typical gas is modeled by a power frequency breakdown test under a uniform electric field. The molecular parameters of insulating gases are calculated by the density functional theory method, and the effect of molecular structure parameters on the breakdown voltage of power frequency is studied. Based on the molecular structure parameters, which are closely related to the breakdown voltage of power frequency, a model of pressure and distance variation of AC breakdown voltage of insulating gas is established. The breakdown voltages of insulating gases (CFSOF) are also derived from the proposed model. The calculated breakdown voltage of power frequency of two gases is compared with the experimental value. The average error is just 2.6%. This model provides a basis for the future search for potential alternative insulating gases.

摘要

为了研究SF替代气体的绝缘机理,建议从分子结构计算绝缘气体的介电强度。典型气体的介电强度通过均匀电场下的工频击穿试验进行建模。采用密度泛函理论方法计算绝缘气体的分子参数,研究分子结构参数对工频击穿电压的影响。基于与工频击穿电压密切相关的分子结构参数,建立了绝缘气体交流击穿电压的压力和距离变化模型。绝缘气体(CFSOF)的击穿电压也从所提出的模型中推导出来。将两种气体计算得到的工频击穿电压与实验值进行比较。平均误差仅为2.6%。该模型为未来寻找潜在的替代绝缘气体提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29c2/8945137/5b5e267a84d6/ao1c05760_0001.jpg

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