从电子输运参数和微观性质看C3F8三元气体混合物的绝缘特性

Ruishuang Zhong, Y. Qian, Y. Zang, Hui Wang, Xiuchen Jiang, G. Sheng, Su Zhao, Yunkun Deng, D. Xiao
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引用次数: 0

摘要

为了研究SF6气体的替代介质,采用分子理论和密度泛函理论(DFT)从微观性质上分析了SF6气体替代介质$\mathrm{C}_{3}\mathrm{F}_{8}$。本文旨在采用玻尔兹曼方程的方法计算$\mathrm{C}_{3}\mathrm{F}_{8}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$三元气体混合的电子输运系数和协同效应,并与$\mathrm{C} -\mathrm{C}_{4}\mathrm{F}_{8}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$进行相同比例的比较。结果表明,当E/N小于400Td时,$\ mathm {C}_{3}\ mathm {F}_{8}$混合气体的扩散系数和电子漂移速度优于$\ mathm {C}_{3}\ mathm {F}_{8}$混合气体。当$\ mathm {C}_{3}\ mathm {F}_{8}$的比例小于7%时,混合气体的绝缘强度高于$30\ \ mathm {SF}_{6} /70\ \ mathm {CO}_{2}$混合气体的绝缘强度。对于$\mathrm{C}_{3}\text{Fs}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$,当$\mathrm{C}_{3}\mathrm{F}_{8}$的含量在10%左右时,协同效应最为明显。本文的研究结果为$\ mathm {C}_{3}\ mathm {F}_{8}$三元混合气体作为SF6的潜在替代气体提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insulation Characteristics of C3F8 Ternary Gas Mixtures from Electron Transport Parameters and Microscopic Properties
In order to study an alternative SF6 gas medium, molecular theory and density functional theory (DFT) were used to analyze $\mathrm{C}_{3}\mathrm{F}_{8}$ as a substitute for SF 6 gas from microscopic properties. This paper aimed to adopt the Boltzmann equation method to calculation the electron transport coefficients and synergistic effect of $\mathrm{C}_{3}\mathrm{F}_{8}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$ ternary gas mixtures, and compared with $\mathrm{c}-\mathrm{C}_{4}\mathrm{F}_{8}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$ of same proportion. The results indicate that when E/N is lower than 400Td, the performance of $\mathrm{C}_{3}\mathrm{F}_{8}$ gas mixtures is better than that of $\mathrm{c}-\mathrm{C}_{3}\mathrm{F}_{8}$ gas mixtures in terms of diffusion coefficient and electron drift velocity. When the proportion of $\mathrm{C}_{3}\mathrm{F}_{8}$ is less than 7%, the insulation strength of gas mixtures is higher than that of $30\%\mathrm{SF}_{6} /70\%\mathrm{CO}_{2}$ gas mixtures. As for synergistic effect, for $\mathrm{C}_{3}\text{Fs}/\text{CF}_{3}\mathrm{I}/\text{CO}_{2}$ is most obvious when the content of $\mathrm{C}_{3}\mathrm{F}_{8}$ is about 10%. The research results in this paper provide a theoretical basis for $\mathrm{C}_{3}\mathrm{F}_{8}$ ternary gas mixtures as a potential replacement gas for SF6.
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