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Comparison of dielectric breakdown properties for different carbon-fluoride insulating gases as SF6 alternatives

机译:不同碳氟化物绝缘气体作为SF6替代品的介电击穿性能的比较

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摘要

As a widely used insulating medium, sulfur hexafluoride (SF6) is a greenhouse gas with very high global warming potential (GWP). Some carbon-fluoride gases have potential to replace SF6 in insulating applications. In order to reveal their different dielectric performance, this paper is devoted to a comparative study of dielectric breakdown properties for SF6 and four carbon-fluoride insulating gases i.e. CF3I, C2F6, C3F8, and c-C4F8 mixed with CO2, N2, and CF4 based on the numerical solution of Boltzmann equation. The electron energy distribution function (EEDF), reduced ionization coefficients α/N, reduced electron attachment coefficients η/N, and reduced critical electric field strength (E/N)cr are compared for various gas mixtures. Generally c-C4F8 presents the largest dielectric strength among the four carbon-fluoride insulating gases whichever buffer gas is mixed, while C2F6 presents the lowest dielectric strength. In terms of (E/N)cr and GWP, CF3I is a good eco-friendly insulating medium. However, with the addition of buffer gases, the (E/N)cr of CF3I mixtures declines more quickly than other mixtures. It is also found that the mixing of CF4 makes insulating mixtures depend more linearly on the proportions of buffer gas than CO2 and N2.
机译:作为广泛使用的绝缘介质,六氟化硫(SF6)是具有非常高的全球变暖潜力(GWP)的温室气体。一些碳 - 氟化物气体有可能在绝缘应用中替换SF6。为了揭示其不同的介电性能,本文致力于SF6和四种碳氟化物绝缘气体的介电击穿性能的对比研究,即CF3I,C2F6,C3F8和C-C4F8与CO2,N2和CF4混合的C-C4F8在玻尔兹曼方程的数值解论。对电子能量分布函数(EEDF),减少电离系数α/ N,减少电子附接系数η/ n,以及各种气体混合物的缩小电场强度(E / N)Cr减小。通常,C-C4F8呈现了四种碳氟化物绝缘气体中的最大介电强度,无论缓冲气体都混合,而C2F6呈现最低介电强度。就(E / N)CR和GWP而言,CF3I是一种良好的环保绝缘介质。然而,随着缓冲气体的添加,CF3I混合物的(E / N)Cr比其他混合物更快地下降。还发现CF4的混合使绝缘混合物更加线性地依赖于缓冲气体的比例而不是CO 2和N 2。

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