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Fluoronitriles/CO2 gas mixture as promising substitute to SF6 for insulation in high voltage applications

机译:氟腈/ CO2气体混合物有望替代SF6用于高压应用中的绝缘

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This paper is aimed at the breakdown characteristics of Fluoronitriles - CO2 gas mixtures in different experimental conditions; these mixtures constitute promising substitutes to SF6 gas in high voltage applications especially gas insulating switchgear (GIS). Fluoronitriles chemical gas compound based on 3M™ NOVEC 4710 have a high dielectric strength, more than 2 times that of SF6 and a low Global Warming Potential (GWP). Mixed with CO2 as gas carrier, the obtained mixtures offer interesting dielectric properties and the possibility to be used for low temperature applications. The experiments are conducted with different electrodes geometries namely plane-to-plane, sphere-to-sphere, sphere-to-plane and rod-to-plane (i.e. in homogeneous, quasi-homogeneous and inhomogeneous electric field distribution) and different field utilization factors, under AC and lightning impulse voltages. The same experiments are reproduced for pure SF6 for the comparison. The comparison of breakdown voltages results of mixtures with different concentrations of Fluoronitriles in CO2 in sphere-to-sphere electrodes arrangement shows that the 3.7 % Fluoronitriles / 96.3% CO2 mixture constitutes a good compromise and an appropriate gas mixture for high voltage apparatus insulation in point of view of pressure and low ambient temperature application (-30°C).
机译:本文针对不同实验条件下氟腈-CO2气体混合物的分解特性。这些混合物构成了高压应用中特别是气体绝缘开关设备(GIS)中SF6气体的有希望的替代品。基于3M™NOVEC 4710的氟腈化学气体化合物具有较高的介电强度,是SF6的2倍以上,并且全球变暖潜能值(GWP)低。与作为气体载体的CO2混合后,所得混合物具有令人感兴趣的介电性能,并有可能用于低温应用。实验是使用不同的电极几何形状进行的,即平面到平面,球到球,球到平面和杆到平面(即均匀,准均匀和不均匀电场分布)和不同的电场利用率交流和雷电冲击电压下的影响因素。为进行比较,对纯SF6进行了相同的实验。球形电极对电极中CO2中不同浓度的氟腈混合物的击穿电压结果比较表明,3.7%的氟腈/96.3%的CO2混合物构成了良好的折衷,并且是高压设备绝缘的合适气体混合物压力和低环境温度应用(-30°C)的视图。

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