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Effect of Coating of Earthed Enclosure and Multi-Contaminating Particles on Breakdown Voltage inside Gas Insulated Bus Duct

机译:接地外壳和多污染颗粒的涂层对气体绝缘母线槽内击穿电压的影响

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Metallic particle contamination is one of the areas of insulation design that are considered critical. This paper demonstrates the control of metallic particles in gas insulated bus duct (GIBD) by using dielectric coating on the inside surface of the outer enclosure of a coaxial electrode system. Several models of GIBD with single and multi-contaminating particles will be studied. In this paper, the Finite Elements Method (FEM) is used to evaluate the electric field distribution on and around single and multi-contaminating wire particles which in contact with dielectric coating of earthed enclosure inside GIBD. The effect of changing the length and the radius of middle particle for multi-contaminating particles on the electric field values are studied. Breakdown Voltage calculations for gas mixtures with single and multi-contaminating wire particles are studied. The effects of gas pressure on the breakdown voltage for various fractional concentrations of SF6-gas mixtures with and without particle contamination and also with and without coating of earthed enclosure are studied. The optimum gas mixture which gives higher dielectric strength with lower cost is also determined. The effect of coating thickness of earthed enclosure on the breakdown voltage for various fractional concentrations of SF6-gas mixtures is also studied. Finally, the effect of length and hemi-spherical radius of multi-contaminating particles on the breakdown voltage with various SF6-gas mixtures and varying gas pressure one time and another time with fixed pressure are studied.
机译:金属颗粒污染是绝热设计的关键领域之一。本文演示了通过在同轴电极系统外壳内表面上使用介电涂层来控制气体绝缘汇流排(GIBD)中的金属颗粒的方法。将研究具有单个和多个污染颗粒的GIBD的几种模型。在本文中,使用有限元方法(FEM)来评估与GIBD内部接地外壳的电介质涂层接触的单和多污染导线颗粒及其周围的电场分布。研究了改变多污染粒子中间粒子的长度和半径对电场值的影响。研究了具有单和多污染金属丝颗粒的混合气体的击穿电压计算。研究了在有和没有颗粒污染以及有和没有接地外壳涂层的情况下,气体压力对不同浓度的SF6-气体混合物的击穿电压的影响。还确定了以较低成本提供更高介电强度的最佳混合气体。还研究了不同浓度的SF6气体混合物的接地外壳涂层厚度对击穿电压的影响。最后,研究了多种污染颗粒的长度和半球形半径对各种SF6-气体混合物的击穿电压以及在固定压力下一次和另一次改变气体压力的影响。

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