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Electromagnetic Field and Force Analysis of Three-Phase Enclosure Type GIS Bus Capsule

机译:三相封闭式GIS总线胶囊的电磁场和力分析

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摘要

With the aim to optimization design and condition monitoring of Gas Insulation Station (GIS), a 3-D finite element model has been developed for the computation of the electromagnetic field and forces in a three-phase enclosure type GIS bus capsule. The calculation takes into account the bus bar connectors' contact resistance by modeling equivalent contact bridges between contact interfaces and physical properties of the materials involved have also been considered. Using the field distributions, power losses and electromagnetic forces have been calculated, the calculation is more valid and accurate compared to those from closed-formulas. The influence of the operation current and short current on those quantities is also examined. The results show that the distributions of current density and electromagnetic force in the conductors and tank are not uniform. Electromagnetic force of plug-in connector obtained by closed-formulas calculation has obvious deviation, due to the current distributions are not considered. The electromagnetic forces of bus conductors and plug-in connectors are large enough to overcome hold forces exerted by the contact springs under short circuit conditions.
机译:为了优化气体绝缘站(GIS)的设计和状态监测,开发了一种3-D有限元模型,用于计算三相封闭式GIS总线囊中的电磁场和力。该计算通过对接触界面之间的等效接触桥进行建模来考虑母线连接器的接触电阻,并且还考虑了所涉及材料的物理特性。使用场分布,已经计算出功率损耗和电磁力,与闭式计算相比,该计算更加有效和准确。还检查了工作电流和短路电流对这些量的影响。结果表明,导体和储罐中电流密度和电磁力的分布不均匀。由于未考虑电流分布,因此通过闭式计算获得的插入式连接器的电磁力具有明显的偏差。总线导体和插入式连接器的电磁力足够大,可以克服短路条件下接触弹簧施加的保持力。

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