Coupled simulation of gas flow and dynamic analysis for stroke calculation in circuit breaker

Y. S. Lee, H. Ahn, S. W. Park, J. H. Lee
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引用次数: 1

Abstract

Electrical energy transmission and distribution devices are becoming more sophisticated and diversified in design, and also higher in its capacity due to rising in electricity usage. In direct response to demands of more reliable GIS (Gas Insulated Switchgear) from customers, computer simulations such as dynamics, structural, and fluid dynamics analysis are becoming more incorporated into the design process. Among the many types of simulations in GIS are low current interruption, SLF interruption, and BTF interruption. In the simulations, a stroke profile measured under loaded condition is required, and it leads to reduction in time and cost required towards the product development. In the paper, first, the actuator and interrupter of GIS is modeled using dynamics simulation program called RecurDyn. Second, SF6 gas pressure change in the interrupting chamber is made into a sub-routine using house code. Finally, with consideration of ODP (Oil Dash Pot) and friction forces of actuator, stroke profile under actual loaded condition is calculated.
断路器冲程计算中气体流动与动力学分析的耦合模拟
随着用电量的不断增加,电能输配电装置的设计日趋复杂和多样化,容量也在不断提高。为了直接响应客户对更可靠的GIS(气体绝缘开关设备)的需求,计算机模拟,如动力学、结构和流体动力学分析正越来越多地纳入设计过程。GIS中的仿真类型有低电流中断、SLF中断和BTF中断。在模拟中,需要在负载条件下测量冲程曲线,从而减少产品开发所需的时间和成本。本文首先利用RecurDyn动力学仿真程序对GIS的致动器和中断器进行建模。其次,利用室内代码将中断室SF6气体压力变化制作成子程序。最后,考虑了ODP (Oil Dash Pot)和执行机构摩擦力,计算了实际载荷条件下的行程曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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