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首页> 外文期刊>IEEE Transactions on Power Delivery >Numerical and Experimental Study of the Short-Time Withstand Current Capability for Air Circuit Breaker
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Numerical and Experimental Study of the Short-Time Withstand Current Capability for Air Circuit Breaker

机译:空气断路器短时耐受电流能力的数值和实验研究

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摘要

A 3-D transient finite-element method to analyze the short-time withstand current for an air circuit breaker (ACB) is presented. The cylindrical contact bridge is adopted to describe the current constriction between the movable and fixed contacts, and then considering the influence of the eddy current, the resistivity and thermal conductivity variations with the temperature, and the coupled calculation of the corresponding electromagnetic field and thermal field can be performed to evaluate the short-time withstand current capability. To verify the calculation method and results based on the ACB model, relevant experiments are also conducted through measuring the temperature of two points on the contacts with the thermocouple. It demonstrates that the proposed method can be used to optimize the design of ACBs.
机译:提出了一种3D瞬态有限元方法,用于分析空气断路器(ACB)的短时耐受电流。采用圆柱形接触桥描述动触头与固定触头之间的电流收缩,然后考虑涡流,电阻率和导热系数随温度的变化的影响,以及相应电磁场和热场的耦合计算。可以执行以评估短时耐受电流的能力。为了验证基于ACB模型的计算方法和结果,还通过测量与热电偶接触的两个点的温度进行了相关实验。证明了所提出的方法可用于优化ACB的设计。

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