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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Electromagnetic-thermal-stress coupling simulation for shore power cable with insulating crack air gap
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Electromagnetic-thermal-stress coupling simulation for shore power cable with insulating crack air gap

机译:绝缘裂纹气隙岸电缆电磁 - 热应力耦合仿真

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摘要

The special working condition of shore power cable is more likely to form a crack air gap in insulating medium, which will cause gap discharge. The continuous gap discharge will cause local temperature rising and stress concentrating, which will lead to cable insulation deterioration. The electro-thermal-stress coupling method, in this paper, is used to establish the finite element model of the shore power cable. The electric, temperature and stress field distribution for the shore power cable with a crack air gap in the insulating medium is also studied, and the correctness of temperature and stress field distribution is verified by experiments. In addition, this paper investigated the variation law of the ampacity for shore power cable under different discharge energy. The results show that the maximum electric field is equal to the electric field intensity (36.1 kV/cm) at the inner edge of the insulating medium when the gap length d = 2 mm and that the temperature and stress of the cable are quadratic with load current, linear with the gap discharge energy. The research results of this paper have an engineering significance for monitoring shore power cables.
机译:岸电缆的特殊工作条件更有可能在绝缘介质中形成裂缝气隙,这将导致间隙放电。连续间隙放电将导致局部温度上升和应力集中,这将导致电缆绝缘劣化。本文的电热应力耦合方法用于建立岸电力电缆的有限元模型。还研究了在绝缘介质中具有裂纹空气间隙的肖氏电力电缆的电,温度和应力场分布,并通过实验验证了温度和应力场分布的正确性。此外,本文研究了不同放电能源下岸电力电缆的伏度性的变化规律。结果表明,当间隙长度d = 2mm时,最大电场等于绝缘介质内边缘处的电场强度(36.1kV / cm),并且电缆的温度和应力与负载二次电流,线性带间隙放电能量。本文的研究结果具有监测岸电缆的工程意义。

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