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Electric field in polymeric cable due to space charge accumulation under DC and temperature gradient

机译:由于直流和温度梯度下空间电荷的积累,聚合物电缆中的电场

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When power cables are loaded under high voltage direct current (HVDC), an accumulation of space charge and a radial distribution of temperature gradient are developed across the insulation material. Such existence and accumulation of space charge within the insulating material poses a threat to the reliability of the operation of dc power cables. The electric field of a practical dc power cable is affected by the conductivity of the material, which is a function of both temperature and electric field. This causes difficulties in identifying the electric field distribution. In this paper, a method of determining the electric field distribution in dc power cables was proposed by considering the influence of space charge on the conductivity of the insulating material under different temperatures. Commercial 11 kV ac cross-linked polyethylene (XLPE) power cables were used and the space charge in these cables under dc conditions was measured using a modified pulsed electroacoustic (PEA) system with an attached current transformer. Therefore, a replica of a power cable under load conditions is obtained, which allows an investigation of the formation, migration and accumulation of space charge in a power cable with and without temperature gradients across the insulating material. COMSOL Multiphysics software package was used to accurately determine the electric field distribution in the dc power cable with consideration of the influence of electric field on the conductivity of the insulating material. The numerical modelling is based on the hopping conduction mechanism and its parameters were obtained from experiments carried out on the XLPE insulation material.
机译:当电力电缆在高压直流电(HVDC)下加载时,绝缘材料上会形成空间电荷的积累和温度梯度的径向分布。绝缘材料中空间电荷的这种存在和积累对直流电源电缆的运行可靠性构成了威胁。实际直流电源电缆的电场受材料电导率的影响,电导率是温度和电场的函数。这导致难以识别电场分布。本文提出了一种通过考虑空间电荷对不同温度下绝缘材料电导率的影响来确定直流电力电缆中电场分布的方法。使用商业11 kV交流交联聚乙烯(XLPE)电力电缆,并使用带有连接的电流互感器的改进型脉冲电声(PEA)系统测量直流条件下这些电缆中的空间电荷。因此,获得了在负载条件下电力电缆的复制品,其允许研究在绝缘材料上具有和不具有温度梯度的情况下电力电缆中空间电荷的形成,迁移和积累。考虑到电场对绝缘材料电导率的影响,COMSOL Multiphysics软件包用于精确确定直流电源电缆中的电场分布。数值模拟基于跳跃传导机理,其参数是通过在XLPE绝缘材料上进行的实验获得的。

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