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Compact gas-insulated systems for high voltage direct current transmission: Basic design

机译:用于高压直流输电的紧凑型气体绝缘系统:基本设计

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The design of insulating elements for HVAC GIS is optimized for a capacitive field distribution. An intrinsic difference between AC and DC is however that the DC conductivity of insulation materials is strongly temperature dependent, while their permittivity varies only weakly with temperature. As a consequence, the resistive field is enhanced where the DC conductivity is at its minimum, i.e. in cold regions of the insulation. Besides, the accumulation of space and surface charges have to be observed as well as the specific load at superposition of impulse voltages. Using of multi-physics simulation tools the analysis of temperature and electrical field distribution is now possible with high accuracy, taking the following parameters into consideration: temperature and electrical field dependent characteristics of the insulating materials, accumulation of space and surface charges and the superposition of DC and impulse voltages.
机译:HVAC GIS的绝缘元件设计针对电容性场分布进行了优化。但是,交流电和直流电之间的本质区别在于,绝缘材料的直流电导率与温度密切相关,而介电常数仅随温度而微弱地变化。结果,在直流电导率最小的地方,即在绝缘体的寒冷区域,电阻场被增强。此外,必须观察空间和表面电荷的积累,以及脉冲电压叠加时的比负载。使用多物理场仿真工具,现在可以高精度地分析温度和电场分布,并考虑以下参数:绝缘材料的温度和电场相关特性,空间和表面电荷的积累以及玻璃的叠加直流和脉冲电压。

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