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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Evaluation of breakdown characteristics of CO2 gas for non-standard lightning impulse waveforms - breakdown characteristics under single-frequency oscillation waveforms of 1.3 MHz to 4.0 MHz
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Evaluation of breakdown characteristics of CO2 gas for non-standard lightning impulse waveforms - breakdown characteristics under single-frequency oscillation waveforms of 1.3 MHz to 4.0 MHz

机译:非标准雷电冲击波形的CO2气体击穿特性评估-1.3 MHz至4.0 MHz单频振荡波形下的击穿特性

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摘要

SF6 gas, an insulation medium used for gas insulated switchgear (GIS), has a high global warming potential, hence the search for an effective alternative means from the environmental perspective. One of the alternative candidates is CO2 gas, which has a lower global warming potential. In order to use this CO2 gas for actual GIS, the insulation specification must be rationalized by lowering the lightning impulse withstand voltage because the dielectric strength of CO2 gas is lower than that of SF6 gas. To lower the lightning impulse withstand voltage of GIS while maintaining the high reliability of its insulation performance, it is important to define in an organized way the insulation characteristics for non-standard lightning impulse voltage waveforms (non-standard-LIWs) that represent actual surge waveforms in the field and compare them with the characteristics for the standard lightning impulse waveform (standard-LIW) quantitatively. In this paper, with single-frequency oscillations as typical examples of non-standard-LIWs, the insulation characteristics for the CO2 gas gap were experimentally obtained while changing the frequency and damping rate. Consequently, even if the frequency and damping rate were changed, the dielectric breakdown voltage varied little, consistently remaining higher than that with standard-LIW at a level of 1.08 to 1.17 times. Accordingly, it was found that, for GIS using CO2 gas, the insulation specification could be rationalized by approximately 10% by converting non-standard-LIWs to equivalent standard-LIWs. In addition, the influence of gas pressure and gap length was examined and it emerged that the results obtained under basic experimental conditions were likely to be applicable to the conditions close to actual GIS conditions.
机译:SF6气体是用于气体绝缘开关设备(GIS)的绝缘介质,具有很高的全球变暖潜力,因此从环境角度出发寻找有效的替代手段。备选气体之一是二氧化碳气体,其全球变暖潜力较低。为了将这种CO2气体用于实际的GIS,必须通过降低雷电冲击耐受电压来合理化绝缘规范,因为CO2气体的介电强度低于SF6气体。为了降低GIS的雷电冲击耐受电压,同时保持其绝缘性能的高度可靠性,重要的是有组织地定义代表实际浪涌的非标准雷电冲击电压波形(non-standard-LIW)的绝缘特性波形,并与标准雷电冲击波形(standard-LIW)的特征进行定量比较。在本文中,以单频振荡作为非标准LIW的典型示例,通过实验获得了CO2气隙的绝缘特性,同时改变了频率和阻尼率。因此,即使改变频率和阻尼率,介电击穿电压也几乎没有变化,始终保持高于标准LIW的1.08至1.17倍。因此,发现对于使用二氧化碳气体的GIS,通过将非标准LIW转换为等效的标准LIW,可以将绝缘规范合理化约10%。另外,研究了气压和气隙长度的影响,发现在基本实验条件下获得的结果很可能适用于接近实际GIS条件的条件。

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