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Surface Partial Discharge Characteristics of Oil-paper Insulation Under Combined AC-DC Voltage 被引量:5
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作者 SHA Yanchao ZHOU Yuanxiang +3 位作者 NIE Dexin WU Zhirong DENG Jiangang LU Licheng 《高电压技术》 EI CAS CSCD 北大核心 2013年第8期1902-1910,共9页
The valve side windings of converter transformers bear AC, DC, impulse, and reversal-polarity voltages during operation, which could result in serious insulation problems of the equipment. By performing experiments wi... The valve side windings of converter transformers bear AC, DC, impulse, and reversal-polarity voltages during operation, which could result in serious insulation problems of the equipment. By performing experiments with surface discharge model of oil-paper insula- tion at 80 ℃ under combined AC-DC voltage for 200 h, we studied the spectrums and statistical parameters of partial discharges at different discharge stages. Furthermore, some fingerprint parameters were calculated in order to estimate the development situation of par- tial discharge, while the characteristic gases dissolved in the transformer oil were measured by gas chromatography. The surface discharges in the experiments were observed using a high speed camera, and a full discharge process could be marked off into four stages as follows. ①The elementary stage. When a partial discharge occurs near electrodes, electrical charges are injected into the region near electrodes and causing bubble generation. ②Due to their high resistivity and low dielectric constant, the bubbles would bare the major part of the voltage applied to samples. Therefore, discharge happens inside the small bubbles, and it emits a lot of light. ③Micromolecules of gas are produced in discharge, and further ionization in the transformer oil takes place simultaneously when high-energy electrons collide with oil molecules. ④The carrier charge moves forward to electrodes driven by the applied electric field, till they neutralize with the charge from electrodes, and hence discharge channels are formed subsequently. 展开更多
关键词 AC-DC 放电特性 绝缘表面 电压 油纸 油中溶解气体 换流变压器 合作
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基于EMTP的并联电容器—放电线圈回路放电模型研究 被引量:4
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作者 李特 罗保松 +3 位作者 金祖山 金涌涛 王少华 周国良 《电力电容器与无功补偿》 北大核心 2018年第6期84-90,共7页
现行标准对放电线圈的放电性能有要求,但目前尚无针对电容器组经放电线圈电荷释放过程精确计算的研究。本文建立了单相电容器组并联放电线圈放电回路的等值电路模型,并给出了模型中各参数的确定方法。使用EMTP对单相电容器经放电线圈的... 现行标准对放电线圈的放电性能有要求,但目前尚无针对电容器组经放电线圈电荷释放过程精确计算的研究。本文建立了单相电容器组并联放电线圈放电回路的等值电路模型,并给出了模型中各参数的确定方法。使用EMTP对单相电容器经放电线圈的放电过程进行了计算,计算结果与实测放电过程符合较好。利用本文建立的放电回路电路模型,研究了放电线圈参数对放电过程的影响,结果表明:放电线圈一次绕组电阻增大,放电过程中电容器两端电压、电流的震荡衰减过程加快;放电线圈饱和电感值减小,电压震荡的第一个峰值减小、电荷释放速率加快。 展开更多
关键词 放电线圈 并联电容器 电荷释放 一次绕组电阻 饱和电感
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