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高压电容器极间绝缘耐潮湿性能的试验研究 被引量:5
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作者 姜胜宝 倪学锋 +3 位作者 林浩 罗天鸣 谢光良 张政成 《电力电容器与无功补偿》 北大核心 2019年第1期46-48,58,共4页
高压电力电容器极间固体绝缘广泛采用聚丙烯薄膜,液体绝缘广泛采用苄基甲苯,由此电力电容器的性能得到了很大提高。然而电力电容器在电力系统中运行数量巨大,难免会有漏油受潮故障发生,在这种条件下电容器必须不会发生扩大性故障。因此... 高压电力电容器极间固体绝缘广泛采用聚丙烯薄膜,液体绝缘广泛采用苄基甲苯,由此电力电容器的性能得到了很大提高。然而电力电容器在电力系统中运行数量巨大,难免会有漏油受潮故障发生,在这种条件下电容器必须不会发生扩大性故障。因此,极间绝缘在受潮条件下的绝缘性能对电力电容器的运行安全性至关重要。本文通过将电力电容器自然受潮的方式,获得电容器元件受潮条件下的绝缘强度,并用此数据评判高压电容器极间绝缘的耐受性能,为电力电容器的制造及运行提供参考。 展开更多
关键词 极间绝缘 受潮 苄基甲苯 击穿场强 聚丙烯薄膜 串段
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高压并联电容器耐电强度仿真 被引量:2
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作者 王耀 刘菁 《电力电容器与无功补偿》 2009年第2期10-13,共4页
提出了高压并联电容器极间绝缘可靠性数学分析模型,通过计算机模拟得出影响高压并联电容器极间绝缘可靠性的诸多因素,并提出了提高电容器极间绝缘水平的措施。
关键词 正态分布 数学模型 电容器可靠性 极间绝缘
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Partial discharge characteristics of interturn insulation used for inverter-fed traction motor under bipolar impulses 被引量:11
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作者 WU GuangNing CAO KaiJiang +4 位作者 LUO Yang GAO Bo WANG Peng ZHANG YiQiang XU HuiHui 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第8期2346-2354,共9页
Inverter-fed traction motors,which are employed for electric-multiple-units(EMUs),are subjected to Pulse Width Modulated(PWM) impulse voltage.Impulse voltage has fast rise/fall time and high repetition frequency.The f... Inverter-fed traction motors,which are employed for electric-multiple-units(EMUs),are subjected to Pulse Width Modulated(PWM) impulse voltage.Impulse voltage has fast rise/fall time and high repetition frequency.The failure mechanism of insulation under impulses is different from that of standard 50 Hz sinusoidal condition.Partial discharge(PD) characteristics(discharge number,mean discharge quantity and phase resolved partial discharge(PRPD) pattern) with different frequencies and different rise times of impulse voltage were investigated.The results reveal that discharge number and mean discharge quantity increase,while PRPD pattern moves to the zero of impulse voltage with decrease of rise time.Discharge number and PRPD pattern follow that trend with increase of frequency,the value of mean discharge quantity is similar.Memory effect of the deposited space charges on PD was studied.PRPD pattern moves to the zero of bipolar impulse voltage due to the role of space charges,with increase of frequency and decrease of rise time.It is revealed that available discharge time is prolonged and overvoltage across the cavity increases with augment of frequency,which results in discharge number increasing.Under the condition of shortening the rise time,with the same statistical time lag tL,△V would increase if dV/dt is higher,which results in enhancement of discharge quantity.Discharge number increases with reduction of rise time,because the decreased multiple of td is lower than the increased multiple of dV/dt.Study of PD characteristics and role of space charges is helpful to the exploration of the destructive mechanism of insulating materials under bipolar impulse. 展开更多
关键词 partial discharges bipolar impulse interturn insulation electric-multiple-units memory effect space charges
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