500 kV/220 kV同塔混压四回输电线路感应电压及电流的计算与测量分析
同塔混压四回输电线路间距小、回路多、电压等级差异大,因而电磁耦合和静电感应作用更强。为了有效降低感应电水平应合理设计输电线路相序、布置方式及接地开关选型。文中以某500 kV/220 kV同塔混压四回输电工程为研究对象,基于ATP-EMTP软件构建仿真模型,研究了500 kV双回线路在运行方式、线路潮流、相序布置、分段接地多个因素交互作用下,对同塔220 kV双回线路感应电压与感应电流的影响规律;基于柔性电流传感技术,现场实际测量了220 kV双回线路感应电流,进一步分析与验证了计算模型的准确性 ...
徐党国 +7 more
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[A signal sensing system for monitoring the movement of human respiratory muscle based on the thin-film varistor]. [PDF]
Yuan Y, Zhang Z, Xie L, Huang H, Liu W.
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[Diabetic Charcot neuroarthropathy initially misdiagnosed as rheumatoid arthritis and gout: A case report]. [PDF]
Gu J, Li X, Zhao J, Mu R.
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[Limb reconstruction over four decades: the seamless path from technical integration to disciplinary ecology]. [PDF]
Zhu Y.
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[Development of a balloon sensor device for force-electrical coupling measurement of esophagus]. [PDF]
Ran P +5 more
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[Molecular imprinting strategies and advances targeting biomembranes]. [PDF]
Yuan XT, Wang L, Chen LX, Hu LH.
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[Clinical characteristics and prognosis of primary immune thrombocytopenia complicated with diffuse alveolar hemorrhage]. [PDF]
An ZY +8 more
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带电测量35~110千伏套管、电流互感器的介质损失角 附视频
本文介绍带电测量35~110千伏套管、电流互感器的介质损失角正切(tgδ)的两种方法:电压互感器反馈法和高压电容杆法的原理,并通过在运行中变电站的带电测试证实这两种方法代替相应电压下标准电容器是可行的。从停电与带电测试结果比较它有一定的差别,原因是互感器的相角差和较强的系统邻相电场干扰,但绝对误差不大于0.4%,仍可用以监视套管和互感器的绝缘状态。在采用互感器反馈法带电测量时母线侧互感器与试验用互感器之间不能相距太远,互感器二次连接导线越短越好,否则会引致很大的测量误差,应予注意 ...
doaj
[How I treat vasovagal syncope in children]. [PDF]
Zou RM, Wang C.
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