电压过高,overtension
1)overtension['?uv?'ten??n]电压过高
1.Following the change of time and technical measures,some hidden troubles in the hydropower station transformer,such as the malpractices and its harmful aftermath in the main connection mode and the transformer operation,and the overtension of the terminal voltage and the auxiliary power,were emerged,it is necessary to reform aiming at deferent status.随着时间和技术措施的变化,水电站变压器存在的相关隐患也渐渐浮出水面,比如水电站主接线方式和变压器运行过程中存在的弊端及造成的不利后果,水电站发电机机端电压及厂用电电压过高等,需要针对不同的情况进行改造。
英文短句/例句

1.MAP Sensor Voltage Too HighMAP Sensor Voltage Too High(MAP感知器电压过高
2.Studies on Overvoltage During Full-Voltage Starting in HVDC Transmission System高压直流输电系统全电压起动过电压的研究
3.RESEARCH AND SIMULATION OF OVER-VOLTAGE IN UHV TRANSMISSION LINES特高压输电线路过电压的研究和仿真
4.±800kV UHVDC Overvoltage Simulation Research;±800kV特高压直流输电内过电压仿真研究
5.Calculation of Electric Field and Wave Process in Ultra over Voltage Power Transformer;超高压电力变压器电场及波过程计算
6.The Research of Overvoltage Calculation Model for High Voltage Transmission Line高压输电线路的过电压计算模型研究
7.Over-voltage,Secondary Arc and Reactive Power Compensation in UHV AC Transmission System特高压输电系统过电压、潜供电流和无功补偿
8.Study of Generator Self-excitation Caused by Capacitive Currents of Long Distance UHV Transmission Lines特高压输电线引起发电机自励磁过电压的研究
9.an electronic circuit permits only voltage pulses of predetermined height to pass.只允许预定高的电压通过的电路。
10.Calculation of Overvoltage Caused by Monopolar Grounding on EHV DC Transmission Line超高压直流输电线路单极接地过电压计算(上)
11.Utilizing special gas to be in charge of discharging, the principle suppress the too high voltage.利用特殊的气体管放电原理来压制过高电压。
12.The Research on Over-voltage Extinction and Protection & Control Strategy for UHV Transmission Line;特高压输电线过电压抑制及保护控制策略研究
13.Study on Design and Implementation of Overvoltage Online Monitoring System for High Voltage Power Network;高压电网过电压在线监测系统设计与实现研究
14.The Research on Over-Voltage and Restrain Strategy for UHV Transmission Line特高压输电线路过电压及其抑制策略研究
15.Design and Application of Over-voltage Online Monitoring System for HV Power Gird高压电网过电压在线监测系统的设计与应用
16.Research on Inner Overvoltage in UHVDC Transmission Line Caused by Flashover to Ground Fault特高压直流输电线路故障过电压的研究
17.On charge, the counter-voltage or overvoltage of the battery could be so high as to restrict the charging characteristics at low temperatures.充电时,蓄电池的反电压或过电压太高,以致限制了低温充电性能。
18.Study on Over-voltage during Full-voltage Starting in Hulunbeier to Liaoning DC Transmission System呼—辽高压直流输电系统全电压起动过电压的研究
相关短句/例句

overtension['?uv?'ten??n]电压过高,过电压
3)Overvoltage of The Three Phase Opening Circuit Simultaneity高频重燃过电压
4)high order resonant overvoltage高次谐振过电压
5)voltol process,voltolization process高电压处理过程
6)higher harmonicwave resonanceovervoltage高次谐波谐振过电压
延伸阅读

电力系统电压互感器谐振过电压电力系统电压互感器谐振过电压resonance overvoltage due to potential transformer in electric power system  南定理,可将三相对地电容等效连接在电撅变压器和互感器的两个中性点之间,由此着出,谐振属于零序性质。无论是电源合闸至空载母线所引起的电压互感器的涌流现象,还是线路中发生对地闪络和熄弧后C。中残余电荷经电压互感器放电所引起的磁饱和现象,都会在一定的C0值下激发起谐振过电压,它表现为电力系统中性点发生位移,并全部反映至开口三角形绕组,引起虚幻的接地故障信号。这是配电网中造成故障最多的一种内部过电压. 图1中性点不接地系统中三相电压 互感器接线图和等效谐振回路(a)三相电压互感导接线图;(b)等效谐振回路 由于谐振的零序性质,导线的相间电容、余弦电容器和传愉的三相有功负荷均对谐振不起作用。 随着C。的增加(即导线增长),将依次发生高频、工频和分频谐振。在很短的空母线合闸时,C0很小,会产生3倍以上的高频谐振过电压。较大的c0则会出现工频谐振过电压,此时一相对地电压很低,其它两相的对地电压接近于线电压,故工频谐振和单相接地现象往往难以区别。当母线上的出线较长时,C。很大将会发生分频谐振,其频率略低于电源颇率的一半,电压表的指针会发生低频摆动,谐振电压分t和开口三角形电压接近于相电压,由于此时谐振频率和相应的励磁感抗减半,互感器趋于深度磁饱和,励磁电流急剧增大,高达额定值的数十倍以至百倍以上,从而造成互感器的发热、喷油以至爆炸。在高频和分频谐振时,三相对地电压同时升高。 可以通过两种途径来抑制上述谐振现象.其一是采取阻尼吸能措施,即在开口三角形绕组两端临时并接一个低值电阻(在6一10kV小电网中,可用200~50ow的白炽灯泡)或将互感器高压中性点经大电阻接地。其二是破坏谐振条件,即人为地增大对地电容使之超过某一临界值,或将开口三角形绕组临时短接,或将互感器高压中性点临时不接地,或将电网改为通过消弧线圈接地。d旧nl一x一tongd旧nyo hugonq一x旧zhen guod{anyo电力系统电压互感公谐振过电压(resonanceovervoltage due to potential transformer inelectrie power system)电磁式电压互感器由于铁芯磁饱和引起的铁磁谐振过电压。在中性点不接地和直接接地电力系统中均有可能发生. 中性点不接地系统中电压互感器的谐振过电压图1中电源变压器的中性点不接地,电压互感器的中性点直接接地,其励磁电感La、L。和Lc分别与导线和母线的对地电容C。相并联而形成谐振回路。