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1)  coil capacitance
线圈电容
2)  coil capacity
线圈电容,线圈的固有电容
3)  volume coil
容积线圈
1.
Objective To compare the performance of 8-channel phased array carotid surface coil over a conventional 16-chanel volume coil,the signal-to-noise ratio(SNR) and image uniformity in 3.
目的为了验证相控阵颈动脉表面线圈(8通道)的性能,以Philips相控阵头颈联合容积线圈(16通道)为比较对象,分别测量了它们的表面线圈和容积线圈在Philips3。
4)  capacitance parallel connected coil compensation
并联电容线圈补偿
5)  electromagnetic coil
电磁线圈
1.
This paper investigates the electrical resistance characteristics of electromagnetic coil alloy for high-current-protection switch.
主要探讨了舰船大电流保护开关用电磁线圈合金材料的选材,研究了铜镍合金材质、冷加工度、热处理温度对电性能的影响,开发出了一种满足舰船大电流保护开关要求的新型电磁线圈合金材料。
6)  Discharge coil
放电线圈
1.
Verifying the voltage ratio of voltage transformer (discharge coil) by method of adding the high voltage;
采用高压加压法校核电压互感器(放电线圈)变比
2.
Two cases of discharge coil explosion were selected for analysis and the causes are found to be overvoltage and wrong wiring respectively.
选取两个放电线圈爆炸的实际案例进行分析,原因分别为过电压及接线错误,提出了正确接线、控制电容器操作间隔以及有效巡视的反措,并进行了技术分析。
补充资料:并联无功补偿装置


并联无功补偿装置
shunt equipment for var compensation

eomPensation) 基本原理···············,·······················……56 补偿的基本原则······························……56 主要类型·······,·······························……56 机械投切型无功补偿装里···············……56 并联电容器······························……57 滤波器····································……57 并联电抗器······························……57 快速调节型无功补偿装里···············……57 同步调相机······························……57 静止无功补偿装置·····················……57 静止同步补偿器························……57 主要技术性能·································……57 用途·············································……57 负荷补偿····································……57 交流输配电系统补偿·····················……57 超高压直流输电系统补偿···············……57 兼作滤波装置······························……57 发展简况·······································……59 并联在电力网上,向电网注人或从电网吸收无功功率的装置,常称无功补偿装置。但就补偿装里接入电网的方式而言.不仅包括并联补偿装置,还应包括申联补偿装置。无功功率的性质,有感性无功功率和容性无功功率的区别。电力系统的负荷大都是感性负荷,即消耗感性无功;习惯上“无功”就是指感性无功,即不标明性质的无功功率即指感性无功功率。如电容器是容性负荷,它吸收容性无功功率亦即发出感性无功功率,一般称电容器发出无功或说它是无功电源;反之电抗器吸收无功则是无功负荷。静止同步补偿装1既可工作于容性区又可工作于感性区,既可供给无功也可吸收无功。向系统提供无功称为“正补偿”,从系统吸收无功则称为“负补偿”。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条