金属氧化物避雷器,MOA
1)MOA[英]['m???][美]['mo?]金属氧化物避雷器
1.Appling of Simultaneous Sampling in MOA Performance Inspection;同步采样技术在金属氧化物避雷器特性检测中的应用
2.Analysis on Service Status of MOA in Guangdong Province;广东省金属氧化物避雷器运行情况分析
3.Development and Application of MOA Testing Methods;金属氧化物避雷器试验测试方法的发展及应用
英文短句/例句

1.Metal oxide surge arresters without gaps for a.c. systemsGB11032-1989交流无间隙金属氧化物避雷器
2.Study on Interphase Interference to On-line Measurement of Metal Oxide Arrester金属氧化物避雷器带电测试干扰分析
3.Research of On-Line Testing Method of Metal Oxide Arrester金属氧化物避雷器在线测试方法改进
4.Fundamental Study of On-line Monitoring for Metal Oxide Surge Arrester;金属氧化物避雷器在线监测的基础研究
5.Study on One of On-line Monitoring Technologies of MOA;一种金属氧化物避雷器在线监测技术的研究
6.Malfunction Analysis of 110kV Polymeric Metal Oxide Surge Arrester110kV复合外套金属氧化物避雷器故障分析
7.Relation Between Resistive Current and MOA Affected with Damp交流金属氧化物避雷器受潮与阻性电流的关系
8.Failure Diagnostics and Analysis of Metal Oxide Surge Arrester Without Gaps Checkout无间隙金属氧化物避雷器缺陷诊断与分析
9.Application Status of MOA in 35 kV Power System金属氧化物避雷器在35kV电力系统的应用
10.Method for Testing 220 kV MOA without Removing the HV Lead Conductor220kV金属氧化物避雷器不拆高压引线的试验方法
11.Research on the Influence of Operation Modes to VFTO in 750 kV GIS750kV GIS中金属氧化物避雷器对VFTO影响的研究
12.Dielectric loss and capacitance test on 220kV and above MOA220kV及以上金属氧化物避雷器不拆引线试验
13.The Study on Leakage Current Monitor of MOA金属氧化物避雷器泄漏电流监测仪的研制
14.Electric Field Analysis of 500 kV Tank Type Metal Oxide Surge Arresters500kV六氟化硫绝缘罐式金属氧化物避雷器电场分析
15.Diagnosising and Analysising the Aged Flaw of MOA Valve Piece金属氧化物避雷器阀片老化缺陷的诊断及原因分析
16.Design of Based on DSP and ARM MOA Monitor;基于DSP和ARM的金属氧化物避雷器测试系统的设计
17.Study on Application of Insulation On-line manitoring System for Metal Oxide Arrester in Yun Chang Power plant;永昌电厂金属氧化物避雷器绝缘在线监测系统的应用研究
18.A Modified Model for Metal-oxide Surge Arrester and Its Parameter Identification一种改进的金属氧化物避雷器模型及其参数识别
相关短句/例句

metal oxide arrester金属氧化物避雷器
1.The author analysed the dynamic characteristics and the simulation model building of metal oxide arrester(MOA).在雷电冲击下,对金属氧化物避雷器的动态特性和仿真计算中等效模型的建立进行了分析。
2.The 3 kinds of fault diagnosis method (preventive testing, inspection or detection and infrared photography) for metal oxide arrester (MOA) in operation were introduced, and the influence of ambient conditions on measuring results was analyzed.介绍了3种目前常用的运行中金属氧化物避雷器(MOA)故障诊断的方法,即预防性试验、监测或检测、红外热成像,并分析了环境条件对测量结果的影响。
3.The equalizing capacitance for 500 kV metal oxide arrester (MOA) can reduce its non - uniform coefficient of voltage distribution, but it is with other unsafe factors, such as big diameter of external bushing, axle asymmetrical electric field, hard to inspect the performances and drop - down of operation reliability, which is not worthwhile to use it.对500 kV金属氧化物避雷器(MOA)而言,虽然均压电容能降低其电压分布不均匀系数,但也带来了外套管径变大、电场变为非轴对称电场、性能难以检验及运行可靠性下降等诸多不安全因素,因而使用其得不偿失。
3)metal oxide arrester(MOA)金属氧化物避雷器
1.A 10 kV metal oxide arrester(MOA) that had failed the preventive test was dissected and found damp in the interior.对一起预防性试验中不合格的10kV金属氧化物避雷器(MOA)进行解剖,发现内部有明显受潮渗水痕迹,通过分析该MOA的密封性,指出绝缘外套与心部之间、阀片之间密封不良是造成MOA受潮的主要原因,提出将整个阀片与其绝缘套作一体式封装,可以彻底解决受潮隐患。
4)metal oxide surge arrester金属氧化物避雷器
1.The paper discusses the neutral point earthing method and the selection ofmetal oxide surge arresters in 3~60 kv power system.对3~60KV电网中性点的接地方式、无间隙金属氧化物避雷器参数的选择等问题进行了分析和探讨,并对应用于小电流接地系统中的一些新技术作了简要介绍。
5)metal oxide surge arrester(MOA)金属氧化物避雷器
1.This paper introduces the composition of metal oxide surge arrester(MOA) resistive current,and analyzes the influence of power grid harmonics during monitoring on-line on amplitude value and phase of MOA resistive current components.介绍了金属氧化物避雷器(MOA)阻性电流各分量的构成,分析了在线监测时电网谐波对MOA阻性电流各分量的幅值、相位的影响。
6)MOA default金属氧化物避雷器缺陷
1.Simple assessment of MOA defaults with basic wave amplitude of resistive current can not more meet practical need.用阻性电流基波值来简单判断金属氧化物避雷器缺陷已不能满足实际要求,阐述了金属氧化物避雷器缺陷引起泄漏电流和阻性电流异常常见的四种现象:一内部电阻片与外瓷套之间的局部放电;二内部受潮;三金属氧化物避雷器发生热击穿;四金属氧化物避雷器外套表面的污秽。
延伸阅读

钴钼氢氧化物氧化物磷酸盐CAS:68130-37-0中文名称:钴钼氢氧化物氧化物磷酸盐英文名称:Cobalt molybdenum hydroxide oxide phosphate; Molybdenum cobalt acid phosphate complex; Molybdenumcobaltacid phosphate complex