electromagnetic current

英 [ɪˌlektrəʊmæɡˈnetɪk ˈkʌrənt] 美 [ɪˌlektroʊmæɡˈnetɪk ˈkɜːrənt]

网络  电磁流

电力



双语例句

  1. The Application of Electromagnetic Eddy Current Brake in the Brake System of Wind Turbine
    电磁涡流刹车在风力机制动器中的应用
  2. Research of the electromagnetic eddy current brake as the auxiliary brake for the wind turbines
    风力发电机混合式刹车系统的电磁涡流刹车研究
  3. Comparison of Electromagnetic Current Meter Sensor
    电磁海流计传感器性能的比较
  4. Optical Current Transformer ( OCT) resolves the problems of saturation and low transient precision created by electromagnetic current transformer.
    光学电流互感器(OCT)解决了继电保护中传统电磁式电流互感器的饱和以及暂态精度低等问题。
  5. Effect of non-periodic component in short circuit current on electromagnetic current protection
    短路电流中非周期分量对电磁式电流保护的影响
  6. Along with the development of EHV power transmission and transformation, serious defects of traditional electromagnetic induction-type current transformer emerge.
    随着超高压输变电的发展,传统电磁感应式电流互感器暴露出严重的缺点。
  7. Conventional electromagnetic current transformers ( CT) possess high accuracy of steady-state electrical current measurement, but produce problems caused by magnetic saturation.
    传统电磁式CT具有较高稳态电流测量精度,但存在饱和问题;
  8. Application of Flywheel Sets on the Electromagnetic Eddy Current Retarder Experiment Desk
    飞轮组在电涡流缓速器试验台上的应用
  9. Development of Calculation Software for Electromagnetic Current Transformers with VB Language
    应用VB语言开发电磁式电流互感器的计算软件
  10. Measurement of Medium Consumption Factor for Electromagnetic Current Transformer
    电磁式电流互感器介质损耗因素(tanδ)测试方法
  11. A Free-Fall Electromagnetic Current Meter
    自由降落式电磁海流计
  12. The comparison between OCT ( Optical Current Transducer) and traditional electromagnetic current transformer shows that the former is the ideal substitute for the latter with its good performance.
    对光电式电流互感器(OCT)和传统的电磁式电流互感器进行了比较,结果表明OCT性能优良,是传统电流互感器较为理想的替代产品。
  13. The development of the optimum calculation software of electromagnetic current transform-ers is introduced. The designing and calculating processes are given.
    介绍了电磁式电流互感器优化计算软件的开发,给出了电流互感器产品的设计计算程序。
  14. Adding Protection against Over-voltage in Electromagnetic Residual Current Operated Protector
    在电磁式剩余电流动作保护器上增设过电压保护
  15. The Application of Digital Signal Processing in the Electromagnetic Current Meter
    数字滤波技术在电磁海流计中的应用
  16. The paper introduced the principle and method of measuring the thickness and inspecting the defect with electromagnetic eddy current testing for tubes of in-service heat exchanger in urea plant.
    本文介绍了用电磁涡流法对尿素装置在用换热器管子进行测厚及探伤的原理及方法。
  17. The Development of the Electromagnetic Eddy Current Retarder Test-bed
    电涡流缓速器测试台架的研究
  18. Researches on Properties of the Electromagnetic Current of the b-Quark and t-Quark
    对(b,t)夸克电磁流性质的探索
  19. Whether the electronic current transformer can entirely replace the traditional electromagnetic current transformer depends on its reliability of long-term operation.
    电子式电流互感器最终能否全面代替传统互感器,取决于其长期运行的可靠性。
  20. At present, the electromagnetic current transformer ( CT) is still widely used in electric power relay protection.
    当前电力系统继电保护广泛采用的电流互感器(CT)仍然是传统的电磁式电流互感器。
  21. The traditional electromagnetic current transformer has no longer met the demand of the development in electric power system, which was displayed in the gradual increasing of transmission capacity and voltage as well the strong smart grid.
    随着现在电力系统输送容量和电压等级的不断增大,以及坚强智能电网建设的推进,传统的电磁式电流互感器已经不能满足电力系统发展的需求。
  22. A photoelectric hybrid coupling current transformer has a lot of obvious advantages over a traditional electromagnetic current transformer. It will definitely find more and more applications.
    光电式电流互感器和传统的电磁式电流互感器相比有很多突出的优点,必将得到广泛的应用。
  23. The electronic current transformer has gradually become the substitute of the traditional electromagnetic current transformer.
    电子式电流互感器已逐渐成为传统的电磁式电流互感器的替代产品。
  24. As the voltage level of power system continues to improve, the conventional electromagnetic current transformer encounters with more and more problems in the process of using.
    随着电力系统电压等级的不断提高,传统的电磁式电流互感器在使用中遇到了越来越多的问题。
  25. So it is the trend of ECT to replace electromagnetic current transducer.
    故用ECT取代电磁式电流互感器已成为必然趋势。
  26. Conventional electromagnetic current transformer secondary side will be difficult with the number of measurement and relay protection device perfectly compatible with.
    传统的电磁式电流互感器将难以与二次侧的数字化测量与继电保护装置完美兼容。
  27. As the increase of the current and voltage, the traditional electromagnetic current transformer could not satisfy the requirements of the measurement.
    随着电压和电流等级的提高,传统的电磁式电流互感器不能满足测量的要求,光纤电流传感器以其特有的优势,受到广泛的关注。
  28. With the increase of the power transmission capacity and grid voltages, the traditional electromagnetic current transducer has shown its weakness.
    随着近年来电力传输容量的不断增长和电网电压的提高,传统电磁式电流互感器已暴露出致命弱点。
  29. So the demand of current sensors with immunity to high voltage, in-time monitoring, high precision measurement of fault, and digital information management is increasing. Now electromagnetic current transducers, which have been widely used in many areas, can not meet these requirements.
    电力工业在高压运行、实时监测、高精度故障诊断、数字信息管理等方面对电流传感器提出了更高的要求,而现在使用的电磁式电流互感器已经难以满足这些要求。
  30. With the improvement of transmission capacitance and increasingly high voltage in power system, the magnetic saturation and insulation problem of traditional electromagnetic current transformer becomes more serious, and thus this does not meet the requirement that the network develops towards automation and digitized direction.
    随着近年来电力系统容量的不断增加和电网电压运行等级的不断提高,传统的电磁式电流互感器的磁饱和与绝缘难的问题也日益突出,无法适应现代电力系统自动化、数字化的发展要求。