位移电流

  • 网络DISPLACEMENT CURRENT
位移电流位移电流
  1. 并对位移电流作了简单的讨论。

    The displacement current is discussed .

  2. 研究表明,极不均匀场中SF6绝缘固体介质表面在陡波作用下的闪络特性不同于气体间隙,其原因可能是位移电流的作用。

    The results show that the flashover behaviors along the surface of spacers in SF6 in highly non - uniform electric field are different from those of the gas gap , which may be due to the displacement current .

  3. 当电荷的运动速度远小于光速时,空间任意点的位移电流密度矢量的大小与位置矢量r有关,且方向与电场的方向不平行;

    When the moving speed of the electric charge is far slower than velocity of light , an arbitrary point in space , whose density vector 's quantity of translocated current is related to the place vector , and its direction is not parallel with the direction of electric field ;

  4. 在电场变化、磁场稳定的特殊情况下,Maxwell位移电流方程可以从BiotSavart定律导出,从而不必引进位移电流的概念兼论电磁场理论的逻辑结构

    In the Special Conditions of Changing Electric Fields and Stationary Magnetic Fields , Maxwell 's Equation of Displacement Current can be Derived from Biot-Savart Law , then it is not Necessary to Introduce the Conception of the Displacement Current

  5. 因此,从产生磁场的角度上讲,变化的电场相当于一电流,这个电流叫做位移电流,由此可见,运动电荷周围是有位电流存在的。

    Thus , there is displacement current around the motion charge .

  6. 关于带电粒子流和位移电流的联系

    The Connection between the Charged Particle Current and the Displacement Current

  7. 电位移通量和位移电流的变换关系

    Conversion relationship between the electric displacement flux and the displacement current

  8. 层状介质高频电磁场响应及位移电流影响

    High-Frequency Electromagnetic Response of Layer Model and the Influences of Displacement Currents

  9. 圆形平板电容器的磁场与位移电流的磁效应

    Magnetic Field of Circular Flat Capacitor and Magnetic Effect of Displacement Current

  10. 运动电荷产生的位移电流磁场

    Exercise . The Magnetic Field of the Displacement Current with a Movi

  11. 位移电流线是何形状?

    What shape does the line of displacement-current have ?

  12. 充电圆形平行板电容器中位移电流产生的磁场分布

    Magnetic field distribution produced by displacement current in charging circular parallel plate condenser

  13. 位移电流的磁场是如何分布的?

    How is the magnetic - field distributed ?

  14. 电荷的运动速度与位移电流的分布

    Speed of Charge and Distribution of Displacement Current

  15. 运动电荷的位移电流和电磁场性质

    The Displacement Current of Moving Electric Charge and the Property of its Electromagnetic Field

  16. 位移电流的热效应探讨

    Investigation on the heat effect of displacement current

  17. 在介质中传导电流很小,位移电流可以很大,所以我们推导的公式忽略传导电流。

    In the medium conducted current is small , displacement current can be very big .

  18. 基于位移电流的非接触式接近传感器

    Non-Contact Proximity Sensor Based on Displacement Current

  19. 位移电流和传导电流

    The Displacement Current and Conduction Current

  20. 关于位移电流的引入

    On the Introduction of Displacement Current

  21. 介质阻挡放电中的位移电流

    Displacement current in dielectric barrier discharges

  22. 位移电流的性质

    On the Properties of Displacement Current

  23. 对应于可变有源无旋电场的位移电流不激发磁场。

    The displacement current corresponding to a variable irrotational electric field does not excite any magnetic field .

  24. 本文证明了在似稳恒条件下,全空间的位移电流在任何一点激发的磁场恒为零。

    The magnetic field of overall space displacement current excited at any point is always proved tobe zero .

  25. 我们通常所说的电容器中的位移电流就是对应于可变有源无旋电场的位移电流。

    The displacement currents in capacitors , which are of common speaking , correspond to the irrotational electric field .

  26. 本文论述了位移电流的三种引入方法,并对位移电流的一些基本性质进行了探讨。

    In this paper , we discuss three methods leading to the displacement current , and its some main properties .

  27. 真空中的位移电流和传导电流以同样规律激发磁场吗?

    Does the displacement current in empty space and the conductive current separately produce a magnetic field in the same manner ?

  28. 推导出了考虑介质极化损耗和位移电流情况下暂态电场计算的数学模型。

    A mathematical model of transient electric field is deduced , which takes dielectric polarization loss and displacement current into account .

  29. 本文以对比的方式从四个方面论述了位移电流、传导电流的异同。

    This article discusses in the way of comparison the similarities and differences between displacement current and conduction current from four aspects .

  30. 真空中的位移电流与真实电流同等地激发磁场的传统提法并没有错

    The traditional expression " The displacement current generates magnetic fields in the same manner as an actual current " is not wrong