dielectric radiation

英 [ˌdaɪɪˈlektrɪk ˌreɪdiˈeɪʃn] 美 [ˌdaɪɪˈlektrɪk ˌreɪdiˈeɪʃn]

网络  电介质辐射

电力



双语例句

  1. Non-thermal plasma produced by a dielectric barrier discharge ( DBD) of benzene at low pressure was investigated by tunable synchrotron radiation single-photon ionization and molecular-beam mass spectrometry techniques.
    利用同步辐射真空紫外单光子电离技术和分子束取样,研究了低压下苯的介质阻挡放电产生的低温等离子体。
  2. Calculation of the mode density of dielectric microcylinder and thermal radiation spectrum
    介电微圆柱的模密度计算和热辐射谱
  3. Start from the vector wave equation for source free region, the hybrid mode field of the cylindrical dielectric waveguide is presented via the method of seperation of variables, Given the aperture field, the radiation field of the conic dielectric horn is forwarded with E mode formula.
    本文用分离变量法求解波动方程,推导出介质加载喇叭的矢量位,进而对混合模介质加载圆波导内场进行分析,并由此得到小张角介质加载圆锥喇叭的口径场和远区辐射场;
  4. In this paper, the Radar Cross Section ( RCS) of dielectric coated perfectly conducting circular cylinders is calculated by using the On-Surface Radiation Condition ( OSRC).
    本文利用表面辐射条件(On-surfaceRadiationCondition,简称OSRC)分析和计算了介质覆层导电圆柱的RCS(RadarCrossSection)。
  5. An unidirectional dielectric radiator for antenna is simulated with FDTD method on PC. The radiation pattern is calculated, and numerical results agree with experimental results.
    在PC机上应用扩展虚拟内存技术对一种单向介质辐射器(UDR)模型进行了FDTD模拟,求出了远场区辐射方向图,得出的数值结果与实测值较好地吻合;
  6. Analysis of Effect of Radome Dielectric on Radiation Characteristics of Disk Patch Antenna Radiation Characteristic
    天线罩介质对圆形贴片天线辐射特性影响的分析
  7. Theoretical analysis of spherical dielectric resonators with superhigh radiation Q-factor
    极高Q值球形介质谐振器的理论分析
  8. The effects of above conditions, high k dielectric/ Si system and the selection of SOI as the substrate materials on the total dose radiation effects were reviewed.
    综述了上述条件、高k介质/硅系统以及选择SOI材料作为衬底材料对MOS器件总剂量辐射效应的影响。
  9. A kind of dielectric rod antenna based on small projectile fuzes is designed and its radiation patterns and VSWR are measured.
    以小口径弹药引信为应用背景设计了一种介质天线,并测试了天线的辐射方向图和电压驻波比;
  10. Besides, the use of point source model much decreased the computation needed in the method. The calculated results also show that the high gain microstrip antennas covered with dielectric layers can still have rather high radiation efficiency.
    分析结果还表明,在一定条件下,增益和效率是可以兼顾的,用加盖的方法提高天线增益的同时仍可使天线具有较高的辐射效率。
  11. Study on space charge and dielectric character of dielectric after high energy electron radiation
    高能电子辐照后高聚物内部空间电荷和介电性能研究
  12. Then the mode series of step index planar dielectric waveguide and circular optical fiber are studied, including propagation modes and radiation modes.
    接着推导了阶跃折射率平面介质波导和圆光纤的正交模式&包括束缚模式和辐射模式。
  13. The features of Hafnium are high melting point, high dielectric constant and high absorption of high-energy radiation.
    铪的化合物具有很高的熔点,强的高能射线吸收能力,高介电常数。
  14. UV excimer lamp, which is generated by dielectric barrier discharge, has a certain intensity of narrow-band ultraviolet radiation, with a very good application prospect.
    采用介质阻挡放电激发产生准分子紫外辐射的准分子紫外光源可以发射具有一定强度的窄带紫外辐射,有着非常良好的应用前景。
  15. Second, SiO2 dielectric material from the MOS device most commonly used starting, researching the SiO2 dielectric materials effect and mechanism of radiation damage.
    其次,从MOS器件中最常用的SiO2介质材料出发,研究了SiO2介质材料的辐照损伤效应和机理。
  16. It is designed using rectangular microstrip antenna, by method of introducing an air cavity through dielectric layer, in order to increase impedance bandwidth and improve radiation characteristics.
    它采用一个矩形微带贴片天线来设计的,通过在介质层引入一个空气腔的方法来使它达到增加阻抗带宽和提高辐射特性的作用。
  17. The measured results show that the dual-band dual-polarized dielectric resonator antenna has good radiation characteristics.
    测试结果表明,该双频段双极化介质谐振器天线具有较好的辐射特性。
  18. The spacecraft will suffer various threats from airspace and among these threats the deep dielectric charging and discharging effect caused by high energy electron radiation is an important reason for the abnormal operation or fault of the electronic equipment in spacecraft.
    航天器在空间轨道飞行时会遭受多种空间环境威胁,其中由空间高能电子与航天器介质相互作用引起的介质深层充电效应是造成航天器电子设备运行异常或故障的重要原因。