電子注功率管 的英文怎麼說

中文拼音 [diànzizhùgōngguǎn]
電子注功率管 英文
beam power tube
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  • 電子 : [物理學] [電學] electron
  1. Electro - optical system in high peak power multi - beam klystron

    高峰值速調光學系統的研究
  2. As a high - power twt, we consider the relativistic effect of the solid beam. the numerical results are given in terms of the small signal gain curve and slow - wave ration curve

    作為大的行波,我們考慮了的相對論效應,數值求解「熱」色散方程,得到脊加載盤荷波導幾何參數和參量與小信號增益的關系。
  3. The detail study on the interaction between the electron beam and standing wave of complex cavity gyrotron with gradual transition and gyroklystron has been done in this dissertation, supported by the pre - study important items " the study on 8mm third harmonic gyrotron with a permanent magnet system " and " the study on 8mm high power gyroklystron ". the main works of this dissertation are listed as following : 1. the study on the rf distribution of the complex cavity with gradual transition is presented, in which the multi - modes coupling are taken into account

    本論文就是結合該課題組的「九?五」重點項目「 8mm三次諧波永磁包裝迴旋技術的研究」及「十?五」重點項目「 8mm高迴旋速調技術的研究」 ,對以諧振腔為互作用高頻系統的迴旋脈塞器件中兩種典型的器件? ?迴旋振蕩及迴旋速調與駐波場的互作用進行了深入細致的探討和研究,其中迴旋振蕩採用的是漸變復合腔。
  4. Electron gun is the foremost parts of twt, it can produce electron beam with a certain shape and current, in order to guarantee the reliability and security of work, it ’ s design have to meet to the requirement not only of electric parameter, but also all kinds of subsidiary characteristics such as filament pyrogenation efficiency, warm up time, shape size, pole space capacitance and the ability to be able to bear the press and all kinds of rigorous run conditions such as high temperature, high humidity, low air pressure, strong vibration and great strike

    由於行波的大和高頻等特性,目前還沒有任何其他的器件可以代替。行波是應用高頻磁場與進行互作用的機理進行工作的,而槍是行波中產生並使它成型的基本部件,槍的結構設計決定了槍體自身必須具有良好的抗振可靠性,否則結構發生共振或振動位移過量,就會導致行波的失效。因此對行波槍的研究具有非常重要的意義。
  5. And the simulation on the nonlinear beam - wave interaction of two - cavity gyroklystron is made. the influences of the drift length and beam voltage and current and the velocity ratio of the electron beam and et al. on efficiency and gain are analyzed in detail

    並對34ghz兩腔迴旋速調?波互摘要作用進行了大量的數值模擬研究,分析了漂移區長度、壓、流、速度lhq值、磁場k , ; 、入波等多種因素對互作用及增益的影響。
  6. Relativistic back wave oscillator ( rbwo ) with a coaxial structure has a big power capacity of system. with large radius electron beam to decrease the space charge effects without usage of high current, hence the rbwo can work well at a lower axial guide magnetic field

    同軸返波具有很大的容量,可以採用大半徑,在工作流不變的情況下空間荷效應大幅度降低,因而可工作在低磁場狀態。
  7. A linear theory of rbwo with inner - slot coaxial structure is analyzed detailedly, and the equation of dispersive relation is deduced and computered numerically. 4. particle simulation is used in rbwo respective with coaxial and partial structure. in the simulation, the output parameters of rbwo such as phasespace, contour, vector, voltage, current, output power, interaction efficiency and microwave radiation

    4 .對同軸和偏心返波分別進行了粒模擬,通過改變壓、流、位置、磁場等參數來觀察返波加了內開槽前後相位空間、等位線、矢量、壓、流、輸出、工作頻的變化。
  8. The second, as a novel gyrodevice the two - beam coaxial gyrotron which was proposed by professor liu shenggang is analysed by kinetic theory of ecrm. general dispersion equation for ecrm and expressions for the interaction power and the starting current are derived in the case of eccentricity of the electron beam in the coaxial cavity

    其次,基於迴旋動力學理論,對劉盛綱院士提出的一種新型迴旋-雙同軸腔迴旋進行了初步的線性理論研究分析;通過在迴旋中心坐標系中求解線性伏拉索夫方程,推導出了波互作用方程、互作用、起振流表達式。
  9. Combining with the prospect of our laboratory, design the single - beam double - anode mig and obtain better optimization result. meanwhile, to meet the need of the high power continuous wave ( cw ) in international thermonuclear experiment reactor ( iter ), the study of new double - beam coaxial gyrotron is developing in many countries such as german

    同時,為滿足iter計劃中所需求的大連續波的要求,新型迴旋-雙同軸腔迴旋的研究正在展開,本文對其中的雙磁控入槍進行了研究,並獲得良好的設計結果。
  10. The key component of a high - power microwave device is the rf structure in which the beam and wave interact. to traveling wave tube ( twt ). it is the slow - wave structure ( sws ) which basically determine the performance of the twt

    微波的重要研究領域之一是高微波源,而高微波源的核心部件是與波進行互作用的場所,對行波而言即為慢波系統,它的優劣直接影響高微波源的性能。
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