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1)  ICRH
离子回旋共振加热
1.
ICRH SYSTEM AND INITIAL EXPERIMENTSIN THEHL-1M TOKAMAK;
HL-1M装置离子回旋共振加热系统及初步实验
2.
Through analysis of the system efficiency and key technologies it is pointed that the key problems of designing a fine VASIMR are the development of high performance helicon wave plasma source and the improvement of the ICRH sy.
介绍了VASIMR的基本组成(螺旋波等离子体源、离子回旋共振加热系统I-CRH、磁喷嘴)及工作原理。
3.
Using a new array of five iodine mercury (HgI 2) semi conductor detectors,the radiation flux and the energy spectra of X ray in the range of 10~150keV are measured under the condition of ohmic heating,pellet injection and ion cyclotron resonance heating (ICRH) respectively.
用新研制的五通道碘化汞 ( Hg I2 )半导体探测器阵列分别观测了在欧姆加热、弹丸注入及离子回旋共振加热 ( ICRH)条件下 ,HL- 1M等离子体中的超热电子引起的能量在 10~ 15 0 ke V范围内的 X射线辐射强度的时空变化 ,及超热电子辐射的 X射线能谱。
2)  ion cyclotron resonant heating
离子回旋共振加热
1.
Experiments have been carried out with encouraging results on the full wave current drive and plasma current ramp\|up by low hybrid waves (LHW), high power ion cyclotron resonant heating (ICRH), synergy between LHW and ICRH, RF conditioning and low voltage start\|up.
HT - 7超导托卡马克在过去的一年中取得较大进展 :高参数放电时间长度接近 4s,总加热功率超过 1MW ,在低杂波全波驱动、电流爬升、离子回旋共振加热、双波协同效应、射频壁处理、低环电压启动等方面都取得可喜的结果 。
3)  ECRH system
电子回旋共振加热系统
4)  ECRH
电子回旋共振加热
1.
Development of 1MW ECRH transmission system in the HL-2A tokamak;
HL-2A装置1MW电子回旋共振加热传输系统研制
2.
Design and Application of Control System for ECRH;
电子回旋共振加热控制系统的设计与应用
3.
The ECRH water cooling system of HL-2A tokamak has been successfully developed,the maximum flux and pressure of this system reach 94m3.
6MPa总流量达94m3·h-1的HL-2A装置电子回旋共振加热水冷却系统,介绍了该系统的设计、水压控制和参数测量。
5)  Electron Cyclotron Resonance Heating (ECRH)
电子回旋共振加热(ECRH)
6)  electron cyclotron resonance heating
电子回旋共振加热
补充资料:电子自旋共振(见电子回旋共振)


电子自旋共振(见电子回旋共振)
electron spin resonance

  电子自旋共振eleetron spin resonanee见电子回旋共振。
  
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