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High Density Plasma Heating by EC-Waves Injected from the High-Field Side for Mode Conversion to Electron Bernstein Waves in LHD
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作者 Y.YOSHIMURA s.kubo +8 位作者 T.SHIMOZUMA H.IGAMI H.TAKAHASHI M.NISHIURA S.OGASAWARA R.MAKINO T.MUTOH H.YAMADA A.KOMORI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第2期93-96,共4页
To realize an excitation of electron Bernstein waves (EBW) via mode conversion from X-mode waves injected from the high magnetic field side (HFS), new inner-vessel mirrors were installed close to a helicM coil in ... To realize an excitation of electron Bernstein waves (EBW) via mode conversion from X-mode waves injected from the high magnetic field side (HFS), new inner-vessel mirrors were installed close to a helicM coil in the large helicM device (LHD). 77 GHz electron cyclotron (EC) wave beams injected from an existing EC-wave injection system toward the new mirror are reflected on the mirror so that the beams are injected to plasmas from HFS. Evident increases in the electron temperature at the plasma core region and the plasma stored energy were observed by the HFS beam injection to the plasmas with the line-average electron density of 7.5~ 1019 m-3, which is slightly higher than the plasma cut-off density of 77 GHz EC-waves, 7.35~ 1019 m-3. The heating efficiency evaluated from the changes in the time derivative of the plasma stored energy reached ,,~70%. Although so far it is not clear which is the main cause of the heating effect, the mode-converted EBW or the X-mode wave itself injected from the HFS, an effective heating of high-density plasma over the plasma cut-off of EC-wave was successfully demonstrated. 展开更多
关键词 electron Bernstein wave EBW slow X-B overdense high density plasmaheating high-field side injection ECH LHD
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新开发的受电弓弓头碳滑板安装法 被引量:1
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作者 s.kubo 周贤全 《变流技术与电力牵引》 2005年第5期13-17,共5页
从运用的观点来看,受电弓弓头碳基滑板的安装方法是非常重要的。碳滑板一般用带贴紧钢套包层的楔型榫制成,或用能夹紧整个碳滑板的金属装配架制作,用螺栓固定在受电弓弓头上。作者开发了其他3种新的安装方法。并阐述了日本在过去20多年... 从运用的观点来看,受电弓弓头碳基滑板的安装方法是非常重要的。碳滑板一般用带贴紧钢套包层的楔型榫制成,或用能夹紧整个碳滑板的金属装配架制作,用螺栓固定在受电弓弓头上。作者开发了其他3种新的安装方法。并阐述了日本在过去20多年里对碳基滑板材料所进行的开发,以及对所开发的安装方法进行试验室试验或现场试验的结果。 展开更多
关键词 滑板 金属浸渍碳 受电弓弓头
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Two Dimensional Density FlUCtuation Measurements During the Non-Inductive Current Ramp-up Phase in the Compact Plasma Wall Interaction Experimental Device CPD
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作者 H.ZUSHI T.RYOUKAI +22 位作者 K.KIKUKAWA T.MORISAKI R.BHATTACHARYAY T.YOSHINAGA K.HANADA T.SAKIMURA H.IDEI K.DONO N.NISHINO H.HONMA S.TASHIMA T.MUTOH s.kubo K.NAGASAKI M.SAKAMOTO Y.NAKASHIMA Y.HIGASHIZONO K.N.SATO K.NAKAMURA M.HASEGAWA S.KAWASAKI H.NAKASHIMA A.HIGASHIJIMA 《Plasma Science and Technology》 SCIE EI CAS CSCD 2009年第4期397-401,共5页
Two-dimensional structure of density fluctuations is examined during the current jump phase, indicating a change from the open magnetic fields to the closed ones. During the smooth current ramp-up phase the two-dimens... Two-dimensional structure of density fluctuations is examined during the current jump phase, indicating a change from the open magnetic fields to the closed ones. During the smooth current ramp-up phase the two-dimensional contour of the LiI intensity shows vertically alignment, consistent with the magnetic surfaces. At the inflection point in Ip ramp-up the LiI intensity contour becomes flat in the observation regime and then suddenly a steep gradient and higher intensity regime are formed in the vertical direction. This higher intensity corresponds to a burst of LiI waveform. According to these changes in the contour, it is found that, within ~1 ms around the burst of LiI, a low frequency coherent wave with a long wavelength rapidly grows. The relations with other signals (magnetic flux and microwave stray power) are discussed with respect to the topological change in the magnetic configuration and mode conversion of the incident electromagnetic waves. 展开更多
关键词 Li sheet beam density fluctuations current ramp-up spherical tokamak
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