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6篇 您的检索式:作者名="S.KAWASAKI"
    题名 作者 年代 出处 被引量
1Power Balance Estimation in Long Duration Discharges on QUEST显示文摘Fully non-inductive plasma start-up was successfully achieved by using a wellcontrolled microwave source on the spherical tokamak, QUEST. Non-inductive plasmas were maintained for approximately 3–5 min, during which time power balance estimates could be achieved by monitoring wall and cooling-water temperatures. Approximately 70%–90% of the injected power could be accounted for by calorimetric measurements and approximately half of the injected power was found to be deposited on the vessel wall, which is slightly dependent on the magnetic configuration. The power distribution to water-cooled limiters, which are expected to be exposed to local heat loads, depends significantly on the magnetic configuration, however some of the deposited power is due to energetic electrons, which have large poloidal orbits and are likely to be deposited on the plasma facing components.K.HANADA H.ZUSHI H.IDEI K.NAKAMURA M.ISHIGURO S.TASHIMA E.I.KALINNIKOVA Y.NAGASHIMA M.HASEGAWA A.FUJISAWA A.HIGASHIJIMA S.KAWASAKI H.NAKASHIMA O.MITARAI A.FUKUYAMA Y.TAKASE X.GAO H.LIU J.QIAN M.ONO R.RAMAN 2016Plasma Science and Technology2016,18,11:1
2Fine mapping and DNA fiber FISH analysis locates the tobamovirus resistance gene L3 of Capsicum chinense in a 400-kb region of R-like genes cluster embedded in highly repetitive sequences显示文摘Tomita R J.Murai Y.Miura H.Ishihara S.Liu Y.Kubotera A.Honda R.Hatta T.Kuroda H.Hamada M.Sakamoto I.Munemura O.Nunomura K.Ishikawa Y.Genda S.Kawasaki K.Suzuki K.Meksem and K.Kobayashi 0,,:1
3Impact of a Left‐Lobe Graft Without Modulation of Portal Flow in Adult‐to‐Adult Living Donor Liver Transplantation显示文摘N.Konishi Y.Ishizaki H.Sugo J.Yoshimoto K.Miwa S.Kawasaki 2007American Journal of Transplantation2007,,1:1
4Two Dimensional Density FlUCtuation Measurements During the Non-Inductive Current Ramp-up Phase in the Compact Plasma Wall Interaction Experimental Device CPD显示文摘密度变化的二维的结构在电流期间被检验跳阶段,从户外磁场显示一个变化到关上的。斜面起来垂直地在光滑的电流期间分阶段执行 LiI 紧张表演的二维的轮廓排列,与磁性的表面一致。在变化点在我 p 斜面起来, LiI 紧张轮廓在观察政体然后突然变得扁平一个陡峭的坡度和更高的紧张政体在垂直方向被形成。这更高的紧张对应于 LiI 波形的爆炸。根据在轮廓的这些变化,它被发现那,在在 LiI 的爆炸附近的± 1 ms 以内,有长波长的协调波浪很快种的低频率。有另外的信号的关系(磁性的流动和微波迷路的力量) 在磁性的配置和事件电磁波的模式变换关于拓扑的变化被讨论。H.ZUSHI T.RYOUKAI 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 2009Plasma Science and Technology2009,11,4:0
5Magnetic Sensorless Sensing of Plasma Position in the Superconducting Tokamak HT-7显示文摘Magnetic sensorless sensing experiments of the plasma horizontal position have been carried out in the superconducting tokamak HT-7. The horizontal position is calculated from the vertical field coil current and voltage without using signals of magnetic probes placed nearby a plasma. The calculations are focused on the ripple frequency component of the power supply.There is no drift problem with the time integration of magnetic probe signals. The error of the derived plasma position is lower than 2% of the plasma minor radius.K.Nakamura Z.S.Ji B.Shen P.J.Qin S.Itoh K.Hanada M.Sakamoto E.Jotaki M.Hasegawa A.Iyomasa S.Kawasaki H.Nakashima 2004Plasma Science and Technology2004,6,5:0
6Magnetic Sensorless Control of Plasma Position and Shape in a Tokamak显示文摘Magnetic sensorless sensing and control experiments with the plasma horizontalposition have been carried out in the superconducting tokamak HT-7.The sensing is made tofocus on the ripple,frequency component of the power supply with thyristor and directly from themwithout time integration.There is no drift problem with the integrator of magnetic sensors.Twokinds of control experiments have been carried out:to keep the position constant and swing theposition in a triangular waveform.And magnetic sensorless sensing of plasma shape is discussed.K.NAKAMURA 罗家融 王华忠 季振山 王华 王枫 齐娜 K.N.SATO K.HANADA M.SAKAMOTO H.IDEI M.HASEGAWA S.KAWASAKI H.NAKASHIMA A.HIGASHIJIMA 2006Plasma Science and Technology2006,8,1:0
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