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Featured researches published by Y. Takase.


RADIO FREQUENCY POWER IN PLASMAS: 16th Topical Conference on Radio Frequency Power in Plasmas | 2005

Long Pulse Plasma Heating Experiment by Ion Cyclotron Heating in LHD

T. Seki; T. Mutoh; R. Kumazawa; K. Saito; T. Watari; Y. Nakamura; Masanori Sakamoto; T. Watanabe; S. Kubo; T. Shimozuma; Y. Yoshimura; H. Igami; K. Ohkubo; Y. Takeiri; Y. Oka; K. Tsumori; M. Osakabe; K. Ikeda; K. Nagaoka; O. Kaneko; J. Miyazawa; S. Morita; K. Narihara; M. Shoji; S. Masuzaki; M. Goto; T. Morisaki; B.J. Peterson; K. Sato; T. Tokuzawa

It is very important to demonstrate the ability to sustain the plasma in a steady state on the Large Helical Device (LHD), which has external helical magnetic coils and is a superconducting device. The long pulse discharge experiment was carried out using the ion cyclotron range of frequencies (ICRF) heating mainly. The plasma discharge of 31 minutes and 45 seconds was achieved by a total injected heating energy of 1.3GJ. Swing of the magnetic axis to scatter the local heat load on the divertor plate was one of the key methods for the steady state operation. The repetitive hydrogen pellet injection was tried successfully to fuel the minority hydrogen ions for long pulse operation.


Fusion Science and Technology | 2011

Hydrogen Permeation Measurements in the Spherical Tokamak QUEST and Its Numerical Modeling

S.K. Sharma; H. Zushi; Ikuji Takagi; Y. Hisano; T. Shikama; S. Morita; T. Tanabe; N. Yoshida; Masanori Sakamoto; Y. Higashizono; K. Hanada; M. Hasegawa; Osamu Mitarai; K. Nakamura; H. Idei; K. Sato; S. Kawasaki; Hiroshi Nakashima; A. Higashijima; Y. Nakashima; N. Nishino; Yuji Hatano; A. Sagara; Y. Nakamura; N. Ashikawa; T. Maekawa; Yasuaki Kishimoto; Y. Takase

Abstract A permeation measuring system with a nickel membrane of 30 μm thickness was installed near the mid plane of the spherical tokamak, QUEST. Hydrogen permeation through the membrane heated at fix temperatures (422 – 506 K) was measured during short pulse (< 1 s) and long pulse (1 hour) plasma discharges. After the membrane was heated to a required temperature, hydrogen plasma was discharged using a 2.45 GHz or 8.2 GHz RF system. Significant plasma-driven permeation was observed even for very short plasma discharges (e.g. 0.1s). Numerical calculations with the use of diffusion equation under recombination boundary conditions were conducted to simulate the transient permeation behavior. The numerical calculations were also used to estimate diffusion coefficient and recombination coefficients of membrane material. Temperature dependence of both the coefficients was explained by the Arrhenius law. A one hour long permeation curve was also numerically reproduced using the same set of parameters except an increasing recombination coefficient on the plasma side of the membrane.


Ieej Transactions on Fundamentals and Materials | 2009

Physical Design and Future Plan of QUEST

K. Hanada; Kohnosuke Sato; H. Zushi; Kazuo Nakamura; M. Sakamoto; H. Idei; M. Hasegawa; Y. Takase; Takashi Maekawa; Osamu Mitarai


Research Report NIFS-Series | 2008

Physical Design of MW-class Steady-state Spherical Tokamak, QUEST

K. Hanada; K. Sato; H. Zushi; K. Nakamura; Masaru Sakamoto; H. Idei; M. Hasegawa; Y. Takase; Osamu Mitarai; T. Maekawa; Yasuaki Kishimoto; M. Ishiguro; Tomokazu Yoshinaga; H. Igami; S. Kawasaki; Hiroshi Nakashima; A. Higashijima; Y. Higashizono; Akira Ando; N. Asakura; A. Ejiri; Y. Hirooka; Akio Ishida; A. Komori; Makoto Matsukawa; O. Motojima; Yuichi Ogawa; N. Ohno; Yasushi Ono; M. Peng


Meeting abstracts of the Physical Society of Japan | 2012

18aFA-5 QUEST装置のオーミック放電における電子バーンシュタイン波重畳加熱・電流駆動効果(18aFA 核融合プラズマ(波動加熱),領域2(プラズマ基礎・プラズマ科学・核融合プラズマ・プラズマ宇宙物理))

H. Idei; K. Hanada; Hideki Zushi; Evgenia Kalinnikova; M. Sakaguchi; A. Fukuyama; Takanori Itado; S. Tashima; Kazuo Nakamura; M. Hasegawa; A. Fujisawa; K. Matsuoka; Y. Nagashima; Y. Takase; M. Kikuchi


Proceedings of the 16th Joint Workshop | 2011

Development of Phased-array Antenna System and Its Application to EBWH/CD Experiments in QUEST

H. Idei; M. Sakaguchi; E. Kalinnikova; K. Nagata; H. Zushi; K. Hanada; S. Tashima; M. Ishiguro; H.Q. Liu; H. Igami; S. Kubo; K. Nakamura; A. Fujisawa; Masaru Sakamoto; M. Hassegawa; Y. Higashizono; Ryota Ogata; Tomofumi Ryokai; S.K. Sharma; S. Kawasaki; Hiroshi Nakashima; A. Higashijima; Y. Takase; T. Maekawa; Osamu Mitarai; Yasuaki Kishimoto


Archive | 2009

Non-inductive plasma start-up and sustainment by wave heating at two frequencies in the TST-2 Spherical Tokamak

Osamu Watanabe; T. Oosako; A. Ejiri; Y. Nagashima; Hiroki Kurashina; Takashi Yamaguchi; Yuuki Adachi; H. Tojo; Kotaro Yamada; Y. Takase; Hazuki Matsuzawa; Hiroaki Kobayashi; Hiroyuki Hayashi; Makoto Sasaki; T. Masuda


Archive | 2009

Model-Based Plasma State Control in Tokamaks

D. Moreau; Yuuki Adachi; Y. Takase; Yoshiteru Sakamoto; S. Ide; T. Suzuki


Archive | 2009

Multiple Ray Trace Analysis for Fast Wave Heating and Current Drive using LHD Combline Antenna System

N. Takeuchi; H. Idei; A. Fukuyama; T. Seki; R. Kumazawa; T. Mutoh; K. Saito; H. Kasahara; Y. Nakamura; Y. Takase; T. Watari


Archive | 2006

Equilibrium analysis of the non-inductive start-up plasmas on the TST-2 spherical tokamak

A. Ejiri; Osamu Watanabe; Y. Nagashima; Takashi Yamaguti; T. Oosako; Y. Takase; Yuuki Adachi; H. Tojo; Hazuki Matsuzawa; Hiroaki Kobayashi; Hiroyuki Hayashi; Kotaro Yamada

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