Stability and Confinement Studies of High-Performance NBI Plasmas in the Large Helical Device Toward a Steady-State Helical Fusion Reactor
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概要
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Recent progress in plasma performance and the understanding of the related physics in the Large Helical Device is overviewed. The volume-averaged beta value is increased with an increase in the neutral beam injection (NBI) heating power, and it reached 5.0% of the reactor-relevant value. In high-β plasmas, the plasma aspect ratio should be controlled so that the Shafranov shift would be reduced, mainly to suppress transport degradation and the deterioration of the NBI heating efficiency. The operational regime of a high-density plasma with an internal diffusion barrier (IDB) has been extended, and the IDB, which was originally found using the local island divertor, has been realized in the helical divertor configuration. The central density was recorded as high as 1 × 1021 m-3, and the central pressure reached 130 kPa. Based on these high-density plasmas with the IDB, a new ignition scenario has been proposed. This should be a scenario specific to the helical fusion reactor, in which the helical ripple transport would be mitigated. A low-energy positive-NBI system was newly installed for an increase in the direct ion heating power. As a result, the ion temperature (Ti) exceeded 5.2 keV at a density of 1.2 × 1019 m-3 in a hydrogen plasma. Transport analysis shows improvement of ion transport, and the Ti-increase tends to be accompanied by a large toroidal rotation velocity of the order of 50 km/s in the core region. The plasma properties in the extended operational regime are discussed from the perspective of a steady-state helical fusion reactor.
著者
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SHIMOZUMA Takashi
National Insitute for Fusion Science
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KAWAHATA Kazuo
National Insitute for Fusion Science
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OHYABU Nobuyoshi
National Insitute for Fusion Science
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KANEKO Osamu
National Insitute for Fusion Science
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KOMORI Akio
National Insitute for Fusion Science
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YAMADA Hiroshi
National Insitute for Fusion Science
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IDA Katsumi
National Insitute for Fusion Science
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NAGAYAMA Yoshio
National Insitute for Fusion Science
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SAGARA Akio
National Insitute for Fusion Science
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SAKAKIBARA Satoru
National Insitute for Fusion Science
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SAKAMOTO Ryuichi
National Insitute for Fusion Science
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SUDO Shigeru
National Insitute for Fusion Science
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TAKEIRI Yasuhiko
National Insitute for Fusion Science
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WATANABE Kiyomasa
National Insitute for Fusion Science
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YOKOYAMA Masayuki
National Insitute for Fusion Science
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YOSHINUMA Mikiro
National Insitute for Fusion Science
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MOTOJIMA Osamu
National Insitute for Fusion Science
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SUZUKI Yasuhiro
National Institute for Fusion Science, Toki 509-5292, Japan
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KOBAYASHI Masahiro
National Institute for Fusion Science, 322-6 Oroshi, Toki, Gifu 509-5292, Japan
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the LHD
National Institute for Fusion Science, 322-6 Oroshi, Toki, Gifu 509-5292, Japan
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MUTOH Takashi
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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IMAGAWA Sinsaku
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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NAGAOKA Kenichi
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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Mutoh Takashi
National Institute For Fusion Science
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Suzuki Yasuhiro
National Agriculture And Food Res. Organization (naro) National Inst. Of Crop Sci.
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NAGAOKA Kenichi
National Institute for Fusion Science
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SHIMOZUMA Takashi
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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YAMADA Hiroshi
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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YOSHINUMA Mikiro
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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TAKEIRI Yasuhiko
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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KAWAHATA Kazuo
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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SUDO Shigeru
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
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KOBAYASHI Masahiro
National Institute for Fusion Science
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SUZUKI Yasuhiro
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki 509-5292, Japan
関連論文
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- Theoretical Modeling of Transport Barriers in Helical Plasmas
- Abrupt Flushing of High-Density Core in Internal Diffusion Barrier Plasmas and its Suppression by Plasma Shape Control in LHD
- Stability and Confinement Studies of High-Performance NBI Plasmas in the Large Helical Device Toward a Steady-State Helical Fusion Reactor
- Achievement of 10 keV Central Electron Temperatures by ECH in LHD
- Composition of Positive Ions in High-Density H_2 Plasmas Measured by Time-of-Flight Mass Spectrometry
- Retention and Desorption of Hydrogen and Helium in Inner Wall Material Used for The Large Helical Device (LHD) : Simulation experiments using a glow discharge apparatus
- Prevention of Reversed Flow in Gas Divertor with High Vacuum Chamber
- Feasibility of Microwave Transmissivity Measurement to Obtain Density Profile of Sheet Plasmas
- Local Impurity Deposition in a Magnetic Island by Means of a Tracer-Encapsulated Solid Pellet in the LHD
- Analysis of Radial Electric Field Bifurcation in LHD Based on Neoclassical Transport Theory
- Nonthermal Titanium Kα Spectra from Lower-Hybrid-Current-Driven Plasmas in the JIPPT-IIU Tokamak
- シート・プラズマ中のヘリウムイオン温度
- LHDダイバータ模擬実験のための高熱流シートプラズマ開発研究
- Extension of Improved Particle and Energy Confinement Regime in the Core of LHD Plasma
- Clustered Data Storage for Multi-Site Fusion Experiments
- Electron Confining Potential When the Electrons Have Finite Axial Loss Time
- Neutron and Fast Atom Spectrometry Using Natural Diamond Detectors
- Conceptual Design of a Dispersion Interferometer Using a Ratio of Modulation Amplitudes
- Improved Resolution and Stability in a Dispersion Interferometer Using a Modulation Amplitude Ratio
- Impurity Retention Effect in the Edge Ergodic Layer of the Large Helical Device
- Construction of a 100-Hz-Repetition-Rate 28-Channel Thomson Scattering System for the JIPPT-IIU Tokamak
- Improvement in Plasma Heating at Higher-Density Region Using 106.4GHz Electron Cyclotron Heating System for Compact Helical System(Gases, plasmas, electric discharges, and beams)
- Potential Formation in a High-Temperature Divertor Plasma
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- Plasma Plugging in Gas Divertor
- Calibration Source for Electron Cyclotron Emission Measurements
- Feasibility of Electron Density Measurement Using Relativistic Downshift Frequency Effect of Electron Cyclotron Emission in Tokamak Plasmas
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- Monte-Carlo Simulation of Neoclassical Transport in Magnetic Islands and Ergodic Regions
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- Far Infrared Laser Diagnostics on the Compact Helical System
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- Dynamic Transport Study of Electron Thermal Energy in Nonlinear Fusion Plasma
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- Configuration Effects on Local Transport in High-Beta LHD Plasmas
- High Temperature Divertor Plasma Operation
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- Observation of Space and Energy Distributions of High Energy Electrons Produced in ECH Plasmas of LHD
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- Improvements of CO2 Laser Heterodyne Imaging Interferometer for Electron Density Profile Measurements on LHD
- First Observation of ECH by Electron Bernstein Waves Excited via X-B Mode Conversion Process in LHD
- Present Status in the Development of 6 MeV Heavy Ion Beam Probe on LHD
- Nonstop Lose-Less Data Acquisition and Storing Method for Plasma Motion Images
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- Design and Installation of a New Electron Cyclotron Emission Diagnostic Antenna in LHD
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- Improvement of Power Transmission for Fundamental Electron Cyclotron Resonance Heating System in GAMMA 10 Central Cell
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- Composition of Positive Ions in High-Density H2 Plasmas Measured by Time-of-Flight Mass Spectrometry
- Formation of Electron-Root Radial Electric Field and its Effect on Thermal Transport in LHD High Te Plasma
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- Pellet Injection and Internal Diffusion Barrier Formation in Large Helical Device
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- Effect of Ellipticity on Thermal Transport in ECH Plasmas in LHD
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- ECCD Experiment Using an Upgraded ECH System on LHD
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- Laser Scattering Measurement of the Electron Density Fluctuations in CHS
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- Density Reconstruction Using a Multi-Channel Far-Infrared Laser Interferometer and Particle Transport Study of a Pellet-Injected Plasma on the LHD
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- ECCD Experiments in Heliotron J, TJ-II, CHS, and LHD
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