Integrated Modeling of Whole Tokamak Plasma
スポンサーリンク
概要
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Development and integration of models for the whole tokamak plasma have progressed on the basis of experimental analyses and first principle simulations. Integrated models of core, edge-pedestal and scrape-off-layer (SOL)-divertor clarified complex and autonomous features of reactor relevant plasmas. The integrated core plasma model including an anomalous transport of alpha particles by Alfven eigenmodes is developed in the core transport code TOPICS-IB and indicates the degradation of fusion performance. The integrated rotation model is developed in the advanced transport code TASK/TX and clarifies the mechanism of alpha particle-driven toroidal flow. A transport model of high-Z impurities is developed and predicts large inward pinch in a plasma rotating in the direction counter to the plasma current. TOPICS-IB is extended to include the edge-pedestal model by integrating with the stability code, simple SOL-divertor and pellet models, and clarifies the mechanism of pellet triggered ELM. The integrated SOL-divertor code SONIC is further integrated with TOPICS-IB and enables to study and design operation scenarios compatible with both the high confinement in the core and the low heat load on divertor plates.
著者
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HAMAMATSU Kiyotaka
Japan Atomic Energy Agency, Naka 311-0193, Japan
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TAKIZUKA Tomonori
Japan Atomic Energy Research Institute
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FUKUYAMA Atsushi
Graduate School of Engineering, Kyoto 606-8501, Japan
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OZEKI Takahisa
Japan Atomic Energy Agency
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SHIMIZU Katsuhiro
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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OZEKI Takahisa
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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HAYASHI Nobuhiko
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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HONDA Mitsuru
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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HOSHINO Kazuo
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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SHIMIZU Katsuhiro
Japan Atomic Energy Agency
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HAMAMATSU Kiyotaka
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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TAKIZUKA Tomonori
Japan Atomic Energy Agency
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TAKIZUKA Tomonori
Japan Atomic Energy Agency, 801-1 Mukoyama, Naka 311-0193, Japan
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FUKUYAMA Atsushi
Graduate School of Engineering, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan
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FUKUYAMA Atsushi
Graduate School of Engineering Kyoto University, Kyoto 606-8501, Japan
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HAMAMATSU Kiyotaka
Japan Atomic Energy Agency
関連論文
- Monte Carlo Study Based on a Real Coordinate System for Tangentially Injected High-Energy Particles in the Large Helical Device
- Development of a Hierarchy-Integrated Simulation Code for Toroidal Helical Plasmas, TASK3D
- Electron Thermal Diffusivity in JFT-2 Tokamak with NBI Heating
- Effect of Magnetic Island Associated with Neoclassical Tearing Modes on Plasma Rotation in JT-60U
- Electron Parallel Heat Transport in the Scrape-off Layer Using a Particle-in-Cell Code
- MHD Computations at JAERI : Extended Abstract of MHD Computations at JAERI / Extended Abstract of Numerical Study of Resistive Internal Kink Mode / Extended Abstract of Finite-Beta Effect on Tearing Mode
- Kinetic Particle Simulation Study of Parallel Heat Transport in Scrape-off Layer Plasmas over a Wide Range of Collisionalities
- Electron Diffusion in a Tokamak Due to High n-Ballooning Mode
- A Study of Particle Confinement Using Skin Radiative Approximation Method in JT-60 Tokamak
- Rotational Stabilization of Resistive Wall Mode on JT-60U
- Fractofusion Mechanism
- Transport Simulation of Helical Plasmas Using the TASK/TX Code
- Spatial Structure of Volume Recombination in JT-60U Detached Divertor Plasmas
- Monte-Carlo Study Based on Real Coordinates for Perpendicularly Injected High-Energy Ions in the LHD High-Beta Plasma
- On the Neoclassical Relationship between the Radial Electric Field and Radial Current in Tokamak Plasmas
- Integrated Modeling of Whole Tokamak Plasma
- Transport Study of LHD High-Beta Plasmas Based on Power Balance Analysis with TASK3D Code Module
- Numerical Method for the Stability Analysis of Ideal MHD Modes with a Wide Range of Toroidal Mode Numbers in Tokamaks
- Development of Integrated SOL/Divertor Code and Simulation Study in JAEA
- Control of Growth of Neoclassical Tearing Mode by Central Co-ECCD in JT-60U
- Offset Linear Scaling for H-mode Confinement.
- Time Evolution of the Rotational Transform Profile in Current-Carrying LHD Plasmas
- Recent Results from the Development of the Electron Cyclotron Heating System for JT-60SA toward High-Power Long-Pulse Operations