Overview of results obtained at the Globus-M spherical tokamak
Creators
- Gusev, V.K.1
- Aleksandrov, S.E.1
- Ayushin, B.B.1
- Ber, B. Ya1
- Chernyshev, F.V.1
- Chugunov, I.N.1
- Dech, A.V.1
- Golant, V.E.1
- Dyachenko, V.V.1
- Kochergin, M.M.1
- Kurskiev, G.S.1
- Khitrov, S.A.1
- Khromov, N.A.1
- Alimov, V. Kh2
- Arkhipov, I.I.2
- Gorodetsky, A.E.2
- Barsukov, A.G.3
- Leonov, V.M.3
- Lebedev, V.M.4
- Litunovsky, N.V.5
- and others
- 1. Ioffe Physical-Technical Institute of the Russian Academy of Sciences, St Petersburg (Russian Federation)
- 2. A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Moscow (Russian Federation)
- 3. NFI RRC 'Kurchatov Institute', Moscow (Russian Federation)
- 4. B.P. Konstantinov Nuclear Physics Institute, Russian Academy of Sciences, Gatchina (Russian Federation)
- 5. D.V. Efremov Institute of Electrophysical Apparatus, St Petersburg (Russian Federation)
Description
Experiments and simulations to achieve high values of plasma parameters at the Globus-M spherical tokamak (ST) at moderate absolute auxiliary heating power (up to 0.8 MW) and high specific heating power (up to 2-3 MW m-3) are described. Important distinguishing features are the low edge safety factor range, which is unusual for STs, 2.7 < q < 5 and small plasma-outer wall space (3-5 cm). High ion heating efficiency with neutral beam injection (NBI) was demonstrated. Results of numerical simulation of fast ion trajectories are described and fast ion generation during the NBI and ion cyclotron resonance heating is discussed. Investigations on their confinement and slowing down are also presented. Reasons for achievement of high IC heating efficiency are outlined. Reliable H-mode regime achievement is described. Transport ASTRA modelling demonstrated that during NB heated H-mode ion heat diffusivity remains neoclassical and the particle diffusion coefficient inside transport barrier decreases significantly. Analysis was performed of divertor tile and special probe surfaces after irradiation by plasma during a large number of shots (3000-10 000 shots). Mixed layer composition is measured and deuterium retention in different tokamak first wall areas is estimated. Plasma jet injection experiments with upgraded plasma jet are described. Jet penetration to the plasma centre with immediate increase of density and temperature drop is proved and analogy with pellet injection is outlined.
Availability note (English)
Available from http://dx.doi.org/10.1088/0029-5515/49/10/104021Additional details
Identifiers
- DOI
- 10.1088/0029-5515/49/10/104021;
- PII
- S0029-5515(09)02730-6;
Publishing Information
- Journal Title
- Nuclear Fusion
- Journal Volume
- 49
- Journal Issue
- 10
- Journal Page Range
- [11 p.]
- ISSN
- 0029-5515
- CODEN
- NUFUAU
Conference
- Title
- 22. IAEA fusion energy conference
- Acronym
- FEC 2008
- Dates
- 13-18 Oct 2008
- Place
- Geneva (Switzerland)
INIS
- Country of Publication
- International Atomic Energy Agency (IAEA)
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 41049278
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- AUXILIARY HEATING; BEAM INJECTION; COMPUTERIZED SIMULATION; DEUTERIUM; DIFFUSION; DIVERTORS; FIRST WALL; H-MODE PLASMA CONFINEMENT; ICR HEATING; NEOCLASSICAL TRANSPORT THEORY; PELLET INJECTION; PLASMA; PLASMA JETS; SPHERICAL CONFIGURATION; TOKAMAK DEVICES
- Descriptors DEC
- CHARGED-PARTICLE TRANSPORT THEORY; CLOSED PLASMA DEVICES; CONFIGURATION; CONFINEMENT; HEATING; HIGH-FREQUENCY HEATING; HYDROGEN ISOTOPES; ISOTOPES; LIGHT NUCLEI; MAGNETIC CONFINEMENT; NUCLEI; ODD-ODD NUCLEI; PLASMA CONFINEMENT; PLASMA HEATING; SIMULATION; SPACE HEATING; STABLE ISOTOPES; THERMONUCLEAR DEVICES; THERMONUCLEAR REACTOR WALLS; TRANSPORT THEORY