Chapter 2: Plasma confinement and transport
Глава 2. Удержание и перенос плазмы
1999-12-01
SCID: 54.1/bkrgae9u
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H-mode energy confinementITER confinement projectionsempirical scaling lawsplasma confinementtokamak transport
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Abstract (AI)
Physics knowledge in plasma confinement and transport relevant to design of a reactor-scale tokamak is reviewed and methodologies for projecting confinement properties to ITER are provided. Theoretical approaches to describing a turbulent plasma transport in a tokamak are outlined and phenomenology of major energy confinement regimes observed in tokamaks, including those with edge and internal transport barriers, is described. The chapter is focused on the energy confinement in the high confinement regime (H-mode) with the edge localized MHD modes, the basic operational regime of ITER. Three approaches are being pursued: (i) derivation of empirical global scaling laws; (ii) non-dimensionally similar studies; and (iii) one dimensional transport modelling codes, with the first approach recommended as the most robust at the present time. Special attention is paid to analysis of uncertainties in confinement predictions. Empirical scaling relations for projecting the L-mode to H-mode power threshold based on regression analysis of an extensive database are discussed. Particle and toroidal momentum confinement and their relation to energy confinement are reviewed.
Key Findings
1
Empirical global scaling laws are recommended as the most robust approach for confinement extrapolation at the present time.
2
Particle and toroidal momentum confinement are reviewed, including their relationships with energy confinement.
3
Regression analysis of an extensive database provides empirical scaling relations for projecting the L-mode-to-H-mode power threshold.
4
The analysis focuses on ITER’s basic operational regime: H-mode energy confinement with edge-localized magnetohydrodynamic modes, including uncertainty assessment.
5
The chapter reviews plasma confinement and transport physics relevant to reactor-scale tokamak design and provides methodologies for projecting confinement properties to ITER.
6
Three projection approaches are examined: empirical global scaling laws, non-dimensionally similar studies, and one-dimensional transport modeling codes.
Research Object
Plasma confinement and transport in reactor-scale tokamaks, particularly ITER
Research Subject
Energy-confinement properties, transport regimes, scaling laws, modeling approaches, and uncertainties in projecting tokamak confinement to ITER, with emphasis on H-mode and edge-localized MHD modes
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1999-12-01
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