Scaling laws for plasma confinement
Законы подобия для удержания плазмы
1977-10-01
SCID: 54.1/ggrzxaaq
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energy lossplasma energy confinementplasma modelsscaling lawstokamaks
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Abstract (AI)
Scaling laws for plasma energy confinement must be invariant under any transformation which leaves the basic plasma equations themselves invariant. Hence, constraints can be placed on the scaling laws even though the calculation of energy loss may be quite intractable. These constraints are derived for several plasma models and shown to be characteristic of the model. Hence, in addition to reducing the number of parameters which have to be obtained empirically, these results could delineate which plasma models are appropriate for the calculation of losses. They show that the empirical scaling laws at present proposed for tokamaks are incompatible with many conventional plasma models.
Key Findings
1
Currently proposed empirical tokamak scaling laws are incompatible with many conventional plasma models.
2
Plasma energy-confinement scaling laws must remain invariant under transformations that preserve the governing plasma equations.
3
The study derives model-specific constraints on confinement scaling laws for several plasma models, despite the difficulty of calculating energy losses directly.
4
These constraints reduce the number of parameters requiring empirical determination and can help identify appropriate plasma models for loss calculations.
Research Object
Plasma energy confinement in tokamaks
Research Subject
Transformation-invariant constraints and model dependence of energy-confinement scaling laws, including their compatibility with conventional plasma models
Publication Details
Publication Date
1977-10-01
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