Published November 1, 2002 | Version v1
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SCALING AND MODELING STUDIES OF HIGH-BOOTSTRAP FRACTION TOKAMAKS

Description

OAK A271 SCALING AND MODELING STUDIES OF HIGH-BOOTSTRAP FRACTION TOKAMAKS. A theoretical framework is developed to generate tokamak equilibrium configurations for which, on one hand, the current results entirely from the bootstrap current source driven by the pressure gradient while, on the other hand, the pressure gradient is determined from the thermal conduction equation with a thermal diffusivity constructed to have properties observed in confinement experiments: gyroBohm confinement, gradients only with respect to the poloidal flux, global confinement depending only on plasma current and independent of toroidal field, a critical temperature gradient, and an overall confinement improvement with negative shear. The nondimensional method used yields eigenvalues composed of a collection of physics quantities, resulting in scaling relations among physics variables. It is found that the plasma temperature scales as T ∝ P2/3(varepsilon)-1/3, while Ip ∝ n1/2P1/3 a (varepsilon)1/12. The system has a solvability criterion which does not permit solutions when the confinement improves rapidly with increasing negative shear. A simplified 1-D model captures the essential physics of the coupling between bootstrap current generation and thermal conduction

Availability note (English)

Available from INIS in electronic form; Also available from OSTI as DE00813659; PURL: https://www.osti.gov/servlets/purl/813659-pJVnvi/native/

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Additional details

Publishing Information

Imprint Pagination
8 p.
Report number
GA-A--24105(Prepr.)

Conference

Title
19. IAEA Fusion Energy Conference
Dates
14-19 Oct 2002
Place
Lyon (France)

Optional Information

Contract/Grant/Project number
AC03-99ER54463
Notes
THIS IS A PREPRINT OF A PAPER TO BE PRESENTED AT THE NINETEENTH IAEA FUSION ENERGY CONFERENCE
Funding organization
United States (United States)