Published May 1996 | Version v1
Journal article

Physics of the steady-state advanced tokamak

  • 1. Princeton Plasma Physics Laboratory, Princeton , New Jersey 08543 (United States)

Description

The tokamak reactor becomes a more attractive fusion power source if it can operate in steady state, and at high fusion power density, with low recirculating power. This implies that a open-quote open-quote steady-state advanced tokamak close-quote close-quote must achieve both high beta and high confinement, consistent with a high fraction of the total plasma current being carried by the bootstrap effect. The most attractive mode of operation to fulfill these requirements involves a reversal of the global magnetic shear, dq/dr, in the plasma core. This allows self-consistency between the radial profile of the bootstrap current and that of the total current, while simultaneously reducing turbulent transport in the plasma core and increasing magnetohydrodynamic (MHD) stability. In this paper both theoretical and experimental work on the steady-state advanced tokamak are reviewed, and we point to new research areas that need to be pursued to make this concept a reality. Presently operating devices can make strong contributions in this research area, and future devices should be designed with the capability to access, investigate, and exploit this operating mode. copyright 1996 American Institute of Physics

Additional details

Publishing Information

Journal Title
Physics of Plasmas
Journal Volume
3
Journal Issue
5
Journal Page Range
p. 1794-1802.
ISSN
1070-664X
CODEN
PHPAEN