Physics Aspects of the Compact Ignition Tokamak
- 1 January 1987
- journal article
- Published by IOP Publishing in Physica Scripta
- Vol. T16 (T16) , 89-106
- https://doi.org/10.1088/0031-8949/1987/t16/011
Abstract
The Compact Ignition Tokamak (CIT) is a proposed modest-size ignition experiment designed to study the physics of alpha particle heating. The basic concept is to achieve ignition in a modest-size minimum cost experiment by using a high plasma density to achieve nτE ~ 2 × 1020s/m3 required for ignition. The high density requires a high toroidal field (10 T). The high toroidal field allows a large plasma current (10 MA) which provides a high level of ohmic heating, improves the energy confinement, and allows a relatively high beta (~ 6%). The present CIT design also has a high degree of elongation (κ ~ 1.8) to aid in producing the large plasma current. A double null poloidal divertor and pellet injection are part of the design to provide impurity and particle control, improve the confinement, and provide flexibility for improving the plasma profiles. Auxiliary heating is expected to be necessary to achieve ignition, and 10-20 MW of ICRF is to be provided.Keywords
This publication has 12 references indexed in Scilit:
- Progress in tokamak research at MITNuclear Fusion, 1985
- Experiments on the ST tokamakNuclear Fusion, 1985
- A review of energy confinement and local transport scaling results in neutral-beam-heated tokamaksPhysics of Fluids, 1985
- A semi-empirical scaling law for the β-limit in tokamaksPhysics Letters A, 1985
- Giant sawtooth oscillations in the Doublet III tokamakNuclear Fusion, 1985
- Particle fueling and impurity control in PDXJournal of Nuclear Materials, 1984
- Regime of Improved Confinement and High Beta in Neutral-Beam-Heated Divertor Discharges of the ASDEX TokamakPhysical Review Letters, 1982
- Neutral-beam energy and power requirements for expanding-radius and full-bore start-up of tokamak reactorsNuclear Fusion, 1980
- The role of alpha particles in tokamak reactorsNuclear Fusion, 1980
- Some observations on maximum densities in tokamak experimentsNuclear Fusion, 1976