Published December 1995 | Version v1
Report Restricted

Kinetic and transport theory near the tokamak edge

  • 1. Texas Univ., Austin, TX (United States). Inst. for Fusion Studies
  • 2. Massachusetts Inst. of Tech., Cambridge, MA (United States). Plasma Fusion Center

Description

Conventional transport orderings employed in the core of a tokamak plasma allow large divergence-free flows in flux surfaces, but only weak radial flows. However, alternate orderings are required in the edge region where radial diffusion must balance the rapid loss due to free-streaming to divertor plates or limiters. Kinetic equations commonly used to study the plasma core do not allow such a balance and are, therefore, inapplicable in the plasma edge. Similarly, core transport formulae cannot be extended to the edge region without major, qualitative alteration. Here the authors address the necessary changes. By deriving and solving a novel kinetic equation, they construct distinctive collisional transport laws for the plasma edge. They find that their edge ordering naturally retains the radial diffusion and parallel flow of particles, momentum and heat to lowest order in the conservation equations. To higher order they find a surprising form for parallel transport in the scrape-off layer, in which the parallel flow of particles and heat are driven by a combination of the conventional gradients, viscosity, and new terms involving radial derivatives. The new terms are not relatively small, and could affect understanding of limiter and divertor operation

Availability note (English)

MF available from INIS under the Report Number; Also available from OSTI as DE96003968; NTIS; US Govt. Printing Office Dep.

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Publishing Information

Imprint Pagination
25 p.
Report number
DOE/ET/53088--735

Optional Information

Contract/Grant/Project number
Contract FG05-80ET53088; FG02-91ER54109
Funding organization
USDOE, Washington, DC (United States).
Secondary number(s)
IFSR--735.