Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session CP11: Poster Session II: Basic Plasma Physics; Boundary, PMI, Proto-MPEX; International Tokamaks; Turbulence and Transport; Other Configurations; Z-pinch, Dense Plasma Focus and MagLIF (2:00pm-5:00pm)
Monday, November 5, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.CP11.72
Abstract: CP11.00072 : Power accounting of plasma discharges in the linear device Proto-MPEX
Presenter:
Melissa A Showers
(Univ of Tennessee, Knoxville, Oak Ridge National Lab)
Authors:
Melissa A Showers
(Univ of Tennessee, Knoxville, Oak Ridge National Lab)
Pawel Piotrowicz
(Univ of Illinois - Urbana, Oak Ridge National Lab)
Clyde J Beers
(Univ of Tennessee, Knoxville)
Theodore Mathias Biewer
(Oak Ridge National Lab)
Juan F Caneses
(Oak Ridge National Lab)
John Canik
(Oak Ridge National Lab)
John B Caughman
(Oak Ridge National Lab)
David C Donovan
(Univ of Tennessee, Knoxville)
Richard H Goulding
(Oak Ridge National Lab)
Arnold Lumsdaine
(Oak Ridge National Lab)
Nischal Kafle
(Univ of Tennessee, Knoxville, Oak Ridge National Lab)
Juergen Rapp
(Oak Ridge National Lab)
Holly Ray
(Univ of Tennessee, Knoxville, Oak Ridge National Lab)
Proto-MPEX is a prototype device whose primary purpose is to develop the plasma heating source concepts for the Material Plasma Exposure eXperiment (MPEX), a steady-state linear device being developed to study plasma material interactions (PMI). A multi-region power accounting study of Proto-MPEX was performed utilizing expanded diagnostic measurements and improved modeling to identify mechanisms and locations of heat loss from the main plasma. Regions with lower power transport efficiencies have been identified. Power-to-target plate efficiencies have been calculated for a variety of plasma production scenarios: helicon power only, helicon power supplemented with electron cyclotron heating (ECH), helicon power supplemented with ion cyclotron heating (ICH), and helicon power supplemented with combined ECH and ICH. These efficiencies are extrapolated to MPEX relevant applied power sources in order to estimate the heat fluxes expected to be deposited to target plate surfaces for future steady-state PMI studies. Areas requiring further diagnostic measurements and modeling are identified.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.CP11.72
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