Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code

A self-contained gas injection system for the Divertor Material Evaluation System (DiMES) on DIII-D, the Porous Plug Injector (PPI), has been employed by A. McLean for in-situ study of chemical erosion in the tokamak divertor environment by injection of CH4. The principal contribution of the present...

Full description

Bibliographic Details
Main Author: Mu, Yarong
Other Authors: Stangeby, Peter C.
Language:en_ca
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/1807/19205
id ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-19205
record_format oai_dc
spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-192052013-11-14T03:43:24ZDevelopment and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling CodeMu, YarongNuclear FusionBoundary PhysicsPlasmaTokamaks055205380791A self-contained gas injection system for the Divertor Material Evaluation System (DiMES) on DIII-D, the Porous Plug Injector (PPI), has been employed by A. McLean for in-situ study of chemical erosion in the tokamak divertor environment by injection of CH4. The principal contribution of the present thesis is a new interpretive code, 3D-DIVIMP(HC), which has been developed and successfully applied to the interpretation of the CH, C I, and C II emissions measured during the PPI experiments. The two principal types of experimental data which are compared here with 3D-DIVIMP(HC) code modeling are (a) absolute emissivities measured with a high resolution spectrometer, and (b) 2D filtered camera (TV) pictures taken from a view essentially straight down on the PPI. Incorporating the Janev-Reiter database for the breakup reactions of methane molecules in a plasma, 3D-DIVIMP(HC) is able to replicate these measurements to within the combined experimental and database uncertainties. It is therefore concluded that the basic elements of the physics and chemistry controlling the breakup of methane entering an attached divertor plasma have been identified and are incorporated in 3D-DIVIMP(HC).Stangeby, Peter C.2009-112010-03-02T19:40:06ZNO_RESTRICTION2010-03-02T19:40:06Z2010-03-02T19:40:06ZThesishttp://hdl.handle.net/1807/19205en_ca
collection NDLTD
language en_ca
sources NDLTD
topic Nuclear Fusion
Boundary Physics
Plasma
Tokamaks
0552
0538
0791
spellingShingle Nuclear Fusion
Boundary Physics
Plasma
Tokamaks
0552
0538
0791
Mu, Yarong
Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
description A self-contained gas injection system for the Divertor Material Evaluation System (DiMES) on DIII-D, the Porous Plug Injector (PPI), has been employed by A. McLean for in-situ study of chemical erosion in the tokamak divertor environment by injection of CH4. The principal contribution of the present thesis is a new interpretive code, 3D-DIVIMP(HC), which has been developed and successfully applied to the interpretation of the CH, C I, and C II emissions measured during the PPI experiments. The two principal types of experimental data which are compared here with 3D-DIVIMP(HC) code modeling are (a) absolute emissivities measured with a high resolution spectrometer, and (b) 2D filtered camera (TV) pictures taken from a view essentially straight down on the PPI. Incorporating the Janev-Reiter database for the breakup reactions of methane molecules in a plasma, 3D-DIVIMP(HC) is able to replicate these measurements to within the combined experimental and database uncertainties. It is therefore concluded that the basic elements of the physics and chemistry controlling the breakup of methane entering an attached divertor plasma have been identified and are incorporated in 3D-DIVIMP(HC).
author2 Stangeby, Peter C.
author_facet Stangeby, Peter C.
Mu, Yarong
author Mu, Yarong
author_sort Mu, Yarong
title Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
title_short Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
title_full Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
title_fullStr Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
title_full_unstemmed Development and Applications of 3D-DIVIMP(HC) Monte Carlo Impurity Modeling Code
title_sort development and applications of 3d-divimp(hc) monte carlo impurity modeling code
publishDate 2009
url http://hdl.handle.net/1807/19205
work_keys_str_mv AT muyarong developmentandapplicationsof3ddivimphcmontecarloimpuritymodelingcode
_version_ 1716613943417372672