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Introducing FACETS, the Framework Application for Core-Edge Transport Simulations

J R Cary et al 2007 J. Phys.: Conf. Ser. 78 012086 (6pp)   doi: 10.1088/1742-6596/78/1/012086  Help

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J R Cary1, J Candy2, R H Cohen3, S Krasheninnikov4, D C McCune5, D J Estep6, J Larson7, A D Malony8, P H Worley9, J A Carlsson1, A H Hakim1, P Hamill1, S Kruger1, S Muzsala1, A Pletzer1, S Shasharina1, D Wade-Stein1, N Wang1, L McInnes7, T Wildey6, T Casper3, L Diachin3, T Epperly3, T D Rognlien3, M R Fahey9, J A Kuehn9, A Morris8, S Shende8, E Feibush5, G W Hammett5, K Indireshkumar5, C Ludescher5, L Randerson5, D Stotler5, A Yu Pigarov4, P Bonoli9, C S Chang10, D A D'Ippolito11, P Colella12, D E Keyes13, R Bramley14 and J R Myra11
1 Tech-X Corporation
2 General Atomics
3 Lawrence Livermore National Lab
4 University of California at San Diego
5 Princeton Plasma Physics Laboratory
6 Colorado State University
7 Argonne National Laboratory
8 ParaTools, Inc., iOak Ridge National Laboratory
9 Massachusetts Institute of Technology
10 New York University
11 Lodestar Research
12 Lawrence Berkeley National Lab
13 Columbia University
14 Indiana University
E-mail: cary@txcorp.com

Abstract. The FACETS (Framework Application for Core-Edge Transport Simulations) project began in January 2007 with the goal of providing core to wall transport modeling of a tokamak fusion reactor. This involves coupling previously separate computations for the core, edge, and wall regions. Such a coupling is primarily through connection regions of lower dimensionality. The project has started developing a component-based coupling framework to bring together models for each of these regions. In the first year, the core model will be a 1 ½ dimensional model (1D transport across flux surfaces coupled to a 2D equilibrium) with fixed equilibrium. The initial edge model will be the fluid model, UEDGE, but inclusion of kinetic models is planned for the out years. The project also has an embedded Scientific Application Partnership that is examining embedding a full-scale turbulence model for obtaining the crosssurface fluxes into a core transport code.

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