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Fluid and transport modeling of plasmas - Lecture 3: fluid models for tokamak plasmas

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Authors : Callen, James D. (Author of the conference)
CIRM (Publisher )

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Abstract : In this third lecture the ideal and extended magnetohydrodynamics (MHD) fluid moment descriptions of magnetized plasmas are discussed first. The ideal MHD equilibrium in a toroidally axisymmetric tokamak plasma is discussed next. Then, the collisional viscous force closure moments and their effects on the parallel Ohm's law and poloidal flows in the extended MHD model of tokamak plasmas are discussed. Finally, the species fluid moment equations are transformed to magnetic flux coordinates, averaged over a flux surface and used to obtain the tokamak plasma transport equations. These equations describe the transport of the plasma electron density, plasma toroidal angular momentum and pressure of the electron and ion species "radially" across the nested tokamak toroidal magnetic flux surfaces.

MSC Codes :
76X05 - Ionized gas flow in electromagnetic fields; plasmic flow
82C70 - Transport processes

    Information on the Video

    Language : English
    Available date : 25/08/14
    Conference Date : 24/07/14
    Subseries : Research talks
    arXiv category : Plasma Physics
    Mathematical Area(s) : Mathematical Physics
    Format : MP4 (.mp4) - HD
    Video Time : 02:03:22
    Targeted Audience : Researchers
    Download : https://videos.cirm-math.fr/2014-08-24_Callen_part3.mp4

Information on the Event

Event Title : CEMRACS : Numerical modeling of plasmas / CEMRACS : Modèles numériques des plasmas
Event Organizers : Campos Pinto, Martin ; Charles, Frédérique ; Guillard, Hervé ; Nkonga, Boniface
Dates : 21/07/14 - 29/08/14
Event Year : 2014
Event URL : http://smai.emath.fr/cemracs/cemracs14/

Citation Data

DOI : 10.24350/CIRM.V.18579803
Cite this video as: Callen, James D. (2014). Fluid and transport modeling of plasmas - Lecture 3: fluid models for tokamak plasmas. CIRM. Audiovisual resource. doi:10.24350/CIRM.V.18579803
URI : http://dx.doi.org/10.24350/CIRM.V.18579803

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