Stable and unstable manifolds in open chaotic systems

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On the basis of the Hamiltonian mapping technique, the transport mechanisms of heat and particles in stochastic fusion plasmas are studied. The chaotic motion inside the plasma as well as the wall patterns, created by open chaotic systems like the DED at TEXTOR, are analyzed. For this, the concept of the stable and unstable manifolds is used. Starting with a basic model, the symmetric tokamap as well as the revtokamap, and continued with a simplified realistic model, the cylindrical DED model, the field line transport is analyzed. The typical structures in open, partially stochastic systems and their connections to the stable and unstable manifolds are explained. Then the cylindrical model is generalized to the real toroidal TEXTOR-DED model. The Hamiltonian for a relativistic guiding-center model is derived and a 4-dimensional mapping procedure is constructed. The drift effects are studied for the unperturbed and the perturbed case. Finally, measurements of heat flux patterns at the divertor plates of the TEXTOR-DED are compared to theoretically calculated ones and their structures are analyzed and explained, using the stable and unstable manifolds.

Autorentext

Andreas Wingen, Dr. rer. nat.: He studied theoretical physics and numerics at the Heinrich-Heine University Düsseldorf, Germany. After he graduated with distinction in 2002, he started his PhD and completed with magna cum laude in January 2006. Since then he holds a postdoc position at the Institute for Theoretical Physics at the HHU Düsseldorf.

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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783838106205
    • Sprache Deutsch
    • Genre Weitere Physik- & Astronomie-Bücher
    • Anzahl Seiten 120
    • Größe H220mm x B150mm x T8mm
    • Jahr 2015
    • EAN 9783838106205
    • Format Kartonierter Einband
    • ISBN 978-3-8381-0620-5
    • Veröffentlichung 09.08.2015
    • Titel Stable and unstable manifolds in open chaotic systems
    • Autor Andreas Wingen
    • Untertitel With application to the tokamak TEXTOR-DED
    • Gewicht 197g
    • Herausgeber Südwestdeutscher Verlag für Hochschulschriften AG Co. KG

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