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Book Cover
E-book
Author Bustos Molina, Andrés de, author.

Title Kinetic simulations of ion transport in fusion devices / Andrés de Bustos Molina
Published Cham : Springer, 2013

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Description 1 online resource (xi, 128 pages) : color illustrations
Series Springer theses, 2190-5053
Springer theses, 2190-5053
Contents Introduction -- ISDEP -- 3D Transport in ITER -- Simulations of Fast Ions in Stellarators -- Simulations of NBI Ion Transport in ITER -- Overview and Conclusions
Summary This thesis deals with the problem of ion confinement in thermonuclear fusion devices. It is a topic of general interest, as it helps to understand via numerical simulations the ion confinement properties in complex geometries, in order to predict their behavior and maximize the performance of future fusion reactors. The main work carried out in this thesis is the improvement and exploitation of an existing simulation code called ISDEP. This code solves the so-called ion collisional transport in arbitrary plasma geometry, improving in this sense other existing codes. Additionally, it presents outstanding portability and scalability in distributed computing architectures, such as Grid or Volunteer Computing. The main physical results can be divided into two blocks. First, the study of 3D ion transport in ITER is presented. ITER is the largest fusion reactor (under construction) and most of the simulations so far assume the axis-symmetry of the device. Unfortunately, this symmetry is only an approximation because of the discrete number of magnetic coils used. ISDEP has shown, using a simple model of the 3D magnetic field, how the ion confinement is affected by this symmetry breaking. Secondly, ISDEP has been applied successfully to the study of fast ion dynamics in fusion plasmas. The fast ions, with energies much larger than the thermal energy, are a product of the device's heating system. Thus, a numerical predictive tool can be used to improve the heating efficiency. ISDEP has been combined with the FAFNER2 code to study such ions in stellarator (TJ-II, LHD) and tokamak (ITER) geometries. It has also been validated by experimental results. In particular, comparisons with the CNPA diagnostic in the TJ-II stellarator are remarkable
Analysis kernenergie
nuclear energy
fysica
physics
kernfysica
nuclear physics
Physics (General)
Fysica (algemeen)
Notes Ph. D. Universidad Complutense de Madrid (2013?)
Bibliography Includes bibliographical references
Notes Online resource; title from PDF title page (SpringerLink, viewed August 20, 2013)
Subject Nuclear physics -- Simulation methods
SCIENCE -- Physics -- Quantum Theory.
Physique.
Astronomie.
Genre/Form dissertations.
Academic theses
Academic theses.
Thèses et écrits académiques.
Form Electronic book
ISBN 9783319004228
3319004220
3319004212
9783319004211