Preprint Papers CMSS 2009


The following papers will be submitted to the publisher of Transactions of Fusion Science and Technology. You may download them here as a preprint. For copyright reasons an access password is needed that you will receive from the scientific secretary of CMSS 2009.



    Title   Lecturer Code
  Preface
           
    Preface to the papers of CMSS 2009   Van Eester PF
           
  Evening lectures
           
    Astrophysics: Space weather   Jacobs EL1
    Plasmas in Hollywood   von Keudell EL2
           
  Introduction
           
    Energy for future centuries – Prospects for fusion power as a future energy source   Ongena, Van Oost IN1
    Thermonuclear burn criteria   Van Oost IN2
    The European Fusion Programme   Bartlett IN3
           
  Fusion machines
           
    Fusion machines   Van Schoor FM1,2
    Stellarators   Hartmannn FM3,4
    ‘How to Fly a Tokamak?’ – Jülich visit lecture   de Baar FM5
           
  Kinetic theory
           
    Guiding centre motion   de Blank BT1,2
    Plasma kinetic theory   Weyssow KT1,2
    Kinetic theory of plasma waves   Lerche
Westerhof
Van Eester
KW1
KW1
KW2
    Modelling particle heating and current drive in tokamaks adopting standard numerical techniques   Van Eester KW3
           
  Equilibrium and instabilities
           
    Plasma equilibrium in tokamaks   de Blank EI1
    MHD instabilities in tokamaks   de Blank EI2
    Numerical Magnetohydrodynamics   Keppens EI3
    Operational limits and limiting instabilities in tokamak machines   Koslowski EI4
    MHD & Fast Particle Effects   Sharapov EI5
    Neoclassical tearing modes   Wilson EI6
    Edge localised modes in tokamaks   Wilson EI7
           
  Plasma heating and current drive
           
    Fast particle heating   Koch HC1
    The coupling of electromagnetic power to plasmas   Koch HC2
    The ion cyclotron, lower hybrid and Alfvén wave heating methods   Koch HC3
    Electron cyclotron waves   Westerhof HC4
    Current drive   Westerhof HC5
    Antenna design and matching issues   Dumortier HC6
           
  Edge plasma physics and plasma-wall interaction
           
    Plasma-wall interaction in magnetically confined fusion plasmas   Samm EP1,2
    Transport processes in the plasma edge   Unterberg EP3,4
    Impurity transport and radiation   Tokar EP5
    Stochastic boundary plasmas – basics and applications   Tokar EP6
    Erosion and deposition mechanisms in fusion plasmas   Kirschner EP7,8
    High heat flux performance of plasma facing materials and components under service conditions in future fusion reactors   Linke EP9
    Recycling and transport of neutrals   Reiter EP10,11
    Laboratory experiments and devices to study plasma surface interaction   van Rooij EP12
           
  Transport theory
           
    Classical transport in a plasma   Weyssow TT1
    Neoclassical transport properties of tokamak plasmas   Weyssow TT2
           
  Anomalous transport
           
    Degraded confinement and turbulence in tokamak experiments   Hogeweij AT1,2
    Transport studies using perturbative techniques   Hogeweij AT3
    Introduction to drift wave turbulence modelling   Garbet AT4,5,6
    Radial electric fields and their importance for improved confinement: experimental results   Crombé AT7
    Numerical transport codes   Ongena AT8
           
  Diagnostics
           
    Plasma diagnostics in view of ITER   Donné DI1
    Advanced probe edge diagnostics for fusion devices   Van Oost DI2
    Microwave and far infrared diagnostics   Krämer-Flecken DI3
    Spectroscopy   Jaspers DI4
    Atomic beams   Schweer DI5
    Diagnostics for erosion and deposition processes in fusion plasmas   van Rooij DI6
    Fusion Product Diagnostics   Kiptily DI7
           
  Fusion reactor issues
           
    Overview of tokamak results   Unterberg, Samm
(talk by Wolf)
SF1
    Heating, confinement and extrapolation to reactors   Ongena SF2
    Structure materials in fusion reactors: Issues related to tritium, radioactivity and radiation-induced effects   Rubel SF3
    Challenges of the ITER project   Putvinski ITER1

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