• DocumentCode
    7654
  • Title

    Transient Thermal and Structural Mechanics Investigation of the New Solid Tungsten Divertor Tile for Special Purposes at ASDEX Upgrade

  • Author

    Jaksic, Nikola ; Herrmann, Albrecht ; Greuner, H.

  • Author_Institution
    Integrated Tech. Centre, Max Planck Inst. for Plasma Phys., Garching, Germany
  • Volume
    42
  • Issue
    6
  • fYear
    2014
  • fDate
    Jun-14
  • Firstpage
    1790
  • Lastpage
    1795
  • Abstract
    A new solid tungsten divertor for the fusion experiment axial symmetric divertor experiment upgrade is under construction at present. For special purposes of the plasma diagnostic in the divertor region, special formed solid tungsten divertor tiles are required. A so-called Langmuir probe is used to determine the ion temperature, ion density, and ion potential of the plasma. With the aim to place the probe on the right position, some of the divertor tiles (nine at the device circumference) have been adequately adapted. This paper discusses the main results of the numerical analysis of the thermomechanical behavior under heat load. Initially, the elastic-plastic calculation was applied to analyze thermal stress and the observed elastic and plastic deformation during the heat loading. The influence of a possible material degradation due to thermal cracking was studied. Additionally, the knowledge gained by the numerical analysis was used for the shape optimization of the divertor tile. The first results from the numerical life cycle analysis of the tungsten tiles are reported. Finally, based on the knowledge gained by the numerical analysis, in the light of problem complexity, it is recommended to perform some additional thermal tests. These tests should be performed with the aim to increase the reliability of the special-shaped tungsten tile during operation.
  • Keywords
    Langmuir probes; Tokamak devices; elastic deformation; fusion reactor divertors; numerical analysis; plastic deformation; thermomechanical treatment; tungsten; ASDEX upgrade; Langmuir probe; W; axial symmetric divertor experiment upgrade; elastic deformation; elastic-plastic calculation; ion density; ion potential; ion temperature; numerical life cycle analysis; plasma diagnostic; plastic deformation; shape optimization; solid tungsten divertor tile; thermal cracking; thermal stress; thermal tests; thermomechanical behavior; transient structural mechanics; transient thermal mechanics; Fusion; Loading; Plastics; Stress; Thermal analysis; Tungsten; Axial symmetric divertor experiment (ASDEX) upgrade; divertor; fatigue; thermomechanical analysis; tungsten; tungsten.;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2014.2311158
  • Filename
    6816005