Electromagnetic analysis for fusion reactors: status and needs Metadata

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Title

  • Main Title Electromagnetic analysis for fusion reactors: status and needs

Creator

  • Author: Turner, L.R.
    Creator Type: Personal

Publisher

  • Name: Argonne National Laboratory
    Place of Publication: Illinois

Date

  • Creation: 1983-01-01

Language

  • English

Description

  • Content Description: Electromagnetic effects have far-reaching implications for the design, operation, and maintenance of future fusion reactors. Two-dimensional (2-D) eddy current computer codes are available, but are of limited value in analyzing reactors. Three-dimensional (3-D) codes are needed, but are only beginning to be developed. Both 2-D and 3-D codes need verification against experimental data, such as that provided by the upcoming FELIX experiments. Coupling between eddy currents and deflections has application in fusion reactor design and is being studied both by analysis and experiment.
  • Physical Description: Pages: 6

Subject

  • Keyword: Thermonuclear Reactors
  • Keyword: Eddy Currents
  • Keyword: Coupling
  • Keyword: Electromagnetic Fields
  • STI Subject Categories: 70 Plasma Physics And Fusion Technology
  • Keyword: Two-Dimensional Calculations
  • Keyword: Electric Currents 700209* -- Fusion Power Plant Technology-- Component Development & Materials Testing
  • Keyword: Currents
  • Keyword: Felix Facility
  • Keyword: Test Facilities

Source

  • Conference: 10. symposium on fusion engineering, Philadelphia, PA, USA, 5 Dec 1983

Collection

  • Name: Office of Scientific & Technical Information Technical Reports
    Code: OSTI

Institution

  • Name: UNT Libraries Government Documents Department
    Code: UNTGD

Resource Type

  • Article

Format

  • Text

Identifier

  • Other: DE84005214
  • Report No.: CONF-831203-90
  • Grant Number: W-31-109-ENG-38
  • Office of Scientific & Technical Information Report Number: 5435386
  • Archival Resource Key: ark:/67531/metadc1067015

Note

  • Display Note: NTIS, PC A02/MF A01.