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First results from core-edge parallel composition in the FACETS project

  • J. R. Cary
  • , J. Candy
  • , R. H. Cohen
  • , S. Krasheninnikov
  • , D. C. McCune
  • , D. J. Estep
  • , J. Larson
  • , A. D. Malony
  • , A. Pankin
  • , P. H. Worley
  • , J. A. Carlsson
  • , A. H. Hakim
  • , P. Hamill
  • , S. Kruger
  • , M. Miah
  • , S. Muzsala
  • , A. Pletzer
  • , S. Shasharina
  • , D. Wade-Stein
  • , N. Wang
  • S. Balay, L. McInnes, H. Zhang, T. Casper, L. Diachin, T. Epperly, T. D. Rognlien, R. Fahey, J. Cobb, A. Morris, S. Shende, W. Hammett, K. Indireshkumar, D. Stotler, A. Yu Pigarov

Research output: Contribution to journalArticlepeer-review

Abstract

FACETS (Framework Application for Core-Edge Transport Simulations), now in its second year, has achieved its first coupled core-edge transport simulations. In the process, a number of accompanying accomplishments were achieved. These include a new parallel core component, a new wall component, improvements in edge and source components, and the framework for coupling all of this together. These accomplishments were a result of an interdisciplinary collaboration among computational physics, computer scientists, and applied mathematicians on the team.

Original languageEnglish (US)
Article number012040
JournalJournal of Physics: Conference Series
Volume125
DOIs
StatePublished - 2008

All Science Journal Classification (ASJC) codes

  • General Physics and Astronomy

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