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Numerical simulation of geodynamic processes with the Portable Extensible Toolkit for Scientific Computation

  • University of Cambridge
  • Argonne National Laboratory
  • Columbia University

Research output: Contribution to journalArticlepeer-review

61 Scopus citations

Abstract

Geodynamics simulations are characterized by rheological nonlinearity, localization, three-dimensional effects, and separate but interacting length scales. These features represent a challenge for computational science. We discuss how a leading software framework for advanced scientific computing (the Portable Extensible Toolkit for Scientific Computation, PETSc) can facilitate the development of geodynamics simulations. To illustrate our use of PETSc, we describe simulations of (i) steady-state, non-Newtonian passive flow and thermal structure beneath a mid-ocean ridge, (ii) magmatic solitary waves in the mantle, and (iii) the formation of localized bands of high porosity in a two-phase medium being deformed under simple shear. We highlight two supplementary features of PETSc, structured storage of application parameters and self-documenting output, that are especially useful for geodynamics simulations.

Original languageEnglish
Pages (from-to)52-68
Number of pages17
JournalPhysics of the Earth and Planetary Interiors
Volume163
Issue number1-4
DOIs
StatePublished - Aug 15 2007

Keywords

  • Geodynamics
  • Mid-ocean ridge
  • PETSc
  • Parallel computation
  • Scientific computation

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