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Compatible Spatial Discretizations for Partial Differential Equations. (Report for May 11-15, 2004).


DE2005834807

Publication Date 2004
Page Count 54
Abstract The numerical solution of partial differential equations (PDE) is a fundamental task in science and engineering. The goal of the workshop was to bring together a spectrum of scientists at the forefront of the research in the numerical solution of PDEs to discuss compatible spatial discretizations. We define compatible spatial discretizations as those that inherit or mimic fundamental properties of the PDE such as topology, conservation, symmetries, and positivity structures and maximum principles. A wide variety of discretization methods applied across a wide range of scientific and engineering applications have been designed to or found to inherit or mimic instrinsic spatial structure and reproduce fundamental properties of the solution of the continuous PDE model at the finite dimensional level. A profusion of such methods and concepts relevant to understanding them have been developed and explored: mixed finite element methods, mimetic finite differences, support operator methods, control volume methods, discrete differential forms, Whitney forms, conservative differencing, discrete Hodge operators, discrete Helmholtz decomposition, finite integration techniques, staggered grid and dual grid methods, etc. This workshop seeks to foster communication among the diverse groups of researchers designing, applying, and studying such methods as well as researchers involved in practical solution of large scale problems that may benefit from advancements in such discretizations; to help elucidate the relations between the different methods and concepts; and to generally advance our understanding in the area of compatible spatial discretization methods for PDE.
Keywords
  • Partial differential equations
  • Meetings
  • Finite element methods
  • Integration
  • Grids
  • Symmetry
  • Topology
  • Simulations
  • Verification
  • Validation
  • Spectrum
  • Spatial discretizations
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Minnesota Univ., St. Paul. Inst. for Mathematics and Its Applications.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200601
Compatible Spatial Discretizations for Partial Differential Equations. (Report for May 11-15, 2004).
Compatible Spatial Discretizations for Partial Differential Equations. (Report for May 11-15, 2004).
DE2005834807

  • Partial differential equations
  • Meetings
  • Finite element methods
  • Integration
  • Grids
  • Symmetry
  • Topology
  • Simulations
  • Verification
  • Validation
  • Spectrum
  • Spatial discretizations
  • Technical Information Center Oak Ridge Tennessee
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