Title of article :
Time-decomposed parallel time-integrators: theory and feasibility studies for fluid, structure, and fluid-structure applications
Author/Authors :
Charbel Farhat، نويسنده , , Marion Chandesris، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
A methodology for squeezing the most out of massively parallel processors when solving partial di erential
evolution equations by implicit schemes is presented. Its key components include a preferred implicit
time-integrator, a decomposition of the time-domain into time-slices, independent time-integrations in
each time-slice of the semi-discrete equations, and Newton-type iterations on a coarse time-grid. Hence,
this methodology parallelizes the time-loop of a time-dependent partial di erential equation solver without
interfering with its sequential or parallel space-computations. It is particularly interesting for timedependent
problems with a few degrees of freedom such as those arising in robotics and protein folding
applications, where the opportunities for parallelization over the degrees of freedom are limited. Error
and stability analyses of the proposed parallel methodology are performed for rst- and second-order
hyperbolic problems. Its feasibility and impact on reducing the solution time below what is attainable
by methods which address only parallelism in the space-domain are highlighted for uid, structure, and
coupled uid–structure model problems
Keywords :
parareal scheme , parallel time-integration , massively parallel processing , time-domaindecomposition
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering