Manual: Difference between revisions

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* [[Symmetries of pipe flow]] - discrete and continuous symmetries.
* [[Symmetries of pipe flow]] - discrete and continuous symmetries.
* [[Method of slices]] - symmetry reduction, elimination of physically irrelevant spatial shifts.
* [[Method of slices]] - symmetry reduction, elimination of physically irrelevant spatial shifts.
* [http://channelflow.org/dokuwiki/doku.php?id=docs:math:newton_krylov_hookstep Newton-Krylov-Hookstep] (channelflow.org) - details of the Newton-Krylov method.  For code see below.
* Newton-Krylov method - see non-problem specific code below.


'''Using the simulation code''':
'''Using the simulation code''':
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* [[File:arnoldi.f|arnoldi.f]] - Krylov-subspace method for calculating eigenvalues of a matrix.
* [[File:arnoldi.f|arnoldi.f]] - Krylov-subspace method for calculating eigenvalues of a matrix.
* [[File:GMRESm.f90|GMRESm.f90]] - Krylov-subspace method for solving the linear system Ax=b for x.
* [[File:GMRESm.f90|GMRESm.f90]] - Krylov-subspace method for solving the linear system Ax=b for x.
* [[File:NewtonHook.f90|NewtonHook.f90]] - Newton-hookstep method for finding nonlinear solutions x for F(x)=0.
* [[File:NewtonHook.f90|NewtonHook.f90]] - Newton-Krylov-Hookstep method for finding nonlinear solutions x of F(x)=0.

Revision as of 08:21, 14 December 2016

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Overview of the solver

Equations, properties, methods, etc.:

Using the simulation code:

  • Getting started - overview of files, setup, starting and ending a job.
  • Tutorial - setup a job, basic monitoring and visualisation of outputs.
  • Core implementation - discretisation, timestepping and key programming elements.
  • Parallel i/o - a brief note on parallel data access.
  • Utilities - pre/post-processing, runtime processing and manipulations, Newton solver for pipe flow.

Non-problem specific codes

  • These are designed for integration with any pre-existing code.
  • File:Arnoldi.f - Krylov-subspace method for calculating eigenvalues of a matrix.
  • File:GMRESm.f90 - Krylov-subspace method for solving the linear system Ax=b for x.
  • File:NewtonHook.f90 - Newton-Krylov-Hookstep method for finding nonlinear solutions x of F(x)=0.