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CPFLAME is a simple numerical model solving the Navier Stokes equations. Some features are [[attachment:cpflame_0.98.tar|CPFLAME]] is a simple numerical model solving the Navier Stokes equations. Some features are
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[[http://journals.cambridge.org/action/displayAbstract?fromPage=online&aid=5976668|Eden, C., D. Olbers and R.J. Greatbatch (2009): A generalised Osborn-Cox relation. J. Fluid Mech. 632, 457-474.]]

[[http://www.sciencedirect.com/science/article/pii/S1463500309002042|Eden, C. (2010): Parameterising meso-scale eddy momentum fluxes based on potential vorticity mixing and a gauge term. Ocean Modeling. 32 (1-2), 58-71]]

[[http://www.sciencedirect.com/science/article/pii/S1463500310000806|Viebahn, J. and C. Eden (2010): Towards the impact of eddies on the response of the
Southern Ocean to climate change. Ocean Modelling 34 (3-4) 150-165]]

CPFLAME

CPFLAME is a simple numerical model solving the Navier Stokes equations. Some features are

  • surface pressure or implicit linear free surface formulation
  • nonhydrostatic version
  • 1D domain decomposition for parallel computation
  • Documentation available as pdf file

    cpflame.jpg

Source Code

CPFLAME source code

References

Eden, C., D. Olbers and R.J. Greatbatch (2009): A generalised Osborn-Cox relation. J. Fluid Mech. 632, 457-474.

Eden, C. (2010): Parameterising meso-scale eddy momentum fluxes based on potential vorticity mixing and a gauge term. Ocean Modeling. 32 (1-2), 58-71

[[http://www.sciencedirect.com/science/article/pii/S1463500310000806|Viebahn, J. and C. Eden (2010): Towards the impact of eddies on the response of the Southern Ocean to climate change. Ocean Modelling 34 (3-4) 150-165]]

IfmWiki: TO/cpflame (last edited 2011-10-11 12:57:48 by anonymous)