Difference between revisions of "The DYCO Solver"

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We have started to develop a nodal-type Finite-Volume based solver called DyCo.  
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==The DYCO Solvers suite==
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[[File:Flamex.jpg|240px]]
  
The solver should allow for steady, pseudo-unsteady & unsteady computations.
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DYCO is a suite of solvers able to compute high accuracy solutions to non-linear
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== Main features==
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* Solving 
  
Moreover, the versatility of the nodal approach can handle local to global scales (i.e. from coarse-grain to fine tuning)
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{| class="wikitable"
and also complex non-homogeneous structures and topologies.
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|+ Examples of first-order in time obtained EEM: for 2D planar, 3D planar, or 3D expanding fronts 
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|[[File:OUIEEM-1D-2D.png|400 px]]
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|[[File:OUIEqEEM_1D.png|400 px]]
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|}
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== Sample Results ==
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We show below a short gallery of pictures obtained using the DYCO solver, in the context of 
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{| class="wikitable"
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|+ Sample results for 3D planar fronts 
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|[[File:OUIImages_Luk.png|700 px]]
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|}
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{| class="wikitable"
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|+ Sample results for 3D expanding fronts with variable turbulence intensity, 
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|[[File:TroisFlammes.png|700 px]]
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|}
  
Moreover, possibly anisotropic, discontinuous thermo-electric coefficients, and their temperature dependence can also be included.
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==Sub-modules for ==
This multi-scale approach allows for lighter/heavier computations and technological “optimization” !
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A sub-module of DYCO has been devoted to the numerical solution
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{| class="wikitable"
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|+ System of equations, EEM and sample results of FB radius dynamics
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|[[File:Fbdynamics.png|600 px]]
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|}
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== Participants ==
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Yves D'Angelo, Christophe Goupil, Eric Herbert.

Revision as of 11:47, 1 April 2016

The DYCO Solvers suite

Flamex.jpg

DYCO is a suite of solvers able to compute high accuracy solutions to non-linear

Main features

  • Solving
Examples of first-order in time obtained EEM: for 2D planar, 3D planar, or 3D expanding fronts
OUIEEM-1D-2D.png OUIEqEEM 1D.png

Sample Results

We show below a short gallery of pictures obtained using the DYCO solver, in the context of

Sample results for 3D planar fronts
OUIImages Luk.png
Sample results for 3D expanding fronts with variable turbulence intensity,
TroisFlammes.png

Sub-modules for

A sub-module of DYCO has been devoted to the numerical solution

System of equations, EEM and sample results of FB radius dynamics
Fbdynamics.png

Participants

Yves D'Angelo, Christophe Goupil, Eric Herbert.