Difference between revisions of "The DYCO Solver"

(Sub-modules for)
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DYCO is a suite of solvers able to compute high accuracy solutions to non-linear
 
DYCO is a suite of solvers able to compute high accuracy solutions to non-linear
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{| class="wikitable"
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|+ Left: Elementary Cell, stock/flow coupled potentials (1 or N coupled potentials) - Right: example in the thermo-electric context
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|[[File:Imuz.png|400 px]]
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|[[File:Sfte.png|400 px]]
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== Main features==
 
== Main features==

Revision as of 11:32, 1 April 2016

The DYCO Solvers suite

Dyco96 Solvers.jpg

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

Left: Elementary Cell, stock/flow coupled potentials (1 or N coupled potentials) - Right: example in the thermo-electric context
Imuz.png Sfte.png

Main features

  • Solving

Sample Results

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

Sample 3D results including a non-homogeneous thermo-electric material with non-constant TE coefficients.
OUITemperature.png OUIPotential.png OUIElectricCurrent.png
Sample 3D results for N-type junction with non-constant noisy TE coefficients.
OUIEnergyDensity3D.png OUIEntropyProduction.png

In both cases, BC are Homogeneous Neumann and/or Non-Homogeneous Dirichlet. Each elementary cell is of the non-ideal (non-linear) type.

Sub-modules

A sub-module of DYCO shall be devoted to the numerical solution of coupled stock/flow potential in the ecological economics and biological contexts.

Participants

Yves D'Angelo, Christophe Goupil, Eric Herbert, Xanthippi Zianni, Louise Meteir, Aurélie Louis-Napoléon.