Difference between revisions of "Welcome to the DYCO Team Main Page !"

 
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and also, in the context of fluid dynamics, the buoyant destabilization of wet granular or non-Newtonian media, and the thermo-electric Rayleigh-Bénard instability.
 
and also, in the context of fluid dynamics, the buoyant destabilization of wet granular or non-Newtonian media, and the thermo-electric Rayleigh-Bénard instability.
  
See our [http://www.dyco.fr/index.php/Recent_Publications recent publications].
 
  
 
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* [http://www.dyco.fr/index.php/User:Eh Eric Herbert], Associate Professor of Physics - Paris Diderot University  
 
* [http://www.dyco.fr/index.php/User:Eh Eric Herbert], Associate Professor of Physics - Paris Diderot University  
  
* [http://www.dyco.fr/index.php/User:Yd Yves D'Angelo], Full Professor of Applied Mathematics & Fluid Dynamics - [http://math.unice.fr University of Nice-Sophia-Antipolis], Nice, France; (previously at [http://www.coria-cfd.fr/index.php/User:Dangelo  INSA/CORIA] Rouen)
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* [http://www.dyco.fr/index.php/User:Yd Yves D'Angelo], Full Professor of Applied Mathematics - [http://math.unice.fr University Côte d'Azur, Nice, France; (previously at [http://www.coria-cfd.fr/index.php/User:Dangelo  INSA/CORIA] Rouen).
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See YD's [http://www.dyco.fr/index.php/Recent_Publications recent publications].

Latest revision as of 18:19, 18 March 2023

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Research

Our research activities mainly deal with the modeling, simulation & analysis of the dynamics of coupled potentials, mainly in an Onsager-type force/flux approach.

Present applications are network thermodynamics, thermoelectricity, ecological economics, network modeling & stress signaling in plants, and also, in the context of fluid dynamics, the buoyant destabilization of wet granular or non-Newtonian media, and the thermo-electric Rayleigh-Bénard instability.


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The DYCO Team Members

  • Eric Herbert, Associate Professor of Physics - Paris Diderot University

See YD's recent publications.