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+ | Since September 1rt 2016, I am Full Professor of Fluids Dynamics & Applied Mathematics at the Laboratoire de Mathématiques J.A. Dieudonné | ||
at the University of Nice Sophia Antipolis (UMR 7351) in Nice, France. | at the University of Nice Sophia Antipolis (UMR 7351) in Nice, France. | ||
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+ | From 2005 to 2016 , I was Professor at the French Institute for Applied Sciences (INSA/[http://www.coria-cfd.fr/index.php/User:Dangelo CORIA]) in Rouen, France. | ||
=== ''Research Interests'' === | === ''Research Interests'' === | ||
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=== ''Lab Address'' === | === ''Lab Address'' === | ||
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+ | <br /> | ||
+ | Numerical Modelling & Fluid Dynamics Group<br /> | ||
+ | Laboratoire de Mathématiques J.A. Dieudonné <br /> | ||
+ | Université de Nice Sophia Antipolis CNRS UMR 7351 <br /> | ||
+ | Parc Valrose 06108 NICE CEDEX, France<br /> | ||
+ | ydangelo@unice.fr | ||
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+ | <br /> | ||
DyCo Team <br /> | DyCo Team <br /> | ||
LIED/Laboratoire Interdisciplinaire des Energies de Demain<br /> | LIED/Laboratoire Interdisciplinaire des Energies de Demain<br /> | ||
UMR 8236, Université Paris Diderot, Bât. Lamarck B 35 rue Hélène Brion 75013 Paris FRANCE. <br /> | UMR 8236, Université Paris Diderot, Bât. Lamarck B 35 rue Hélène Brion 75013 Paris FRANCE. <br /> | ||
yves.dangelo@univ-paris-diderot.fr ; yd@dyco.fr <br /> | yves.dangelo@univ-paris-diderot.fr ; yd@dyco.fr <br /> | ||
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===''Solvers''=== | ===''Solvers''=== | ||
− | My team and I | + | My team and I are developping the following solvers: |
* [http://www.dyco.fr/index.php/The_DYCO_Solver DYCO], for simulating coupled potentials stock/flow approach network dynamics and application to thermo-electricity, biology, economics. | * [http://www.dyco.fr/index.php/The_DYCO_Solver DYCO], for simulating coupled potentials stock/flow approach network dynamics and application to thermo-electricity, biology, economics. | ||
* [http://www.coria-cfd.fr/index.php/H-Allegro HALLEGRO] for solving fully compressible subsonic reactive Navier-Stokes equations (HPC using MPI). | * [http://www.coria-cfd.fr/index.php/H-Allegro HALLEGRO] for solving fully compressible subsonic reactive Navier-Stokes equations (HPC using MPI). |
Revision as of 15:33, 14 January 2017
Contents
Since September 1rt 2016, I am Full Professor of Fluids Dynamics & Applied Mathematics at the Laboratoire de Mathématiques J.A. Dieudonné at the University of Nice Sophia Antipolis (UMR 7351) in Nice, France.
From 2005 to 2016 , I was Professor at the French Institute for Applied Sciences (INSA/CORIA) in Rouen, France.
Research Interests
My main research interests deal with numerical modeling & analysis, asymptotic modeling and scientific computing.
At LIED Laboratory, present applications deal with
- Network Themodynamics and MesoScopic modeling in Thermoelectricity (with IEF/CTM, STMicroElectronics, TEISTE/INN, Greece, & Inria),
- Ecological Economics (MeetMadys Project, with AFD & ESSEC)
- Plant response to stress analysis and Biological Networks modeling (PACS Project, with Paris VI and Caen Universities);
- Buoyant destabilization in wet granular media & non-Newtonian flows;
- Eyeglass-framed thermoelectric micro-converter analysis & design (with BioPolis, Valencia, Spain);
- Coupled dynamics of heat & mass transfer, micro-scale flow and particle transport in metal foams (with QUT Brisbane and Arts & Métiers ParisTech);
- Thermo-Electric Rayleigh-Bénard instability.
Lab Address
Numerical Modelling & Fluid Dynamics Group
Laboratoire de Mathématiques J.A. Dieudonné
Université de Nice Sophia Antipolis CNRS UMR 7351
Parc Valrose 06108 NICE CEDEX, France
ydangelo@unice.fr
DyCo Team
LIED/Laboratoire Interdisciplinaire des Energies de Demain
UMR 8236, Université Paris Diderot, Bât. Lamarck B 35 rue Hélène Brion 75013 Paris FRANCE.
yves.dangelo@univ-paris-diderot.fr ; yd@dyco.fr
Solvers
My team and I are developping the following solvers:
- DYCO, for simulating coupled potentials stock/flow approach network dynamics and application to thermo-electricity, biology, economics.
- HALLEGRO for solving fully compressible subsonic reactive Navier-Stokes equations (HPC using MPI).
- FLAMEX for solving asymptotics-based evolution equations, in particular propagating fronts through turbulent 2D and 3D flows (spectral/ETDRK methods for Sivashinsky-type non-linear non-local equations).
We now also make use of adapted versions of the OpenFOAM® software.
International & Industrial Collaborations
International Collaborations
Politecnico Milano, Italy; CUED Cambridge University Engineering Department, UK ; Chair of Fluid Mechanics, TU Berlin, Germany; LTH, Lund University of Technology, Sweden: Dept. of Aircraft Technology, Institute of Nanoscience and Nanotechnology, Greece; University of Valencia, Spain;
Queensland University of Technology, Australia.
Industrial Collaborations
Renault, IFPEN, ONERA, HBOB Grenoble, ST MicroElectronics Tours, BioPolis Spain.
External Links
and also the
- Stratified and MesoScale combustion applications at CORIA-CFD.