Difference between revisions of "User:Yd"

(Yves D'Angelo)
 
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[[File:PhotoYD.jpg|200px|Yves D'Angelo]] <br/ >
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=Yves D'Angelo=
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Since September 2016, I am Full Professor of Applied Mathematics  at Université Côte d'Azur (formerly University of Nice-Sophia Antipolis) and Researcher at  [http://math.unice.fr/ Laboratoire de Mathématiques & Interactions J.A. Dieudonné] CNRS UMR 7351, in the Fluid Dynamics & Scientific Computing Group.
  
[http://www.coria-cfd.fr/index.php/User:Dangelo  See also my homepage at CORIA-CFD]
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From September 2019 to August 2023, I am Head of the [https://math.unice.fr J.A. Dieudonné Lab] (~ 260 people).
  
[[File:PhotoYD.jpg|right|200px|Yves D'Angelo]]  
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From 2005 to 2016, I was Full Professor in the Energy & Propulsion Department, French Institute for Applied Sciences (INSA/[http://www.coria-cfd.fr/index.php/User:Dangelo CORIA]), Rouen, France, and Researcher at CORIA Lab.
  
=== ''Personal Information'' ===
 
  
Since 2005, I am Professor of Fluids Mechanics & Applied Mathematics at the French Institute for Applied Sciences (INSA) in Rouen, France.
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=== ''Research Interests'' ===
  
My main research interests deal with numerical modeling & analysis, asymptotic modeling and scientific computing
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My experience is strongly interdisciplinary and deals with modeling, numerical methods and simulation, scientific computing, in fluid dynamics, turbulent combustion, chemical kinetics, pollutant formation, heat & mass transfer, granular & two-phase flows, hydrodynamic instabilities…
  
<strong>At LIED</strong>, present or recent applications deal with  
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In the combustion field, applications deal with [http://www.coria-cfd.fr/index.php/User:Dangelo combustive flows] & thermoelectric conversion at the small scale, flame/wall interaction (with IFPEN), expanding wrinkled flames, flame-balls & ignition kernels analysis, flame/acoustics interaction, percolation modeling for front propagation, pollutant formation in plane engines (with ONERA),  
*  Mathematical Modeling, Simulation & Analysis in [http://www.dyco.fr/index.php/Ecological_Economics Ecological Economics] (MeetMadys Project)
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stratified combustion modeling in engines (with Renault).  
and Biological Networks ([http://www.dyco.fr/index.php/PACS/Plant_response_to_stress_%26_Biological_Networks PACS Project]);
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*  Buoyant destabilization in [http://www.dyco.fr/index.php/http://www.dyco.fr/index.php/Buoyant_destabilization_in_wet_granular_media_%26_non-Newtonian_flows wet granular media & non-Newtonian flows]
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*  Eyeglass-framed thermoelectric micro-converter analysis & design (with BioPolis, Valencia, Spain).
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*  Coupled dynamics of heat & mass transfer, micro-scale flow and particle transport in [http://www.dyco.fr/index.php/Flow,_heat_transfer_%26_particle_transport_in_metal_foams metal foams]
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(with QUT Brisbane & Arts&Métiers ParisTech);
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*  [http://www.dyco.fr/index.php/Network_Thermodynamics Network Thermodynamics] &  [http://www.dyco.fr/index.php/ThermoElectricity_%26_Mesoscopic_description Thermo-Electric Rayleigh-Bénard instability].  
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Me and my team also develop the following solvers:
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More recent applications concern buoyant thermal destabilization in wet granular media and non-Newtonian flows (with [http://inphyni.cnrs.fr/en/research/nonlinear-physics-complex-fluids-and-biophysics/concentrated-suspensions-rheology Institut de Physique de Nice], LIED and aloso SVI/St Gobain), biological dynamic expanding networks (see the DREAMS/Nematic project below), thermodynamics of metabolic energy conversion under muscle load, ecological economics (with AFD), and also very recently thermoplasmonics at the nanoscale with the [http://www-sop.inria.fr/atlantis/ Inria Atlantis Team]. Collaborations with [https://www.fresnel.fr/spip/spip.php?article2327 Guillaume Baffou] at Institut Fresnel in Marseille and [https://www.polymtl.ca/phys/michel-meunier Michel Meunier] at Polytechnique Montréal are in progress.
* [http://www.dyco.fr/index.php/The_DYCO_Solver DYCO]
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* [http://www.dyco.fr/index.php/The_HALLEGRO_Solver HALLEGRO]
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* [http://www.dyco.fr/index.php/The_FLAMEX_Solver FLAMEX]
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We also make use of adapted versions of the  [http://www.dyco.fr/index.php/Using & Developing the OpenFoam® suite| OpenFOAM® software].
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<span style="font-size: 100%; border: "><span style="color:#FF0000">  At LIED and LJAD Labs </span></span>, applications and collaborations concern:
  
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* [http://www.dyco.fr/index.php/Ecological_Economics Ecological Economics], with [http://www.afd.fr/home/AFD/presentation-afd/GouvernanceAFD/gael-giraud AFD] and [http://www.chair-energy-prosperity.org/category/chercheurs-associes/yves-dangelo/ Energy & Prosperity Chair]  (''stand-by'');
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* Thermodynamics of metabolic energy conversion under muscle load and in particular the cost of oxygen question, with DYCO Team and [https://faculty.skoltech.ru/people/henniouerdane Skolkovo Institute of Science and Technology (''stand-by'');
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* <span style="font-size: 100%; border: "><span style="color:#FF0000">  GRANUTHERM Project : </span></span>  Buoyant destabilization in [http://www.dyco.fr/index.php/Buoyant_destabilization_in_wet_granular_media_%26_non-Newtonian_flows wet granular media & non-Newtonian flows] with LIED and [http://inphyni.cnrs.fr/en/research/nonlinear-physics-complex-fluids-and-biophysics/concentrated-suspensions-rheology InPhyNi];
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* Eyeglass-framed thermoelectric micro-converter analysis & design (with [https://www.pcuv.es/en/empresas-instaladas/Biotecnolog-a/BIOPOLIS BioPolis]/[https://www.pcuv.es/en/empresas-instaladas//DARWIN-BIOPROSPECTING-EXCELLENCE--S-L Darwin], Valencia, Spain); (''stand-by'')
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* <span style="font-size: 100%; border: "><span style="color:#FF0000">  DREAMS/Nematic Project : ,</span></span>  Analysis of Dynamical Expanding Networks: modeling multi-scale spatial exploration, spreading & morphogenesisespecially in the biologic context. Our archetypal example & investigation topic is the constrained hyphal growth of the filamentous fungus ''Podospora anserina'' (the [https://workshopdena17.sciencesconf.org DENA]/[http://www.dyco.fr/index.php/DREAMS DREAMS project]. In the framework of an ANR support, the involved partners are [http://math.unice.fr/~rcatelli LJAD], [http://www-sop.inria.fr/members/Laurent.Monasse/ Inria COFFEE], the [http://www.lied-pieri.univ-paris-diderot.fr/?emd_person=brouillon-auto-15 B2C group] and Physics Group at LIED,  the [https://www.math.u-psud.fr/~olivier/ LMO] at Orsay, the [http://www.cmap.polytechnique.fr/~veber/ CMAP] at Ecole Polytechnique, and also [http://users.dma.unipi.it/flandoli/ SNS Pisa].
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* Nano-thermoplasmonics modeling & simulation: coupling (hyperbolic) heat transfer equations and Maxwell equations at the nanoscale; further coupling with the dynamics of possibly reactive flows). Collaboration with [https://www-sop.inria.fr/atlantis/ Inria ATLANTIS Team] <span style="font-size: 100%; border: "><span style="color:#FF0000"> (in progress !) </span></span>
  
<strong> See also CORIA Web sites :  </strong><br />
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=== ''Lab Address'' ===
[http://www.coria-cfd.fr/index.php/H-Allegro HALLEGRO Page at CORIA] <br />
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[http://www.coria-cfd.fr/index.php/YALES2_Gallery#Stratified_combustion Stratified Combustion] <br />
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[http://www.coria-cfd.fr/index.php/YALES2_Gallery#MESOCORIA_burner MesoScale Combustion] <br />
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<strong> Lab Address</strong><br />
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<br />
DyCo Team <br />
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Laboratoire Mathématiques & Interactions J.A. Dieudonné <br />
Laboratoire Interdisciplinaire des Energies de Demain (LIED)<br />
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Université Côte d'Azur  CNRS UMR 7351  <br />
UMR 8236, Université Paris Diderot, Bât. Lamarck B 35 rue Hélène Brion 75013 Paris FRANCE. <br />
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Parc Valrose 06108 NICE CEDEX, France<br />
yves.dangelo@univ-paris-diderot.fr ; yd@dyco.fr <br />
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ydangelo@unice.fr, yves.dangelo@univ-cotedazur.fr<br />
+33 (0)1 57 27 50 15
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<strong> Responsibilites at LIED </strong><br />
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Also
* Co-President of the LIED Scientific Council  <br />
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* Main developer of the DYCO solver
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<strong>International  Collaborations  </strong><br />
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INRIA Atlantis Team <br />
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;  BioPolis & University of Valencia, Spain; 
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2004 Route des Lucioles 06902 Valbonne, France <br />
Queensland University of Technology, Australia.
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<strong> Industrial Collaborations </strong> <br />
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===''Solvers''===
Renault, IFPEN, ONERA, HBOB Grenoble, BioPolis Valencia.
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My team and I developed/still developing the following solvers:
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* [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. 
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* [http://www.coria-cfd.fr/index.php/H-Allegro HALLEGRO] for solving fully compressible subsonic reactive Navier-Stokes equations (HPC using MPI).   
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* [http://www.dyco.fr/index.php/The_FLAMEX_Solver 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). 
 +
 
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We now also make use of adapted versions of the  [/Using_%26_Developing_the_OpenFoam%C2%AE_suite OpenFOAM® software].
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===''International & Industrial Collaborations''===
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<strong> ''International Collaborations ''</strong><br /> Center for Combustion Studies, Yale University;; Skolkovo Institute, Moscow; Politecnico Milano, Italy;  CUED Cambridge University Engineering Department, UK ;  Chair of Fluid Mechanics, TU Berlin, Germany;  LTH, Lund University of Technology, Sweden; Institute of Nanoscience and Nanotechnology, Greece;  University of Valencia, Spain; University of Washington, Seattle; Center for Nonlinear and Complex Systems, Como; Scuola Normale Superiore, Pisa, Italy; Queensland University of Technology, Australia; Institut Fresnel, Marseille (in progress); Ecole Polytechnique de Montréal, Canada (in progress).
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<strong>''Industrial Collaborations''</strong> <br />
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Renault, IFPEN, ONERA, St-Gobain.  
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===''External Links''===
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*[http://www.coria-cfd.fr/index.php/User:Dangelo My former homepage at CORIA-CFD] and  [http://www.coria-cfd.fr/index.php/H-Allegro HALLEGRO Page at CORIA] <br />
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and  also the
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* [http://www.coria-cfd.fr/index.php/YALES2_Gallery#Stratified_combustion Stratified] and [http://www.coria-cfd.fr/index.php/YALES2_Gallery#MESOCORIA_burner MesoScale] combustion applications at CORIA-CFD.
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Latest revision as of 22:22, 20 September 2023

Yves D'Angelo

Since September 2016, I am Full Professor of Applied Mathematics at Université Côte d'Azur (formerly University of Nice-Sophia Antipolis) and Researcher at Laboratoire de Mathématiques & Interactions J.A. Dieudonné CNRS UMR 7351, in the Fluid Dynamics & Scientific Computing Group.

From September 2019 to August 2023, I am Head of the J.A. Dieudonné Lab (~ 260 people).

From 2005 to 2016, I was Full Professor in the Energy & Propulsion Department, French Institute for Applied Sciences (INSA/CORIA), Rouen, France, and Researcher at CORIA Lab.


Research Interests

My experience is strongly interdisciplinary and deals with modeling, numerical methods and simulation, scientific computing, in fluid dynamics, turbulent combustion, chemical kinetics, pollutant formation, heat & mass transfer, granular & two-phase flows, hydrodynamic instabilities…

In the combustion field, applications deal with combustive flows & thermoelectric conversion at the small scale, flame/wall interaction (with IFPEN), expanding wrinkled flames, flame-balls & ignition kernels analysis, flame/acoustics interaction, percolation modeling for front propagation, pollutant formation in plane engines (with ONERA), stratified combustion modeling in engines (with Renault).

More recent applications concern buoyant thermal destabilization in wet granular media and non-Newtonian flows (with Institut de Physique de Nice, LIED and aloso SVI/St Gobain), biological dynamic expanding networks (see the DREAMS/Nematic project below), thermodynamics of metabolic energy conversion under muscle load, ecological economics (with AFD), and also very recently thermoplasmonics at the nanoscale with the Inria Atlantis Team. Collaborations with Guillaume Baffou at Institut Fresnel in Marseille and Michel Meunier at Polytechnique Montréal are in progress.

At LIED and LJAD Labs , applications and collaborations concern:

  • Ecological Economics, with AFD and Energy & Prosperity Chair (stand-by);
  • Thermodynamics of metabolic energy conversion under muscle load and in particular the cost of oxygen question, with DYCO Team and [https://faculty.skoltech.ru/people/henniouerdane Skolkovo Institute of Science and Technology (stand-by);
  • GRANUTHERM Project : Buoyant destabilization in wet granular media & non-Newtonian flows with LIED and InPhyNi;
  • Eyeglass-framed thermoelectric micro-converter analysis & design (with BioPolis/Darwin, Valencia, Spain); (stand-by)
  • DREAMS/Nematic Project : , Analysis of Dynamical Expanding Networks: modeling multi-scale spatial exploration, spreading & morphogenesisespecially in the biologic context. Our archetypal example & investigation topic is the constrained hyphal growth of the filamentous fungus Podospora anserina (the DENA/DREAMS project. In the framework of an ANR support, the involved partners are LJAD, Inria COFFEE, the B2C group and Physics Group at LIED, the LMO at Orsay, the CMAP at Ecole Polytechnique, and also SNS Pisa.
  • Nano-thermoplasmonics modeling & simulation: coupling (hyperbolic) heat transfer equations and Maxwell equations at the nanoscale; further coupling with the dynamics of possibly reactive flows). Collaboration with Inria ATLANTIS Team (in progress !)

Lab Address


Laboratoire Mathématiques & Interactions J.A. Dieudonné
Université Côte d'Azur CNRS UMR 7351
Parc Valrose 06108 NICE CEDEX, France
ydangelo@unice.fr, yves.dangelo@univ-cotedazur.fr

Also

INRIA Atlantis Team
2004 Route des Lucioles 06902 Valbonne, France

Solvers

My team and I developed/still developing 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 [/Using_%26_Developing_the_OpenFoam%C2%AE_suite OpenFOAM® software].

International & Industrial Collaborations

International Collaborations
Center for Combustion Studies, Yale University;; Skolkovo Institute, Moscow; Politecnico Milano, Italy; CUED Cambridge University Engineering Department, UK ; Chair of Fluid Mechanics, TU Berlin, Germany; LTH, Lund University of Technology, Sweden; Institute of Nanoscience and Nanotechnology, Greece; University of Valencia, Spain; University of Washington, Seattle; Center for Nonlinear and Complex Systems, Como; Scuola Normale Superiore, Pisa, Italy; Queensland University of Technology, Australia; Institut Fresnel, Marseille (in progress); Ecole Polytechnique de Montréal, Canada (in progress).

Industrial Collaborations
Renault, IFPEN, ONERA, St-Gobain.

External Links

and also the