Yves D'ANGELO

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Personal Information

Yves D'Angelo

Yves D'Angelo
Since 2005, I am Professor of Fluid Mechanics and Combustion at the French Institute for Applied Sciences (INSA) in Rouen, France, and Researcher at CORIA Lab. My main research interests deal with theoretical combustion, asymptotic modeling and analysis, and scientific computing.

email: dangelo@coria.fr
Tel: +33 (0)2 32 95 99 02 / 36 90

Lab Address

CORIA
Avenue de l'Université - BP 12
76801 Saint Etienne du Rouvray
Tel: +33 (0)2 32 95 36 00
Fax: +33 (0)2 32 91 04 85


Past Positions

Post-doctoral research associate, Yale Center for Combustion Studies, Yale University, New Haven, CT, 1994/95
Research Engineer, Fluid Mechanics and Combustion, French Aerospace Industry (Matra BAe, Aerospatiale, Dassault Aviation).
Assistant Professor, French Institute for Agronomy (AgroParisTech), Paris, 1997/99
Associate Professor, National School of Mechanics and Aeronautics (ENSMA), Poitiers, France, 1999/2005.

Roles & Responsibilites

PhD Advisor for 9 students (since 2000) and member of 16 PhD Defence Juries (since 2003)
Deputy Director of the Research and Development Department at INSA Rouen (administrative management), 2007/09
Responsible for the Master 2, INSA (around 10 students per year)

Teaching

Laminar Combustion
Turbulence
Mathematical Modelling and Numerical Analysis
Asymptotic Modelling,
Hydrodynamic instabilities
Member of the french «Agrégation Externe» jury (oral examiner), since 2006.


Selected papers

Y. D'Angelo & B. Larrouturou, Comparison and analysis of some numerical schemes for stiff complex chemistry problems, M2AN, 29, 3, pp. 259-301, 1995.
L.P. Gao, Y. D'Angelo, I. Silverman, A. Gomez & M.D. Smooke, Quantitative comparison of detailed numerical computations and experiments in counterflow spray diffusion flames, Proceedings of The Combustion Institute, 26:1739-46, 1996.
Y. D'Angelo, Computation of the Flow Structure of an Hydrogen/Air Mixture Downstream of a Steady System of Shock Waves, Aerospace Science and Technology, 5, pp. 309-327, 1997.
Y. D'Angelo, G. Joulin & G. Boury, On Model Evolution Equations for the Whole Surface of 3D Expanding Wrinkled Premixed Flames, Combustion Theory and Modelling, 4, 317-338, 2000 (Best CTM Publication of the Year).
Y. D'Angelo & G. Joulin, Collective Effects and Dynamics of Non-Adiabatic Flame-Balls, Combustion Theory and Modelling, 5, pp. 1-20, 2001.
Y. D'Angelo & G. Joulin, Lifetimes of Flame Balls dragged by model turbulent flows : role of velocity gradient fluctuations, Physical Review E, 69, 036304, 2004.
G. Joulin & Y. D’Angelo, News from the Flame Ball front, in Simplicity, Rigor and Relevance in Fluid Mechanics, F.J. Higuera, J. Jiménez and J.M. Vega (Eds.), CIMNE, Barcelona, pp. 17–46, 2004.
M. Boutat, Y. D’Angelo, S. Hilout & V. Lods, An interface evolution problem for axisymmetric stressed pore channels, Asymptotic Analysis, 34, pp. 131-150, 2005.
O. Esnault, G. Joulin & Y. D'Angelo, Combustion fronts in nondiffusing disordered premixtures. I: Single-channel curved flames, Combustion Theory and Modelling, 12, 4, 739-768, 2008.
E. Albin, Y. D'Angelo & L. Vervisch, Three-Dimensional Navier-Stokes Characteristic Boundary Conditions for transverse and corner outflows, Computers & Fluids, 2011. doi:10.1016/j.compfluid.2011.08.005 
G. Boury & Y. D’Angelo, On third order density contrast expansion of the evolution equation for wrinkled unsteady premixed flames, International Journal of Non-Linear Mechanics, doi:10.1016/j.ijnonlinmec.2011.05.018
E. Albin, Y. D'Angelo & L. Vervisch, Using staggered grids with acoustic boundary conditions when solving compressible reactive Navier-Stokes equations, International Journal for Numerical Methods in Fluids, 2011, doi:10.1002/fld.2520
J. Dombard, B. Leveugle, L. Selle, J. Réveillon, T. Poinsot & Y. D'Angelo, Modeling heat transfer in diluted two-phase flows using the Mesoscopic Eulerian Formalism, International Journal of Heat and Mass Transfer, 2011.
E. Albin & Y. D’Angelo, Assessment of an Evolution Equation Modelling approach for 3D expanding wrinkled premixed flames, submitted to Combustion & Flame, 2011.