<span>Chaouki HABCHI</span>

Chaouki HABCHI

Senior Researcher HDR-Associated with SMEMaG Doctoral School CentraleSupelec

Summary

PhD from the Sorbonne University  (PARIS-6) obtained in 1990 in the field of Computational Fluid Mechanics.

HDR (habilitation à diriger des recherches) from the Institut National Polytechnique de Toulouse (INPT) obtained in 2006 in the field of numerical modeling of two-phase flow.

For many years, Dr. Habchi has been leading a cross-departmental group on the numerical modeling of two-phase flows (fuel properties, cavitation, atomization, spray, liquid film, SCR, etc.). His current fundamental research focuses on the coupling between CFD and real fluid thermodynamics.

HDR Researcher-Associate at the SMEMaG Doctoral School of CentraleSupelec at the University Paris-Saclay, where the PhD students he supervises are attached.

Has directed the research of more than ten doctoral and post-doctoral students with whom more than 90 articles have been published in journals and at conferences (see https://www.researchgate.net/profile/Chaouki_Habchi).

Member of the scientific committee of the ILASS-EUROPE learned society since 2010 and management of the website http://ilasseurope.org.

 

Disciplinary fields

  • Physical Sciences
  • Transfer and transport physics
  • Engineering sciences
  • Fluid mechanics
  • Combustion and engine technologies
  • Mathematics and IT
  • Numerical methods and optimization
  • High performance computing

Research topics

  • 3D modeling and simulation of two-phase flows of real compressible fluids
  • 3D modeling and simulation of liquid films with phase change and wall heat transfer.
  • 3D modeling and simulation of the thermolysis of u

Business areas

  • Renewable energies
  • Biofuels and e-fuels
  • Biogas
  • Sustainable mobility
  • Electrified Mobility

Projects

IPPAD Project: Horizon 2020 H2020-MSCA-ITN-2015 (2015 - 2019)

Project Number: 675528, Total budget: 4 M€

Total funding for two PhD students (budget 525k€)

List of the 10 partners:

  1. City, University of London, United Kingdom (Coordinator)
  2. Friedrich-Alexander-Universität (FAU), Erlangen Nürnberg, Erlangen, Germany
  3. LUND University, Sweden
  4. Technische Universität München (TUM), Germany
  5. IFP Energies nouvelles, Rueil-Malmaison, France
  6. AFTON Chemical Limited, United Kingdom
  7. AVL List GmbH, Graz, Austria

In the framework of this project, an original approach to solve persistent locks in the field of injection processes by combining CFD with real fluid thermodynamics has been developed. (see https://www.ifpenergiesnouvelles.fr/article/modelisation-originale-au-service-lefficacite-energetique-des-moteurs)

EDEM Project: Horizon 2020 H2020-MSCA-ITN-2019 (2019 - 2023)

Project Number:  861002, Total budget: 4.2 M€

Total funding for two PhD students (budget 550k€)

List of the 10 partners:

  1. City, University of London, United Kingdom (Coordinator)
  2. Perkins Engines Company Ltd., Peterborough PE1 5NA, United Kingdon
  3. Friedrich-Alexander-Universität (FAU), Erlangen Nürnberg, Erlangen, Germany
  4. Brunel University London, Kingston Lane, United Kingdom
  5. Technische Universität München (TUM), Germany
  6. IFP Energies nouvelles, Rueil-Malmaison, France
  7. Politecnico di Milano, Piazza Leonardo da Vinci, 32, 20133 Milano, Italy
  8. Chalmers tekniska hoegskola, Göteborg, Sweden
  9. AVL List GmbH, Graz, Austria
  10. Woodward L'Orange GmbH, Stuttgart, Germany

Publications

Access all publications on https://www.researchgate.net/profile/Chaouki_Habchi

The referenced media source is missing and needs to be re-embedded.

 

S. Yang, P. Yi, C. Habchi, Real-fluid injection modeling and LES simulation of the ECN Spray A injector using a fully compressible two-phase flow approach. International Journal of Multiphase Flow 122 (2020) 103145. https://doi.org/10.1016/j.ijmultiphaseflow.2019.103145
The referenced media source is missing and needs to be re-embedded.

 

S. Yang, C. Habchi, Real-fluid phase transition in cavitation modeling considering dissolved non-condensable gas. Phys. Fluids 32, 032102 (2020); https://doi.org/10.1063/1.5140981

The referenced media source is missing and needs to be re-embedded.

 

P. Yi, S. Yang, C. Habchi, R. Lugo, A multicomponent real-fluid fully compressible four-equation model for two-phase flow with phase change. Phys. Fluids 31 (2019), 026102. DOI: 10.1063/1.5065781