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CFD Review Jobs Database - View Resume
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Resume Updated: 5 Dec 2011
Arnab Chaudhuri http://
Tel: +33 (0) 643006136, +33 (0) 232959796 Fax:
Résidence Mac Orlan
88 Boulevard d'Orléans, NO. 103
76100 Rouen

CFD Researcher, CFD Developer
Salary Requirements
Employment History
Research Associate 2009 to till date
Rouen, France
I am currently working as a Research Associate at the French National Center for Scientific Research (CNRS), jointly with CORIA and INSA de ROUEN, Normandy, France. During my PhD thesis, I worked on reacting/non-reacting microscale gas flow simulations by developing CFD solvers in continuum approach. My recent research activities concern the development and the validation of high-order coupled algorithms for compressible fluid flows with complex geometries, in relations with industrial applications (mainly aerospace and aeronautics propulsion). In the framework of High-Performance Computing (HPC), high-fidelity direct numerical simulations (DNS) and large-eddy simulations (LES) are used to decipher complex turbulent flows, with multispecies, heat transfer and compressibility effects.
2007: PhD (Engineering).
Thesis: “CFD analysis of non-reacting and reacting compressible flow” from Jadavpur University, Kolkata, India.

2001: M.E (Chemical Engineering) 83.0%, 1st Class
Master thesis on “Transient analysis of heat-exchanger network” from Jadavpur University, Kolkata, India.

Research Experience
• 2009 - … Research Associate at CNRS – CORIA Laboratory and INSA of Rouen.
− Development of an efficient approach to handle complex geometries.
• 2007 - 2009: Post doctoral Research Fellow funded by the French Aerospace Agency (CNES).
− Further development of in-house CFD codes and performance optimization.
− Delivery of the progress and final reports.
• 2002 – 2007: Research Fellow - Dept. of Chemical Eng., Jadavpur Univ. - Prof. T.K.Dutta & Dr. C.Guha.

Publications: Journal
1. E. Glazer, O. Sadot, A. Hadjadj, A. Chaudhuri, On the velocity scaling of a reflected shock wave from a circular cylinder, Physical Review E, APS, Accepted May 2011.
2. A. Chaudhuri, A. Hadjadj, A. Chinnayya, On the use of immersed boundary methods for shock/obstacle interactions, Journal Computational Physics, Vol. 230, 5, 2011, p1731-1748, 2011.
3. A. Chaudhuri, A. Hadjadj, A. Chinnayya, S. Palerm, Numerical study of compressible mixing layers using high-order WENO schemes, Journal of Scientific Computing, DOI 10.1007/s10915-010-9429-3, published online 30 Oct. 2010.
4. D. Ngomo, A. Chaudhuri, A. Chinnayya and A. Hadjadj, Numerical study of shock propagation and attenuation in narrow tubes including friction and heat losses, Computers and Fluids, Vol. 39, Issue 9, p1711-1721, 2010.
5. A. Chaudhuri, C. Guha, & T. K. Dutta, Finite Volume Simulation of High Speed Combustion of Acetylene-Air Mixture in Microchannels, Chemical Engineering and Technology (Wiley VCH), Vol. 30, No. 5, DOI: 10.1002/ceat.200600389, 2007.
6. A. Chaudhuri, C. Guha, T. K. Dutta, Numerical Study of Fluid Flow and Heat Transfer in Partially Heated Microchannel Using Explicit Finite Volume Method, Chemical Engineering and Technology (Wiley VCH), Vol. 30, No. 4, DOI: 10.1002/ceat.200600366, 2007.
7. A. Chaudhuri, C. Guha, T. K. Dutta, Finite Volume Simulation of Supersonic to Hypersonic Gas Flow and Heat Transfer through Microchannel, Chemical Engineering and Technology (Wiley VCH), Vol. 30, No. 1, p41-45, 2007.
8. C. Guha, A. Chaudhuri, Transient Analysis of Heat Exchanger Network, Inst. Engs Ind. Journal Chem. Engg. ,Vol. 87, p51-59, 2007.
9. A. Chaudhuri, C. Guha, T. K. Dutta, Numerical Study of Micro-Scale Gas Flow Using Finite Volume Method, Journal of Physics Conference series Vol. 34, p291-297, 2006.

Book Chapter :
A. Chaudhuri, A. Hadjadj, C. Guha and T. K. Dutta, Numerical Simulations of Microscale Gas Flows: Continuum Approach, Recent Advances in Technologies, Edited by Maurizio A Strangio, Intech publication, ISBN 978-953-307-017-9, 2009.

Conferences :
1. A. Chaudhuri, A. Hadjadj, O. Sadot, G. Ben-Dor, Numerical study of moving shock waves interacting with array of cylinders, 19th International Shock Interaction Symposium (ISIS 19), August 31– September 3, 2010, Moscow, Russia.
2. A. Chaudhuri, A. Hadjadj, S. Palerm, Numerical simulation of compressible mixing layers, European Congress for Aero-space Sciences (EUCASS 2009), July 6-9th, 2009, Palais des Congrès - Versailles, France.
3. A. Chaudhuri, C. Guha, T. K. Dutta, Numerical Study of Microscale Gas Flow-Separation Using Explicit Finite Volume Method, Proc. World Academy of Sciences, Engineering and Technology, Vol. 36, 338-341, ISSN 2070-3740, December 2008.
4. A. Chaudhuri, C. Guha, T. K. Dutta, Numerical Study of Flame Acceleration in Microchannel, NSTI, Nanotech 2007, Santa Clara Convention Center, Santa Clara, California, USA, May 20-24, 2007.
5. A. Chaudhuri, C. Guha, T. K. Dutta, Application of AUSM & AUSM+ in Inviscid Flow, in Proc. 58th Annual Chemical Engineering Congress (CHEMCON-2005) of IIChE, 14 -17 Dec, 2005, IIT Delhi, India.
6. A. Chaudhuri, C. Guha, T. K. Dutta, Study of Supersonic Flow over Rearward-Facing Step, in Proc. International Conference on Computation and Experimental Engineering and Sciences, (ICCES-2005), 1-6 Dec, 2005, IIT Madras, India.
Description Proficiency Experience
CFD analysis Advanced >5 Years
FORTRAN programming Intermediate 3-5 Years
C++ programming Intermediate 2-3 Years
Fluid - Structure interaction Intermediate 1-2 Years
Parallelization Intermediate 1-2 Years
Additional Skill Info
• Finite Difference/Finite volume, Structured mesh • High order WENO scheme based 3D parallel compressible NS solver • Immersed boundary method Domain of experience: DNS, LES, Compressible flow, Shock, Turbulence, Microscale non-reacting/reacting gas flow.
1. Prof. Abdellah Hadjadj
Université et INSA de Rouen, France

2. Prof. Tapas Kumar Dutta
Dept. of Chemical Engineering
Jadavpur University, Kolkata – 700032
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