On the use of immersed boundary methods for shock/obstacle interactions A Chaudhuri, A Hadjadj, A Chinnayya Journal of Computational Physics 230 (5), 1731-1748, 2011 | 136 | 2011 |
Transition between regular and Mach reflection of shock waves: new numerical and experimental results MS Ivanov, D Vandromme, VM Fomin, AN Kudryavtsev, A Hadjadj, ... Shock Waves 11 (3), 199-207, 2001 | 102 | 2001 |
A survey on experimental and numerical studies of convection heat transfer of nanofluids inside closed conduits MR Safaei, M Safdari Shadloo, MS Goodarzi, A Hadjadj, HR Goshayeshi, ... Advances in Mechanical Engineering 8 (10), 1687814016673569, 2016 | 90 | 2016 |
Nozzle flow separation A Hadjadj, M Onofri Shock Waves 19 (3), 163-169, 2009 | 90 | 2009 |
Numerical study of shock-wave mitigation through matrices of solid obstacles A Chaudhuri, A Hadjadj, O Sadot, G Ben-Dor Shock Waves 23 (1), 91-101, 2013 | 70 | 2013 |
Blast wave mitigation by dry aqueous foams E Del Prete, A Chinnayya, L Domergue, A Hadjadj, JF Haas Shock waves 23 (1), 39-53, 2013 | 64 | 2013 |
Computation and flow visualization in high-speed aerodynamics A Hadjadj, A Kudryavtsev Journal of Turbulence, N16, 2005 | 63 | 2005 |
Three-dimensional lattice Boltzmann simulations of high density ratio two-phase flows in porous media R Sadeghi, MS Shadloo, M Hopp-Hirschler, A Hadjadj, U Nieken Computers & Mathematics with Applications 75 (7), 2445-2465, 2018 | 56 | 2018 |
Statistical behavior of supersonic turbulent boundary layers with heat transfer at M∞= 2 MS Shadloo, A Hadjadj, F Hussain International Journal of Heat and Fluid Flow 53, 113-134, 2015 | 54 | 2015 |
Numerical study of compressible mixing layers using high-order WENO schemes A Chaudhuri, A Hadjadj, A Chinnayya, S Palerm Journal of Scientific Computing 47 (2), 170-197, 2011 | 51 | 2011 |
Large-eddy simulation of shock/boundary-layer interaction A Hadjadj AIAA journal 50 (12), 2919-2927, 2012 | 49 | 2012 |
Macro-mechanical modelling of blast wave mitigation in foams. Part I: review of available experiments and models A Britan, H Shapiro, M Liverts, G Ben-Dor, A Chinnayya, A Hadjadj Shock Waves 23 (1), 5-23, 2013 | 46 | 2013 |
Numerical investigations of transition between regular and Mach reflections caused by free-stream disturbances AN Kudryavtsev, DV Khotyanovsky, MS Ivanov, A Hadjadj, D Vandromme Shock Waves 12 (2), 157-165, 2002 | 46 | 2002 |
Effect of wall temperature in supersonic turbulent boundary layers: A numerical study A Hadjadj, O Ben-Nasr, MS Shadloo, A Chaudhuri International Journal of Heat and Mass Transfer 81, 426-438, 2015 | 44 | 2015 |
Assessment of subgrid-scale modeling for large-eddy simulation of a spatially-evolving compressible turbulent boundary layer O Ben-Nasr, A Hadjadj, A Chaudhuri, MS Shadloo Computers & Fluids 151, 144-158, 2017 | 43 | 2017 |
Numerical study of shock/boundary layer interaction in supersonic overexpanded nozzles A Hadjadj, Y Perrot, S Verma Aerospace science and technology 42, 158-168, 2015 | 39 | 2015 |
Numerical study of shock propagation and attenuation in narrow tubes including friction and heat losses D Ngomo, A Chaudhuri, A Chinnayya, A Hadjadj Computers & fluids 39 (9), 1711-1721, 2010 | 39 | 2010 |
Shock wave boundary layer interaction A Hadjadj, JP Dussauge Shock Waves 19 (6), 449-452, 2009 | 39 | 2009 |
Laminar-turbulent transition in supersonic boundary layers with surface heat transfer: a numerical study MS Shadloo, A Hadjadj Numerical Heat Transfer, Part A: Applications 72 (1), 40-53, 2017 | 38 | 2017 |
Numerical investigation of shock-reflection phenomena in overexpanded supersonic jets A Hadjadj, AN Kudryavtsev, MS Ivanov AIAA journal 42 (3), 570-577, 2004 | 37 | 2004 |