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Dipankar Chatterjee
Dipankar Chatterjee
Senior Principal Scientist & Professor (@ AcSIR), CSIR-CMERI
Verified email at cmeri.res.in
Title
Cited by
Cited by
Year
An enthalpy-based lattice Boltzmann model for diffusion dominated solid–liquid phase transformation
D Chatterjee, S Chakraborty
Physics Letters A 341 (1-4), 320-330, 2005
1412005
A hybrid lattice Boltzmann model for solid–liquid phase transition in presence of fluid flow
D Chatterjee, S Chakraborty
Physics Letters A 351 (4-5), 359-367, 2006
1362006
An enthalpy-based hybrid lattice-Boltzmann method for modelling solid–liquid phase transition in the presence of convective transport
S Chakraborty, D Chatterjee
Journal of Fluid Mechanics 592, 155-175, 2007
1312007
Effect of thermal buoyancy on vortex shedding behind a square cylinder in cross flow at low Reynolds numbers
D Chatterjee, B Mondal
International Journal of Heat and Mass Transfer 54 (25-26), 5262-5274, 2011
972011
Numerical simulation of flow past row of square cylinders for various separation ratios
D Chatterjee, G Biswas, S Amiroudine
Computers & Fluids 39 (1), 49-59, 2010
972010
Two-dimensional mixed convection heat transfer from confined tandem square cylinders in cross-flow at low Reynolds numbers
D Chatterjee, S Amiroudine
International Communications in Heat and Mass Transfer 37 (1), 7-16, 2010
802010
Mixed convective transport in a lid-driven cavity containing a nanofluid and a rotating circular cylinder at the center
D Chatterjee, SK Gupta, B Mondal
International Communications in Heat and Mass Transfer 56, 71-78, 2014
782014
An enthalpy-source based lattice Boltzmann model for conduction dominated phase change of pure substances
D Chatterjee, S Chakraborty
International Journal of Thermal Sciences 47 (5), 552-559, 2008
732008
Forced Convection Heat Transfer From Tandem Square Cylinders for Various Spacing Ratios
D Chatterjee, B Mondal
Numerical Heat Transfer, Part A: Applications 61 (5), 381-400, 2012
612012
The Effect of Aiding/Opposing Buoyancy on Two-Dimensional Laminar Flow Across a Circular Cylinder
G Gandikota, S Amiroudine, D Chatterjee, G Biswas
Numerical Heat Transfer, Part A: Applications 58 (5), 385-402, 2010
592010
Prediction of clad characteristics using ANN and combined PSO-ANN algorithms in laser metal deposition process
P Pant, D Chatterjee
Surfaces and Interfaces 21, 100699, 2020
582020
Hydromagnetic Mixed Convective Transport in a Vertical Lid-Driven Cavity Including a Heat Conducting Rotating Circular Cylinder
D Chatterjee, B Mondal, P Halder
Numerical Heat Transfer, Part A: Applications 65 (1), 48-65, 2014
562014
Lattice Boltzmann simulation of incompressible transport phenomena in macroscopic solidification processes
D Chatterjee
Numerical Heat Transfer, Part B: Fundamentals 58 (1), 55-72, 2010
562010
Numerical investigation of forced convection heat transfer in unsteady flow past a row of square cylinders
D Chatterjee, G Biswas, S Amiroudine
International Journal of Heat and Fluid Flow 30 (6), 1114-1128, 2009
522009
MHD Mixed Convection in a Lid-Driven Cavity Including a Heated Source
D Chatterjee
Numerical Heat Transfer, Part A: Applications 64 (3), 235-254, 2013
482013
Effect of Thermal Buoyancy on the Two-Dimensional Upward Flow and Heat Transfer Around a Square Cylinder
D Chatterjee, B Mondal
Heat Transfer Engineering 33 (12), 1063-1074, 2012
462012
An enthalpy-based thermal lattice Boltzmann model for non-isothermal systems
D Chatterjee
Europhysics Letters 86 (1), 14004, 2009
462009
MHD flow and heat transfer behind a square cylinder in a duct under strong axial magnetic field
D Chatterjee, SK Gupta
International Journal of Heat and Mass Transfer 88, 1-13, 2015
452015
Investigation of Mixed Convection in a ventilated cavity in the presence of a heat conducting circular cylinder
SK Gupta, D Chatterjee, B Mondal
Numerical Heat Transfer, Part A: Applications 67 (1), 52-74, 2015
452015
MHD mixed convection in a lid-driven cavity including heat conducting circular solid object and corner heaters with Joule heating
S Ray, D Chatterjee
International Communications in Heat and Mass Transfer 57, 200-207, 2014
432014
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