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Tanmay Dutta
Tanmay Dutta
Assistant Professor, Department of Mechanical Engineering, IIT (ISM) Dhanbad, India
在 iitism.ac.in 的电子邮件经过验证
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引用次数
引用次数
年份
Comparison of different turbulence models in predicting the temperature separation in a Ranque–Hilsch vortex tube
T Dutta, KP Sinhamahapatra, SS Bandyopdhyay
International journal of refrigeration 33 (4), 783-792, 2010
1582010
Numerical investigation of gas species and energy separation in the Ranque–Hilsch vortex tube using real gas model
T Dutta, KP Sinhamahapatra, SS Bandyopadhyay
International Journal of Refrigeration 34 (8), 2118-2128, 2011
832011
Development of a simple technique for improving the efficacy of fluid flow through the grinding zone
S Banerjee, S Ghosal, T Dutta
journal of materials processing technology 197 (1-3), 306-313, 2008
442008
CFD Analysis of Energy Separation in Ranque-Hilsch Vortex Tube at Cryogenic Temperature
T Dutta, KP Sinhamahapatra, SS Bandyopadhyay
Journal of Fluids 2013, 2013
252013
Experimental and numerical investigation of energy separation in counterflow and uniflow vortex tubes
T Dutta, KP Sinhamahapatra, SS Bandyopadhyay
International Journal of Refrigeration 123, 9-22, 2021
222021
CFD simulation and thermodynamic analysis of energy separation in vortex tube using different inert gases at different inlet pressures and cold mass fractions
TD P. Ambedkar
Energy 263, 125797, 2023
152023
Analysis of various separation characteristics of Ranque-Hilsch vortex tube and its applications–A review
P Ambedkar, T Dutta
Chemical Engineering Research and Design 191, 93-108, 2023
112023
CFD analysis of different working gases in Ranque-Hilsch vortex tube
P Ambedkar, T Dutta
Materials Today: Proceedings 72, 761-767, 2023
32023
Experimental Investigation and CFD Analysis of Energy Separation in Ranque–Hilsch Vortex Tube
T Dutta
IIT Kharagpur, 2011
32011
DEVELOPMENT OF A SIMPLETECHNIQUE FOR ENHANCING THE FLUID FLOW THROUGH THE GRINDING ZONE
T Dutta, S Ghosal, S Banerjee
Innovating the Future Through Manufacturing, 109, 2005
32005
Design and Computational Fluid Dynamics Analysis of a Novel Compact Mixing Chamber in Blast Furnace Ironmaking
T Dutta
Journal of Thermal Science and Engineering Applications 14 (2), 021004, 2022
2022
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