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Nitin D. Banker
Nitin D. Banker
Verified email at ahduni.edu.in
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Cited by
Year
Evaluation of minimum desorption temperatures of thermal compressors in adsorption refrigeration cycles
BB Saha, II El-Sharkawy, A Chakraborty, S Koyama, ND Banker, P Dutta, ...
International Journal of Refrigeration 29 (7), 1175-1181, 2006
712006
Performance studies on mechanical+ adsorption hybrid compression refrigeration cycles with HFC 134a
ND Banker, P Dutta, M Prasad, K Srinivasan
International Journal of Refrigeration 31 (8), 1398-1406, 2008
652008
Performance analysis of activated carbon+ HFC-134a adsorption coolers
ND Banker, K Srinivasan, M Prasad
Carbon 42 (1), 117-127, 2004
532004
Development and transient performance results of a single stage activated carbon–HFC 134a closed cycle adsorption cooling system
ND Banker, M Prasad, P Dutta, K Srinivasan
Applied thermal engineering 30 (10), 1126-1132, 2010
302010
Activated carbon+ HFC 134a based two stage thermal compression adsorption refrigeration using low grade thermal energy sources
ND Banker, M Prasad, P Dutta, K Srinivasan
Applied thermal engineering 29 (11-12), 2257-2264, 2009
302009
Numerical investigation of heat transfer enhancement in a multitube thermal energy storage heat exchanger using fins
D Dandotiya, ND Banker
Numerical Heat Transfer, Part A: Applications 72 (5), 389-400, 2017
242017
Performance enhancement of a refrigerator using phase change material-based condenser: an experimental investigation
D Dandotiya, ND Banker
International Journal of Air-Conditioning and Refrigeration 25 (04), 1750032, 2017
172017
Experimental results of an activated carbon–HFC 134a adsorption cooling system for thermal management of electronics
ND Banker, M Prasad, P Dutta, K Srinivasan
Applied thermal engineering 31 (10), 1607-1612, 2011
152011
Evaluation of sorption compressor performance from isotherm data: application to activated carbon+ nitrogen/HFC 134a systems
K Srinivasan, ND Banker, M Prasad, BS Akkimaradi
Thermally powered sorption technology, Proceedings of international seminar …, 2003
142003
Thermodynamic assessment of a gas turbine power plant integrated with an adsorption refrigeration system
VR Panyam, ND Banker
Applied Thermal Engineering 117, 577-583, 2017
122017
Development of an activated carbon+ HFC134a adsorption refrigeration system
ND Banker
Indian Institute of Science, Bangalore, 2006
92006
Energy efficiency improvement of a refrigerator integrated with phase change material-based condenser
D Dandotiya, ND Banker
Journal of Energy Resources Technology 143 (8), 082105, 2021
72021
Evaluation of minimum, maximum and optimum source temperature for solar-powered adsorption refrigeration system
ND Banker, D Dandotiya, SVR Morthala, M Gaddam, S Kakileti
Arabian Journal for Science and Engineering 45, 9735-9745, 2020
62020
Effect of aspect ratio of heliostats on the optical efficiency of solar tower power plant–an experimental analysis
R Singhai, ND Banker, H Sinhmar, S Jain, S Kulshresth
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 1-18, 2020
62020
Comparative analysis of single and two stage activated carbon+ HFC134a refrigeration systems
ND Banker, M Prasad, K Srinivasan
Carbon, 2004
62004
Analysis and development of an activated carbon-HFC 134a adsorption refrigeration system
ND Banker
ME Project Report. Bangalore: Department of Mechanical Engineering, Indian …, 2003
62003
Performance investigation of a vapor adsorption refrigeration system based on adsorption/desorption time and heat transfer
M Pendurthi, VB Pelluru, A Chilakapati, D Dandotiya, ND Banker
Journal of Thermal Science and Engineering Applications 13 (5), 051024, 2021
52021
Theoretical investigation of aspect ratio of heliostat to minimize capital cost of solar tower plant
R Singhai, N Banker, Harender
Int. J. Appl. Eng. Res. 13 (18), 13652-13659, 2018
52018
Effect of aspect ratio of heliostat on cost of energy from solar power tower plants
R Singhai, H Sinhmar, ND Banker
Arabian Journal for Science and engineering 45 (2), 877-890, 2020
42020
Performance comparison of a vapor-adsorption cycle-based gas turbine inlet air cooling system for different refrigerants
VR Panyam, VS Kolla, L Palawat, A Sahu, ND Banker
International Journal of Air-Conditioning and Refrigeration 26 (01), 1850002, 2018
42018
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