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Gautam Setia
Gautam Setia
Thapar Institute of Engineering and Technology
thapar.edu의 이메일 확인됨
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Mechanical dry particle coating on cohesive pharmaceutical powders for improving flowability-A review
R Sharma, G Setia
Powder Technology 356, 458-479, 2019
722019
Erosive wear behaviour of HVOF-sprayed Ni-20Cr2O3 coating on pipeline materials
A Bansal, DK Goyal, P Singh, AK Singla, MK Gupta, N Bala, J Kolte, ...
International Journal of Refractory Metals and Hard Materials 92, 105332, 2020
472020
Modeling solids friction factor for fluidized dense-phase pneumatic transport of powders using two layer flow theory
G Setia, SS Mallick, R Pan, PW Wypych
Powder Technology 294, 80-92, 2016
382016
An experimental investigation on the effect of particle size into the flowability of fly ash
L Rohilla, V Garg, SS Mallick, G Setia
Powder Technology 330, 164-173, 2018
292018
Modeling minimum transport boundary for fluidized dense-phase pneumatic conveying systems
G Setia, SS Mallick, R Pan, PW Wypych
Powder Technology 277, 244-251, 2015
282015
Modelling fluidized dense-phase pneumatic conveying of fly ash
G Setia, SS Mallick
Powder Technology 270, 39-45, 2015
242015
On improving solid friction factor modeling for fluidized dense-phase pneumatic conveying systems
G Setia, SS Mallick, PW Wypych
Powder technology 257, 88-103, 2014
232014
Performance prediction of DMUs using integrated DEA-SVR approach with imprecise data: application on Indian banks
Nishtha, J Puri, G Setia
Soft Computing 27 (9), 5325-5355, 2023
102023
Validated scale-up procedure to predict blockage condition for fluidized dense-phase pneumatic conveying systems
G Setia, SS Mallick, PW Wypych, R Pan
Particuology 11 (6), 657-663, 2013
102013
Combined empirical mode decomposition and phase space reconstruction based psychologically stressed and non-stressed state classification from cardiac sound signals
A Cheema, M Singh, M Kumar, G Setia
Biomedical Signal Processing and Control 82, 104585, 2023
92023
An experimental investigation into modeling solids friction for fluidized dense-phase pneumatic transport of powders
G Setia, SS Mallick, R Pan, PW Wypych
Particuology 30, 83-91, 2017
92017
Modeling flow properties of fine dry powders using particle morphological properties and its effects on geometry of fly ash evacuation hoppers
SS Mallick, L Rohilla, V Garg, G Setia
Particulate Science and Technology 36 (4), 464-472, 2018
72018
Improving Scale Up Procedures for Solids Friction and Minimum Transport Boundary for Fluidized Dense Phase Pneumatic Conveying Systems
G Setia
Patiala, 2016
42016
An investigation into pressure fluctuations and improved modeling of solids friction for dense-phase pneumatic conveying of powders
A Mittal, G Setia, SS Mallick, PW Wypych
Particulate Science and Technology 33 (1), 67-75, 2015
42015
Modelling Minimum Transport Boundary for Dense-Phase Pneumatic Conveying of Fine Powders
G Setia
22012
Investigation into fluidization and de-aeration characteristics of powders and yield stress determination
K Tejaswi, SS Mallick, GG Setia
12016
Improved modelling of solids friction factor for fluidized dense-phase pneumatic transport of fine powders using two layer flow theory
G Setia, SS Mallick, PW Wypych
12th International Conference on Bulk Materials Storage, Handling and …, 2016
12016
Enhancing flowability of fine cohesive active pharmaceutical ingredients
R Sharma, G Setia
Drug Development and Industrial Pharmacy 47 (7), 1140-1152, 2021
2021
An Experimental Investigation on the Flow Properties of Bulk Solids
L Rohilla, SS Mallick, GG Setia
2016
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