Παρακολούθηση
Venkata Suresh Patnaikuni
Venkata Suresh Patnaikuni
Professor, Dept. of Chemical Engineering, NIT Warangal
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα nitw.ac.in
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An improved serpentine flow field with enhanced cross-flow for fuel cell applications
PV Suresh, S Jayanti, AP Deshpande, P Haridoss
International journal of hydrogen energy 36 (10), 6067-6072, 2011
802011
4-E analyses of chemical looping combustion based subcritical, supercritical and ultra-supercritical coal-fired power plants
GD Surywanshi, BP Basant Kumar, P Venkata Suresh, V Ramsagar, ...
Energy Conversion and Management 200, 112050, 2019
542019
Effect of air flow on liquid water transport through a hydrophobic gas diffusion layer of a polymer electrolyte membrane fuel cell
PV Suresh, S Jayanti
International journal of hydrogen energy 35 (13), 6872-6886, 2010
482010
Chemical looping combustion integrated Organic Rankine Cycled biomass-fired power plant–Energy and exergy analyses
SS Sikarwar, GD Surywanshi, VS Patnaikuni, M Kakunuri, R Vooradi
Renewable Energy 155, 931-949, 2020
452020
Analysis of integrated gasification combined cycle power plant incorporating chemical looping combustion for environment-friendly utilization of Indian coal
S Haneef, A Yerrayya, P Venkata Suresh, V Ramsagar, A Sarath Babu
Energy Conversion and Management 151, 414-425, 2017
422017
A hydrodynamic network model for interdigitated flow fields
KBS Prasad, PV Suresh, S Jayanti
International journal of hydrogen energy 34 (19), 8289-8301, 2009
412009
CFD simulation of fuel reactor for chemical looping combustion of Indian coal
M Kavitha G, P Venkata Suresh
Fuel 203, 90-101, 2017
38*2017
Performance analysis of a double calcium looping‐integrated biomass‐fired power plant: Exploring a carbon reduction opportunity
BBK Pillai, GD Surywanshi, VS Patnaikuni, SB Anne, R Vooradi
International Journal of Energy Research 43 (10), 5301-5318, 2019
322019
Performance evaluation of Enhanced Cross flow Split Serpentine Flow Field design for higher active area PEM fuel cells
S Abdulla, VS Patnaikuni
International Journal of Hydrogen Energy 45 (48), 25970-25984, 2020
292020
4-E and life cycle analyses of a supercritical coal direct chemical looping combustion power plant with hydrogen and power co-generation
GD Surywanshi, VS Patnaikuni, R Vooradi, SB Anne
Energy 217, 119418, 2021
282021
Detailed analysis of polymer electrolyte membrane fuel cell with enhanced cross‐flow split serpentine flow field design
S Abdulla, VS Patnaikuni
International Journal of Energy Research 43 (7), 2806-2820, 2019
232019
Peclet number analysis of cross-flow in porous gas diffusion layer of polymer electrolyte membrane fuel cell (PEMFC)
PV Suresh, S Jayanti
Environmental Science and Pollution Research 23 (20), 20120-20130, 2016
222016
Performance tests on metal hydride based hydrogen storage devices
BS Sekhar, P Suresh, P Muthukumar
international journal of hydrogen energy 38 (22), 9570-9577, 2013
192013
Formic acid synthesis – a case study of CO2 utilization from coal direct chemical looping combustion power plant
GD Surywanshi, BBK Pillai, VS Patnaikuni, R Vooradi, SB Anne
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 44 …, 2022
182022
CO2 capture and utilization from supercritical coal direct chemical looping combustion power plant–Comprehensive analysis of different case studies
GD Surywanshi, VS Patnaikuni, R Vooradi, M Kakunuri
Applied Energy 304, 117915, 2021
182021
Enhanced cross-flow split serpentine flow field design for square cross-sectional polymer electrolyte membrane fuel cell
S Abdulla, VS Patnaikuni
Electrochimica Acta 391, 138884, 2021
182021
Flexible polyaniline/MXene/CNF composite nanofibrous mats as high‐performance supercapacitor electrodes
K Donthula, UR Malothu, R Araga, R Vooradi, VS Patnaikuni, MV Reddy, ...
Polymer Composites 44 (11), 7571-7584, 2023
142023
Energy and exergy analyses of chemical looping combustion-based 660 MWe supercritical coal-fired power plant
GD Surywanshi, BP Basant Kumar, P Venkata Suresh, V Ramsagar, ...
International Journal of Exergy 31 (1), 14-33, 2020
112020
CFD Simulation of Flow Through the Reconstructed Microstructure of Fibrous Gas Diffusion Layer in a Polymer Electrolyte Membrane Fuel Cell
VS Patnaikuni, S Jayanti
Chemical Product and Process Modeling, 2017
112017
Step by step methodology of designing a liquid-solid circulating fluidized bed using computational fluid dynamic approach
RR Palkar, P Venkata Suresh, V Shilapuram
Chemical Engineering Research and Design 138, 260-279, 2018
102018
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