Department of Chemical Engineering

sjayanti

Dr. Sreenivas Jayanti


 

Professor

NAC 444

sjayanti@iitm.ac.in

+91 44 22574168


Research Areas


Fuel cells, combustion, energy systems


Publication

152 entries « 2 of 22 »

2022

Kumar, A; Jayanti, S: An energy-mix model for round-the-clock power supply in a decarbonized electricity generation scenario: case study of South India. Clean Technologies and Environmental Policy, 24 (10), pp. 3345-3364, 2022, ISSN: 1618954X. (Type: Journal Article | Links | BibTeX)
Rao, P; Gundlapalli, R; Jayanti, S: Assessment of hydrodynamic performance of vanadium redox flow batteries at low temperatures. Journal of Energy Storage, 55 , 2022, ISSN: 2352152X. (Type: Journal Article | Links | BibTeX)

2021

Kumar, A; Jayanti, S: A land-use-constrained, generation–transmission model for electricity generation through solar photovoltaic technology: a case study of south India. Clean Technologies and Environmental Policy, 23 (9), pp. 2757-2774, 2021, ISSN: 1618954X. (Type: Journal Article | Links | BibTeX)
Parmeshwarappa, P; Gundlapalli, R; Jayanti, S: Power and energy rating considerations in integration of flow battery with solar PV and residential load. Batteries, 7 (3), 2021, ISSN: 23130105. (Type: Journal Article | Links | BibTeX)
Gundlapalli, R; Jayanti, S: Comparative study of kilowatt-scale vanadium redox flow battery stacks designed with serpentine flow fields and split manifolds. Batteries, 7 (2), 2021, ISSN: 23130105. (Type: Journal Article | Links | BibTeX)
Gundlapalli, R; Jayanti, S: Dataset on performance of large-scale vanadium redox flow batteries with serpentine flow fields. Data in Brief, 35 , 2021, ISSN: 23523409. (Type: Journal Article | Links | BibTeX)
Gundlapalli, R; Jayanti, S: Effective splitting of serpentine flow field for applications in large-scale flow batteries. Journal of Power Sources, 487 , 2021, ISSN: 03787753. (Type: Journal Article | Links | BibTeX)
152 entries « 2 of 22 »