Suman Basu, Ph.D.
Affiliations: | 2008 | Pennsylvania State University, State College, PA, United States |
Area:
Mechanical EngineeringGoogle:
"Suman Basu"Parents
Sign in to add mentorChao-Yang Wang | grad student | 2008 | Penn State | |
(Channel two-phase flow and phase change in polymer electrolyte fuel cells.) |
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Publications
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Verma MKS, Basu S, Patil RS, et al. (2020) On-Board State Estimation in Electrical Vehicles: Achieving Accuracy and Computational Efficiency Through an Electrochemical Model Ieee Transactions On Vehicular Technology. 69: 2563-2575 |
Sharma AK, Basu S, Hariharan KS, et al. (2019) A Closed Form Reduced Order Electrochemical Model for Lithium-Ion Cells Journal of the Electrochemical Society. 166 |
Basu S, Hariharan KS, Kolake SM, et al. (2016) A Semi-Empirical Capacity Fade Model for Lithium Ion Cells with Nickel Based Composite Cathode Journal of the Electrochemical Society. 163 |
Ganesan N, Basu S, Hariharan KS, et al. (2016) Physics based modeling of a series parallel battery pack for asymmetry analysis, predictive control and life extension Journal of Power Sources. 322: 57-67 |
Tagade P, Hariharan KS, Basu S, et al. (2016) Bayesian calibration for electrochemical thermal model of lithium-ion cells Journal of Power Sources. 320: 296-309 |
Basu S, Hariharan KS, Kolake SM, et al. (2016) Coupled electrochemical thermal modelling of a novel Li-ion battery pack thermal management system Applied Energy. 181: 1-13 |
Gambhire P, Ganesan N, Basu S, et al. (2015) A reduced order electrochemical thermal model for lithium ion cells Journal of Power Sources. 290: 87-101 |
Basu S, Patil RS, Ramachandran S, et al. (2015) Non-isothermal electrochemical model for lithium-ion cells with composite cathodes Journal of Power Sources. 283: 132-150 |
Hosur SM, Ramesha DK, Basu S. (2014) TRANSIENT SIMULATION OF FLOW PAST SMOOTH CIRCULAR CYLINDER AT VERY HIGH REYNOLDS NUMBER USING OpenFOAM Applied Mechanics and Materials. 1972-1977 |
Basu S. (2011) A generalized multiphase mixture (M2) model for PEFC flow field design International Journal of Hydrogen Energy. 36: 9855-9863 |