CP
Chandra Shekhar Pant
Indian Institute of Technology Roorkee, Lund University, Indian Institute of Technology Bombay, Indian Institute of Technology Guwahati, Technion – Israel Institute of Technology
Employment
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Indian Institute of Technology Roorkee Assistant Professor2023 - Present
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Lund University Post-Doctoral researcher2022 - 2023
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Technion – Israel Institute of Technology Post-Doctoral Student2019 - 2022
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Sanjivani Rural Education Society's College of Engineering Associate Professor2017 - 2019
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Uttarakhand Technical University THDC Institute of Hydropower Engineering and Technology Assistant Professor2011 - 2011
Education
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Indian Institute of Technology Bombay PhD2011 - 2018
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Indian Institute of Technology Guwahati M.Tech2009 - 2011
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Bipin Tripathi Kumaon Institute of Technology B.E.2005 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (25)
- Impact of hydro power site parameters on the Pelton injector using computational analysis Save
- A modified stratiform cloud microphysics parameterization: evaluation using the Community Atmosphere Model version 6 single-column model Save
- Statistically characterized and experimental validation based guidelines for the use of computational fluid dynamics for the prediction of performance in Francis turbines Save
- A modified stratiform cloud microphysics parameterization: evaluation using the Community Atmosphere Model version 6 single-column model Save
- Numerical analysis of stress distribution in a Pelton bucket under varying operating parameters Save
- Selection criteria for hydro kinetic turbines and implications Save
- Experimentally validated machine learning surrogates for rapid power coefficient prediction of Darrieus hydrokinetic turbines under canal and river flow conditions Save
- Characterization of mixing in turbulent jet with off-source heating Save
- Field-based characterization and computational assessment of sediment erosion in Pelton turbine injectors at a Himalayan hydropower site Save
- Efficient flow reconstruction between dual tidal turbines: Large eddy simulation and reduced order modeling approach Save