DK
Debabrata Karmakar
Also known as: D. Karmakar
National Institute of Technology Karnataka, Indian Maritime University - Visakhapatnam Campus, Indian Institute of Technology Kharagpur, Kendriya Vidyalaya, Dum Dum
About
Dr. Debabrata Karmakar | Email: [email protected]
Associate Professor | Ph: +91-824-2473319 (O) | +91-9449063749 (P)
Department of Water Resources and Ocean Engineering | Fax: +91-824-2474039
National Institute of Technology Karnataka, Surathkal
P.O: Srinivasnagar, Surathkal, Mangalore - 575025, Karnataka, India
Webpage: http://appmech.nitk.ac.in/professor/debabrata-karmakar
Employment
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National Institute of Technology Karnataka Associate Professor2023 - Present
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National Institute of Technology Karnataka Assistant Professor2015 - 2023
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Indian Maritime University - Visakhapatnam Campus Assistant Professor2013 - 2013
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Universidade de Lisboa Instituto Superior Técnico Researcher2010 - 2015
Education
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Indian Institute of Technology Kharagpur PhD2004 - 2009
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Kendriya Vidyalaya, Dum Dum AISSE1996 - 1997
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Kendriya Vidyalaya, Dum Dum AISSCE1994 - 1995
Projects & Funding
Projects & funding information is unavailable.
Publications (101)
- Hydrodynamic performance of hybrid floating breakwater integrated with oscillating water column Save
- Probabilistic assessment of a floating semi-submersible wind turbine integrated with wave energy converters Save
- Dynamic analysis of frustum-TLP integrated with OWC wave energy converter Save
- Effect of articulations on the hydroelastic analysis of VLFS integrated with porous floating breakwater Save
- Effect of seawall on the hydrodynamic performance of pile-restrained H-shaped breakwater using multi-domain boundary element method Save
- Hydrodynamic performance of H-shaped floating breakwater in the presence of a partially reflecting seawall Save
- Hydrodynamic Analysis of Floating U-OWC Integrated with Π-Breakwater Under Irregular Wave Conditions Save
- Hydrodynamic Response of a Pile-Restrained H-Shaped Floating Breakwater to Irregular Waves Save
- Reduction of Wave Impact on VLFS in the Presence of Porous Box-Type Breakwater Save
- Wave Blocking Dynamics on the Hydroelastic Analysis of VLFS Save