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Dr Debabrata Karmakar

vidwan id: 54530
Male

Assistant Professor, Water Resources and Ocean Engineering
National Institute of Technology Karnataka

Expertise

  • Ocean Engineering

Publications

Total Articles 124
Books 0
Proceedings 0

Publications

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Scopus

Citations 1511
h-index 23

CrossRef

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Citations 459
h-index 12
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Bio

Marine Hydrodynamics, Coastal Engineering, Offshore Wind Energy, Wave Energy, Fluid Structure Interaction, Hydroelasticity.

Personal Details

  • Male
  • Assistant Professor , National Institute of Technology Karnataka
  • P. O. Srinivasnagar, Mangalore
Ph.D.
Other Institute 2009
Assistant Professor May 2015 – Present
National Institute of Technology Karnataka | Water Resources and Ocean Engineering

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Organisations (261+)

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Co-Authors (7)

Karthikeyan

Dr Karthikeyan A.

National Institute of Technology Karnataka

Manu

Dr Manu .

National Institute of Technology Karnataka

Praveen

Dr Praveen K M

Central Water and Power Research Station

R Panner

Prof R Panner Selvam

Indian Institute of Technology Madras

Trilochan

Dr Trilochan Sahoo

Indian Institute of Technology Kharagpur

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Dr Vijay K G

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Dr Yashwant Kashyap

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Scholarly Work

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Scholarly Publications

Wave Attenuation due to Stratified Porous Structure with Stepped Seabed

Open Access
Article

Dynamic performance of Torus wave energy converter combined with offshore wind turbine semi-submersible platform

Open Access
Book Chapter
Authors: Sebastian B.;Karmakar D.;Guedes Soares C.

Performance analysis of freely heaving U-OWC integrated with Π-shaped breakwater using Boundary Element Method

Open Access
Book Chapter
Authors: Muduli R.;Karmakar D.;Guedes Soares C.

Hydrodynamic Performance of H-shaped Pile-restrained Floating Breakwater Integrated with Horizontal Plates

Open Access
Article

Hydrodynamic response analysis of a hybrid TLP and heaving-buoy wave energy converter with PTO damping

Open Access
Article

Wave attenuation due to stratified porous structure in the presence of stepped seabed

Open Access
Article

Dynamic analysis of frustum TLP-type wind turbine multi-purpose floating platform

Open Access
Article

Hydrodynamic analysis of an H-shaped pile-restrained floating breakwater combined with a pair of vertical barriers

Open Access
Article