Santosh Kumar Senapati
Also known as: Santosh Senapati
Indian Institute of Petroleum, Manipal Academy of Higher Education, National Institute of Technology Raipur, Indian Institute of Technology Kharagpur
About
I am Dr. Santosh Kumar Senapati, currently working as an Assistant Professor in the Mechanical Engineering Department of Indian Institute of Petroleum and Energy, Visakhapatnam, India. I have completed my Ph.D. in Mechanical Engineering from IIT Kharagpur. My area of interest includes CFD modeling of two-phase flow and heat transfer, CFD studies on natural, forced, and conjugate heat transfer, Heat sinks, nano fluids, solar-thermal Applications.
Always looking for an active and fruitful research collaboration.
Interested candidates who wish to join Ph.D. under me can write @
[email protected]
Employment
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Indian Institute of Petroleum Assistant Professor2023 - Present
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Manipal Academy of Higher Education Assistant Professor2022 - 2023
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Indian Institute of Technology Kharagpur Rersearch scholar2016 - 2021
Education
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National Institute of Technology Raipur M.Tech in Thermal Engineering2014 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Performance improvement of a heat sink with triangular slotted and interrupted fins: A Computational study Save
- Behavior of Gas–Solid Two-Phase Flow in a Backward Facing Step - Effect of Interparticle Collisions Save
- Cooling Characteristic of an Infrared Suppression Device With Single Perforated Funnel: A Computational Fluid Dynamics Approach Save
- Gas–solid flow in a diffuser: Effect of inter-particle and particle–wall collisions Save
- Pneumatic transport of heavy minerals in a horizontal pipe: An Eulerian-Eulerian approach Save
- Natural convection cooling of an infrared suppression device (IRS) with conical funnels- a computational approach Save
- Pressure recovery and acceleration length of gas-solid suspension in an abrupt expansion – An Eulerian-Eulerian approach Save
- CFD Investigation of Parameters Affecting Oil-Water Stratified Flow in a Channel Save
- Computation of pressure drop for dilute gas–solid suspension across thin and thick orifices Save
- CFD PREDICTION OF OIL-WATER TWO-PHASE STRATIFIED FLOW IN A HORIZONTAL CHANNEL: COUPLED LEVEL SET - VOF APPROACH Save