Sayantan Mukherjee
Institute for Plasma Research, Kalinga Institute of Industrial Technology, KIIT University, West Bengal University of Technology, St.Mary's Technical Campus Kolkata
About
Currently, Working as Post Doctoral Fellow in IPR, India. Worked as Senior Research Fellow (SRF) in KIIT University under DAE-BRNS funded Project. Highly, motivated towards research, development, and innovation. Recognized as a hard working dedicated person. Highly effective written and verbal communicator with problem solving skills. Completed Ph.D. in Thermal Engineering from KIIT Deemed to be University, India. Completed M.Tech in Thermal engineering from KIITDeemed to be University, Bhubaneswar, India. Completed B.Tech in Mechanical Engineering from West Bengal University of Technology,Kolkata,India.
Areas of Interest:
Heat Transfer
Fluid Mechanics
Applied Thermodynamics
Thermo-physical properties and their measurement.
Employment
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Institute for Plasma Research Post Doctotal Fellow2021 - Present
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Kalinga Institute of Industrial Technology Senior Research Fellow2017 - 2021
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St.Mary's Technical Campus Kolkata Assistant Professor2014 - 2017
Education
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KIIT University M.Tech in Thermal Engineering2012 - 2014
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West Bengal University of Technology B.Tech2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (55)
- Optimizing nanofluids for efficient, sustainable, and cost-effective direct solar thermal conversion Save
- Thermal Mixing and Flow Characteristics Study in a T-Junction Save
- Enhancing heat transfer and minimizing entropy generation with mono and hybrid nanofluids: An experimental study Save
- Stability and sedimentation characteristics of water based Al2O3 and TiO2 nanofluids Save
- Achieving Enhanced and Sustainable Thermo-Economic Performance with Aqueous MgO-SiO2 Hybrid Nanofluid under Controlled Mixing Ratio: Experimental Results Save
- COMPARATIVE STUDIES ON HEAT TRANSFER PERFORMANCE OF NANOAEROSOLS FOR GAS-BASED COOLING SYSTEMS USING COMPUTATIONAL FLUID DYNAMICS APPROACH Save
- ENHANCING COOLING PERFORMANCE OF A HEAT EXCHANGER DRIVEN BY WATER/ALUMINA-SILICA HYBRID NANOFLUID: EXPERIMENTAL RESULTS Save
- Estimation of the thermal properties of MgO-SiO2/water hybrid nanofluid and development of novel thermo-economically viable model for heat transfer applications Save
- Experimental evaluation and artificial neural network modeling of heat transfer performance of aerosolized magnesium oxide nanoparticles flow through pipes Save
- Nanofluids: Critical issues, economics and sustainability perspectives Save