DB
Dhinesh Balasubramanian
Also known as: Dhinesh.B
SRM Institute of Science and Technology, Mepco Schlenk Engineering College, Madras Institute of Technology, Kongu Engineering College
Employment
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SRM Institute of Science and Technology Associate Professor2026 - Present
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Mepco Schlenk Engineering College Assistant Professor Senior2021 - 2026
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Mepco Schlenk Engineering College Assistant Professor2017 - 2021
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Madras Institute of Technology DST PURSE RESEARCH SCHOLAR2014 - 2017
Education
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Madras Institute of Technology Ph.D2014 - 2017
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Madras Institute of Technology M.E2012 - 2014
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Kongu Engineering College bachelor of engineering - Mechanical2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (168)
- Experimental investigation on droplet combustion and flame characteristics of Diesel–Ammonia–PODE blends doped with boron oxide nanoparticles Save
- Combustion dynamics and thermal suppression of aluminum powder fires using an expandable graphite–zinc borate formulation Save
- AI based optimization of injection pressure for hydrogen and spirogyra biodiesel dual fuel engine to enhance combustion performance and emission characteristics Save
- An evaluation of the performance characteristics of SCR utilizing a Fe2O3-SiO2/Al2O3 synthesized catalyst for effective diesel engine exhaust emission reduction Save
- Machine Learning-Enhanced Advanced Combustion Strategies for Diesel Engines: A Comprehensive Review Toward Sustainable Combustion Save
- Performance enhancement of electrochemical discharge micromachining of borosilicate glass using nitrogen gas assistance Save
- Sustainable and scalable double slope solar still: a comprehensive experimental assessment of energy, exergy, economic, environmental, sensitivity and distillate performance Save
- Exposure to the Role of Primary Breakup Parameters of an Effervescent Atomizer Using High‐Speed Flow Visualization Techniques Save
- Ammonia as a sustainable fuel: A cleaner pathway for decarbonizing internal combustion engines Save
- Biomass-derived porous carbon from banana leaves for efficient supercapacitor applications – An experimental analysis Save