Specializing in Alternative Fuels, Porous Media Combustion, and AI applications, Mr. Dash has over 11 years of teaching experience. His research interests bridge the gap between traditional mechanical engineering and cutting-edge technologies, offering students exposure to emerging trends.
PhD
Thermal engineering
Basic mechanical engineering, engineering thermodynamics, fluid mechanics, basic manufacturing process, heat transfer
1. 4 journal paper (SCI and SCOPUS) and 6 papers are presented in International Conferences (scopus)
1. Lean Premixed Combustion of Raw Biogas Interchangeability in a Porous Radiant Burner Operated in the Submerged Mode
2. Combustion of Raw Biogas/Hot Air in a Porous Radiant Burner and Performance Prediction Using a Machine Learning Algorithm
3. Experimental Study on the Performance of Biohythane Combustion in a Porous Radiant Burner Operated on Submerged Mode
4. Development of self aspirated porous radiant burner operating on biogas (Accepted)
1. Analysis of combustion stability and radiation efficiency on porous radiant burners: a mini-review
2. Experimental study on the effect of material in the combustion zone on the performance of an LPG fuelled porous radiant burner
3. Performance Characterization of Domestic Liquefied Petroleum Gas Cookstove
4. A review of the effects of burner configuration and operating parameters on the performance of porous radiant burner
5. Experimental Studies on Preventing Cavitation in a Centrifugal Pump Acting as Turbine for Microhydropower
6. Experimental and Performance Prediction of Porous Radiant Burner for Biohythane using Machine Learning Algorithims (Accepted)