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This book presents select proceedings of the International Conference on Energy Conversion and Thermo-fluid Systems (i-CONECTS 2021). It covers the latest trends in the areas of energy conversion and thermofluid systems. The topics covered include enhanced heat transfer, multi-phase flows, power generation technologies, fluid-structure interaction, alternative fuels, micro- and-nano-scale heat and mass transfer, energy, emissions control technologies, etc. The book will be a valuable reference for the researchers and professionals interested in the energy conversion technologies and allied fields.
Presents emerging research trends in the field of energy conversion technologies Covers interdisciplinary research encompassing sustainable energy utilization Presents select proceedings of iCONECTS 2021
Auteur
Dr. Dilip Sharma is currently a professor in the Department of Mechanical Engineering, Malaviya National Institute of Technology Jaipur (MNIT Jaipur), Rajasthan. He received his masters' degree in Thermal Engineering from IIT Roorkee, and Ph.D. from MNIT Jaipur in 2005. He is a senior academician with over 30 years of experience, and has published over 150 research articles in the international journals and conferences. His research interests include internal combustion engines, alternate fuels and emissions, non-conventional sources of energy, hydrogen energy, engine combustion, cogeneration/trigeneration system, biofuels, combustion generated emission, solar thermal systems, etc. Dr. Somnath Roy is currently Associate Professor at Indian Institute of Technology Kharagpur. He received his masters' degree in Mechanical Engineering from IIT Kanpur in 2004, and Ph.D. in Mechanical Engineering from Louisiana State University, USA, in 2010. Before joining IIT Kharagpur, he worked as research associate and visiting faculty at Louisiana State University, USA, followed by Assistant Professor at Indian Institute of Technology Patna. His research interest is turbulence, arterial flows, moving boundary ow simulation, high-performance computing using cluster and GPGPUs. His primary area of work is computational uid dynamics (CFD). He has hosted two GIAN programs on computational methods and has also offered online course (NPTEL) on matrix solvers. His research group works on developing immersed boundary method (IBM)-based computationally ef cient algorithms to solve moving boundary problems and on utilizing these implementations to predict flow and heat transfer in engineering and biological applications.
Contenu
Energy Harvesting Through a Low-Cost Device Using Reverse Electrowetting on Dielectric (REWOD).- Biomass Steam Gasication for Bio-hydrogen Production via Co2 Capture.- Numerically Analysis of Wave Force on a Moving Thin Plate in the Surging Direction.- Impact of Soiling on the Performance of Monocrystalline-Si Photovoltaic Modules Under Different Climatic Conditions in East-Central India.- Design, Installation, and Performance of a Small Solar Thermal Power Station for Rural Energy Support