Sogut | Green Fuels For Green Shipping | Buch | 978-3-032-34411-3 | www.sack.de

Buch, Englisch, 404 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Green Energy and Technology

Sogut

Green Fuels For Green Shipping


Erscheinungsjahr 2026
ISBN: 978-3-032-34411-3
Verlag: Springer

Buch, Englisch, 404 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Green Energy and Technology

ISBN: 978-3-032-34411-3
Verlag: Springer


This book offers readers a comprehensive understanding of the most critical issues related to sustainable maritime practices, with a particular focus on energy management, green fuels, and decarbonization frameworks. One of the main advantages of this book is that it offers access to thorough and up-to-date technical insights into green technologies and their integration within shipping operations. It examines energy-efficient ship designs, propulsion technologies, and alternative fuels, including hydrogen and ammonia. Readers will gain technical knowledge about the practical implementation of sustainable energy solutions in the maritime sector, including the transition from conventional fossil fuels to more environmentally friendly options. Additionally, the book examines energy management systems in shipping, such as ISO 50001, and explains how they can optimize energy use, reduce consumption, and minimize emissions.

focuses on the latest technological advancements, informing readers about innovations that are shaping the future of the maritime industry, including smart shipping technologies, IoT-based monitoring systems, and advanced automation tools that enhance energy optimization and operational efficiency.

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Zielgruppe


Research


Autoren/Hrsg.


Weitere Infos & Material


Sustainability Priorities and Action Framework of the Green Fuel Transition in Shipping.- Analysis of Two Vertical Axis Wind Turbines Operating With Counter Airflow.- Sustainable Future With Waste Heat Recovery: An Energy and Exergy Assessment of the Waste Heat-based Trigeneration Plant.- Performance Evaluation of Electricity and Heat Energy Generation in Photovoltaic-thermal Systems.- Trends in Renewable Energy Management With a Bibliometric Approach.- Assessment of Energy and Environmental Performance Metrics of the Chemical Tankers Considering Fuel Preference.- Maximizing Energy Output of Counter-rotating Dual Rotor Wind Turbine With Torque Control.- Assessment of  Circular Indicators for Sustainable Shipping.- Computational Fluid Dynamics Analysis of Gas Turbines for Emission Reduction in the Green Transition.- Pyrolysis of Waste Tires by TG–MS: Kinetic, Thermodynamic, and Evolved Gas Analysis.- Aligning the Maritime Industry With SDGs: Decarbonization as a Pathway to Sustainable Growth.- Characterization of Demolition Wastes and Estimation of Their Carbon Dioxide Capture Potential.- Innovative Wind Propulsion Systems: Design, Operation, and Impact on Energy Efficiency in Merchant Shipping.- Sustainable Energy Storage.- Hydrogen Applications for the Maritime Industry.- Investigation of Renewable Methanol Use in the Maritime Industry.- Storage Strategies in the Hydrogen Economy.- Modeling Thermophysical and Thermodynamic Properties of Humid Air as a Real Gas by Using NIST (Lemmon) Dry Air Mixture EOS and IAPWS-95 Formulation for Steam.- Thermal Modeling of Autothermal, Steam, and Partial Oxidation (POX) Solid Oxide Fuel Cell Reformers (SOFCs).- Carbon Capture Modeling: Utilization in Shipyards.- Assessment of Pathway to Green Port-led Logistic Centers for Shipping.- Evaluation of an Oscillating Water Column Wave Energy Converter.- Performance Numerically at Various Chamber Wall Slopes.- Simulation-based Performance Assessment of Onboard Co2 Capture in Marine Diesel Engine Exhaust Systems.- ORC Waste Heat Recovery Using Low-GWP Working Fluids for Methanol-fueled Marine Engines.- Green Transition of Shipping: An Analysis of Former Studies on Decarbonization Efforts.


M. Ziya Sogut, Ph.D., is a Full Professor in the Maritime Faculty at Piri Reis University. He holds a Bachelor's degree from Marmara University (1988) and advanced degrees in Mechanical Engineering from Balikesir University, including a Master's (2005) and a Ph.D. (2009). Prof. Sogut has extensive expertise in energy systems, including exergy analysis, exergoeconomic optimization, heat recovery, renewable energy technologies, and environmental impact assessments. He is an internationally recognized Certified Building Energy Manager, a UNIDO International Energy Efficiency Expert for Industry, and serves as a reviewer for numerous scientific journals. His research and project management experience spans energy management, cooling technologies, and sustainable applications. With a strong academic background and a commitment to advancing energy efficiency, he has contributed significantly to both theoretical studies and practical applications in the field. 



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