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"A Formula Handbook of Ocean Energy" serves as an indispensable guide for absolute beginners, offering a comprehensive exploration of the dynamic field of ocean energy. From the principles of salinity gradient power to market trends and future prospects, this book presents a rhythmic blend of simplicity and mathematical insight, making complex concepts accessible to readers at all levels of expertise. Through detailed explanations and practical examples, readers will embark on a journey to understand the various forms of ocean energy, including tidal energy, wave energy, ocean thermal energy conversion, and seabed energy. With dedication and precision, this handbook equips readers with the knowledge and tools necessary to navigate the evolving energy landscape, encouraging them to embrace innovation and sustainability in harnessing the vast potential of our oceans.
"Ocean Energy: A Formula Handbook" is a comprehensive reference guide that distills the complexities of ocean energy into clear and concise formulas. Covering key concepts such as tidal power, wave energy, ocean thermal energy conversion (OTEC), and offshore wind, this handbook provides quick access to essential equations and principles needed for understanding and harnessing ocean energy resources. Whether you're a student, researcher, or professional in renewable energy or marine engineering, this book serves as a valuable resource for mastering the fundamental aspects of ocean energy and its practical applications.
"Ocean Energy: A Formula Handbook" is a comprehensive guide that delves into the intricacies of harnessing energy from the vast and dynamic oceans. This handbook offers a systematic exploration of various ocean energy sources, including tidal and wave energy, ocean thermal technologies, and seabed resources. Designed for researchers, engineers, and enthusiasts, the book presents a wealth of theoretical foundations, practical formulas, and real-world applications, making it a valuable resource for those seeking to understand, design, and contribute to the burgeoning field of ocean energy. From fundamental principles to advanced technologies, the handbook is structured to cater to readers at different levels of expertise, ensuring accessibility and applicability across diverse disciplines. With a focus on sustainability and renewable resources, this handbook provides a holistic perspective on the evolving landscape of ocean energy, making it an indispensable reference for anyone passionate about the future of clean and efficient energy solutions.
This book is open access under a CC BY-NC 2.5 license. This book offers a concise, practice-oriented reference-guide to the field of ocean wave energy. The ten chapters highlight the key rules of thumb, address all the main technical engineering aspects and describe in detail all the key aspects to be considered in the techno-economic assessment of wave energy converters. Written in an easy-to-understand style, the book answers questions relevant to readers of different backgrounds, from developers, private and public investors, to students and researchers. It is thereby a valuable resource for both newcomers and experienced practitioners in the wave energy sector.
This handbook is the definitive reference for the interdisciplinary field that is ocean engineering. It integrates the coverage of fundamental and applied material and encompasses a diverse spectrum of systems, concepts and operations in the maritime environment, as well as providing a comprehensive update on contemporary, leading-edge ocean technologies. Coverage includes an overview on the fundamentals of ocean science, ocean signals and instrumentation, coastal structures, developments in ocean energy technologies and ocean vehicles and automation. It aims at practitioners in a range of offshore industries and naval establishments as well as academic researchers and graduate students in ocean, coastal, offshore and marine engineering and naval architecture. The Springer Handbook of Ocean Engineering is organized in five parts: Part A: Fundamentals, Part B: Autonomous Ocean Vehicles, Subsystems and Control, Part C: Coastal Design, Part D: Offshore Technologies, Part E: Energy Conversion
Revised and significantly expanded, the fifth edition of this classic work offers both new and substantially updated information. As the definitive reference on fire protection engineering, this book provides thorough treatment of the current best practices in fire protection engineering and performance-based fire safety. Over 130 eminent fire engineers and researchers contributed chapters to the book, representing universities and professional organizations around the world. It remains the indispensible source for reliable coverage of fire safety engineering fundamentals, fire dynamics, hazard calculations, fire risk analysis, modeling and more. With seventeen new chapters and over 1,800 figures, the this new edition contains: Step-by-step equations that explain engineering calculations Comprehensive revision of the coverage of human behavior in fire, including several new chapters on egress system design, occupant evacuation scenarios, combustion toxicity and data for human behavior analysis Revised fundamental chapters for a stronger sense of context Added chapters on fire protection system selection and design, including selection of fire safety systems, system activation and controls and CO2 extinguishing systems Recent advances in fire resistance design Addition of new chapters on industrial fire protection, including vapor clouds, effects of thermal radiation on people, BLEVEs, dust explosions and gas and vapor explosions New chapters on fire load density, curtain walls, wildland fires and vehicle tunnels Essential reference appendices on conversion factors, thermophysical property data, fuel properties and combustion data, configuration factors and piping properties “Three-volume set; not available separately”