Karl Wygant – författare
1 727 kr
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Energy Transport Infrastructure for a Decarbonized Economy evaluates the transportation of fluids required in the decarbonized energy economy. The book will help researchers, design manufacturers, and those within government and academia to understand challenges and guide the design and development of systems, machinery, and infrastructure needed for a decarbonized energy economy. The book provides comprehensive insights on the implications of the energy transition for a critical aspect of commerce: the infrastructure central to energy transportation and the economy.This practical book highlights the unique systems central to the efficient transport of various forms of energy. After outlining the need for transporting energy, types of fluids used to transport energy, and various means of transportation, the book covers the importance of understanding the energy marketplace, global perspectives, and then moves into the transport of natural gas, hydrogen, and carbon dioxide. The work concludes with coverage of technology gaps, research and development, future trends, and solutions. Led by professionals with decades of experience and collecting insights from expert contributors, this book begins with the essentials of energy transport, provides detailed coverage of modes of transport, considers critical questions of energy supply and economics, and looks at long-term environmentally sensitive, sustainable options for the transport thereof.A powerful tool for the energy transition, Energy Transport Infrastructure for a Decarbonized Economy offers expert analysis on sustainable energy transport and its impact on our future.
Focuses on the energy transport required for a decarbonized energy economyAddresses challenges of pipeline transport of hydrogen and carbon dioxide as well as new infrastructure needsProvides details on the layout, specifications, and technical requirements of systems required for the transportation of hydrogen, natural gas, and carbon dioxide2 385 kr
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Surface Systems for Geothermal Energy Plants is a practical guide to designing and operating surface systems for modern geothermal power facilities. It details technical realities, offering whole-system design insights for engineers, operators, maintenance teams, and researchers involved in planning, operations and maintenance (O&M), and technology development.
Key topics include power cycles, energy storage, plant machinery, heat exchangers, condensers, water treatment, reinjection, reliability, equipment selection, transient operation, and emerging technologies. Practical attention is given to commercial considerations and to integrating geothermal plants into the electric grid.
This volume equips professionals with the knowledge to address real-world operational hurdles, unlocking geothermal energy’s potential as a competitive, dispatchable option. It serves as an essential reference for advancing the next generation of geothermal technology.
· Provides focused coverage of surface systems essential to modern geothermal plants
· Offers practical guidance on equipment selection, design, and operation
· Outlines system layout, specifications, and requirements for power, storage, and heat pump applications
· Presents an overview of geothermal plant integration within electric grids
· Delivers in-depth discussion of major mechanical and thermal systems, including technology limits, challenges, benefits, and selection criteria