Advanced Reactor Concepts (ARC)

Advanced Reactor Concepts (ARC)
Author: Ali Zamani Paydar
Publisher: Elsevier
Total Pages: 454
Release: 2023-07-20
Genre: Technology & Engineering
ISBN: 0443189900

Nuclear engineers advancing the energy transition are understanding more about the next generation of nuclear plants; however, it is still difficult to access all the critical types, concepts, and applications in one location. Advanced Reactor Concepts (ARC): A New Nuclear Power Plant Perspective Producing Energy gives engineers and nuclear engineering researchers the comprehensive tools to get up to date on the latest technology supporting generation IV nuclear plant systems. After providing a brief history of this area, alternative technology is discussed such as electromagnetic pumps, heat pipes as control devices, Nuclear Air-Brayton Combined Cycles integration, and instrumentation helping nuclear plants to provide dispatchable electricity to the grid and heat to industry. Packed with examples of all the types, benefits, and challenges involved, Advanced Reactor Concepts (ARC) delivers the go-to reference that engineers need to advance safe nuclear energy as a low-carbon option. - Describes theory and concepts on generation IV technology such as advanced reactor concepts (ARC) and electromagnetic pumps, and compares different types and sizes. - Sets out the energy transition with critical carbon-free technology that can supplement intermittent power sources such as wind and solar. - Explains alternative heat storage technology, including Nuclear Air-Brayton Combined Cycles. - Introduces advanced main instrumentation systems for in-core probes.

Sodium

Sodium
Author: Ron Legarski
Publisher: SolveForce
Total Pages: 786
Release: 2024-09-19
Genre: Science
ISBN:

"Sodium: From Discovery to Modern Energy Applications" is an in-depth exploration of one of the most versatile and vital elements in the periodic table—sodium. This book traces the journey of sodium from its discovery in the early 1800s to its pivotal role in modern industry and cutting-edge energy technologies, including its revolutionary use in Sodium-Cooled Small Modular Reactors (SMRs). Designed for readers interested in science, engineering, and energy innovation, this book delves into sodium's chemical properties, its interactions with other elements, and its applications across a wide range of fields. From industrial manufacturing and agriculture to its use in advanced nuclear reactors, sodium continues to prove itself as a critical player in both historical and modern contexts. Key topics covered include: The Discovery of Sodium: Explore the early scientific breakthroughs that led to the identification and isolation of sodium, setting the stage for its wide-ranging applications. Sodium in Industry and Chemistry: Understand the diverse uses of sodium in industries such as glass manufacturing, metal alloys, and organic chemistry. Sodium in Agriculture and Environmental Science: Learn about sodium’s role in soil chemistry, crop yield, and its impact on sustainable agricultural practices. Sodium as a Coolant in Nuclear Reactors: Dive into the innovative use of sodium in SMRs, where it acts as an efficient and safe coolant in next-generation nuclear power plants. This includes detailed discussions on its role in sodium-cooled fast reactors, advanced safety systems, and its contribution to carbon reduction and energy security. Environmental Impact and Sustainability: Examine the environmental challenges and sustainability measures associated with sodium production, use, and recycling, including its role in renewable energy systems and climate change mitigation. Written by Ron Legarski, a seasoned expert in telecommunications, technology infrastructure, and energy solutions, this book also integrates unique insights into how digital technologies, connectivity, and smart grids are essential in supporting sodium’s modern applications, especially in energy systems like SMRs. Whether you're a scientist, engineer, student, or simply curious about the evolving role of sodium in today’s world, "Sodium: From Discovery to Modern Energy Applications" offers a comprehensive and engaging look at an element that is driving both technological progress and sustainable energy solutions.

Handbook of Small Modular Nuclear Reactors

Handbook of Small Modular Nuclear Reactors
Author: Daniel T. Ingersoll
Publisher: Elsevier
Total Pages: 450
Release: 2014-09-22
Genre: Technology & Engineering
ISBN: 0857098535

Small modular reactors (SMRs) are an advanced, safe type of nuclear reactor technology that are suitable for small and medium sized applications including both power and heat generation. In particular, their use as individual units or in combination to scale-up capacity offer benefits in terms of siting, installation, operation, lifecycle and economics in comparison to the development of larger nuclear plant for centralised electricity power grids. Interest has increased in the research and development of SMRs for both developing countries as well as such additional cogeneration options as industrial/chemical process heat, desalination and district heating, and hydrogen production. This book reviews key issues in their development as well as international R&D in the field. - Gives an overview of small modular reactor technology - Reviews the design characteristics of integral pressurized water reactors and focuses on reactor core and fuel technologies, key reactor system components, instrumentation and control, human-system interfaces and safety - Considers the economics, financing, licensing, construction methods and hybrid energy systems of small modular reactors - Describes SMR development activities worldwide, and concludes with a discussion of how SMR deployment can contribute to the growth of developing countries

Advanced Power Generation Systems

Advanced Power Generation Systems
Author: Ibrahim Dincer
Publisher: Academic Press
Total Pages: 657
Release: 2014-07-15
Genre: Technology & Engineering
ISBN: 0123838614

Advanced Power Generation Systems examines the full range of advanced multiple output thermodynamic cycles that can enable more sustainable and efficient power production from traditional methods, as well as driving the significant gains available from renewable sources. These advanced cycles can harness the by-products of one power generation effort, such as electricity production, to simultaneously create additional energy outputs, such as heat or refrigeration. Gas turbine-based, and industrial waste heat recovery-based combined, cogeneration, and trigeneration cycles are considered in depth, along with Syngas combustion engines, hybrid SOFC/gas turbine engines, and other thermodynamically efficient and environmentally conscious generation technologies. The uses of solar power, biomass, hydrogen, and fuel cells in advanced power generation are considered, within both hybrid and dedicated systems. The detailed energy and exergy analysis of each type of system provided by globally recognized author Dr. Ibrahim Dincer will inform effective and efficient design choices, while emphasizing the pivotal role of new methodologies and models for performance assessment of existing systems. This unique resource gathers information from thermodynamics, fluid mechanics, heat transfer, and energy system design to provide a single-source guide to solving practical power engineering problems. - The only complete source of info on the whole array of multiple output thermodynamic cycles, covering all the design options for environmentally-conscious combined production of electric power, heat, and refrigeration - Offers crucial instruction on realizing more efficiency in traditional power generation systems, and on implementing renewable technologies, including solar, hydrogen, fuel cells, and biomass - Each cycle description clarified through schematic diagrams, and linked to sustainable development scenarios through detailed energy, exergy, and efficiency analyses - Case studies and examples demonstrate how novel systems and performance assessment methods function in practice

Modular Systems for Energy and Fuel Recovery and Conversion

Modular Systems for Energy and Fuel Recovery and Conversion
Author: Yatish T. Shah
Publisher: CRC Press
Total Pages: 612
Release: 2019-06-28
Genre: Technology & Engineering
ISBN: 1000011739

Modular Systems for Energy and Fuel Recovery and Conversion surveys the benefits of the modular approach in the front end of the energy industry. The book also outlines strategies for managing modular approaches for fossil, renewable, and nuclear energy resource recovery and conversion with the help of successful industrial examples. The book points out that while the modular approach is most applicable for distributed and small-scale energy systems, it is also often used for parts of large-scale centralized systems. With the help of successful industrial examples of modular approaches for energy and fuel recovery and conversion, the book points out the need for more balance between large-scale centralized systems and small-scale distributed systems to serve the energy needs of rural and isolated communities. Coal, oil, natural gas, hydrogen, biomass, waste, nuclear, geothermal solar, wind, and hydro energy are examined, showing that modular operations are very successfully used in all these components of the energy industry. Aimed at academic researchers and industry professionals, this book provides successful examples and analysis of the modular operation for energy and fuel recovery and conversion. It is also a reference for those who are engaged in the development of modular systems for energy and fuel recovery and conversion.