Advances In Nuclear Power Process Heat Applications
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Advances in Nuclear Power Process Heat Applications
Author | : IAEA (Corporate Author) |
Publsiher | : Unknown |
Total Pages | : 0 |
Release | : 2012 |
Genre | : Gas cooled reactors |
ISBN | : OCLC:1027162862 |
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"Following an IAEA coordinated research project, this publication compiles the findings of research and development activities related to practical nuclear process heat applications. An overview of current progress on high temperature gas cooled reactors coupling schemes for different process heat applications, such as hydrogen production and desalination, is included. The associated safety aspects are also highlighted. The summary report documents the results and conclusions of the project."--Résumé de l'éditeur.
Advances in Nuclear Power Process Heat Applications
Author | : International Atomic Energy Agency |
Publsiher | : Unknown |
Total Pages | : 269 |
Release | : 2012 |
Genre | : Business & Economics |
ISBN | : 920130210X |
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"Following an IAEA coordinated research project, this publication compiles the findings of research and development activities related to practical nuclear process heat applications. An overview of current progress on high temperature gas cooled reactors coupling schemes for different process heat applications, such as hydrogen production and desalination, is included. The associated safety aspects are also highlighted. The summary report documents the results and conclusions of the project."--Provided by publisher.
Nuclear Heat Application
Author | : International Atomic Energy Agency |
Publsiher | : Unknown |
Total Pages | : 442 |
Release | : 1984 |
Genre | : Cogeneration of electric power and heat |
ISBN | : UCAL:B4338367 |
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Nuclear Energy for Hydrogen Generation through Intermediate Heat Exchangers
Author | : Bahman Zohuri |
Publsiher | : Springer |
Total Pages | : 403 |
Release | : 2016-07-15 |
Genre | : Technology & Engineering |
ISBN | : 9783319298382 |
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This book describes recent technological developments in next generation nuclear reactors that have created renewed interest in nuclear process heat for industrial applications. The author’s discussion mirrors the industry’s emerging focus on combined cycle Next Generation Nuclear Plants’ (NGNP) seemingly natural fit in producing electricity and process heat for hydrogen production. To utilize this process heat, engineers must uncover a thermal device that can transfer the thermal energy from the NGNP to the hydrogen plant in the most performance efficient and cost effective way possible. This book is written around that vital quest, and the author describes the usefulness of the Intermediate Heat Exchanger (IHX) as a possible solution. The option to transfer heat and thermal energy via a single-phase forced convection loop where fluid is mechanically pumped between the heat exchangers at the nuclear and hydrogen plants is presented, and challenges associated with this tactic are discussed. As a second option, heat pipes and thermosyphons, with their ability to transport very large quantities of heat over relatively long distance with small temperature losses, are also examined.
High Temperature Gas cooled Reactors
Author | : Tetsuaki Takeda,Yoshiyuki Inagaki |
Publsiher | : Academic Press |
Total Pages | : 478 |
Release | : 2021-02-24 |
Genre | : Business & Economics |
ISBN | : 9780128210321 |
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High-Temperature Gas Reactors is the fifth volume in the JSME Series on Thermal and Nuclear Power Generation. Series Editor Yasuo Koizumi and his Volume editors Tetsuaki Takeda and Yoshiyuki Inagaki present the latest research on High-Temperature Gas Reactor (HTGR) development and utilization, beginning with an analysis of the history of HTGRs. A detailed analysis of HTGR design features, including reactor core design, cooling tower design, pressure vessel design, I&C factors and safety design, provides readers with a solid understanding of how to develop efficient and safe HTGR within a nuclear power plant. The authors combine their knowledge to present a guide on the safety of HTGRs throughout the entire reactor system, drawing on their unique experience to pass on lessons learned and best practices to support professionals and researchers in their design and operation of these advanced reactor types. Case studies of critical testing carried out by the authors provide the reader with firsthand information on how to conduct tests safely and effectively and an understanding of which responses are required in unexpected incidents to achieve their research objectives. An analysis of technologies and systems in development and testing stages offer the reader a look to the future of HTGRs and help to direct and inform their further research in heat transfer, fluid-dynamics, fuel options and advanced reactor facility selection. This volume is of interest for nuclear and thermal energy engineers and researchers focusing on HTGRs, HTGR plant designers and operators, regulators, post graduate students of nuclear engineering, national labs, government officials and agencies in power and energy policy and regulations. Written by the leaders and pioneers in nuclear research at the Japanese Society of Mechanical Engineers and draws upon their combined wealth of knowledge and experience Includes real examples and case studies from Japan, the US and Europe to provide a deeper learning opportunity with practical benefits Considers the societal impact and sustainability concerns and goals throughout the discussion Includes safety factors and considerations, as well as unique results from performance testing of HTGR systems.
Advanced Smaller Modular Reactors
Author | : Bahman Zohuri,Patrick McDaniel |
Publsiher | : Springer |
Total Pages | : 220 |
Release | : 2019-08-10 |
Genre | : Technology & Engineering |
ISBN | : 9783030236823 |
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This book discusses advanced Small Modular Reactors (SMRs) as a way to provide safe, clean, and affordable nuclear power options. The advanced SMRs currently under development in the U.S. represent a variety of sizes, technology options and deployment scenarios. These advanced reactors, envisioned to vary in size from a couple megawatts up to hundreds of megawatts can be used for power generation, process heat, desalination, or other industrial uses. In-depth chapters describe how advanced SMRs offer multiple advantages, such as relatively small size, reduced capital investment, location flexibility, and provisions for incremental power additions. SMRs also offer distinct safeguards, security and nonproliferation advantages. The authors present a thorough examination of the technology and defend methods by which the new generation of nuclear power plants known as GEN-IV can safely be used as an efficient source of renewable energy. Provides a unique and innovative approach to the implementation of Small Modular Reactor as part of GEN-IV technology; Discusses how Small Modular Reactors (SMRs) can deliver a viable alternative to Nuclear Power Plants (NPPs); Presents an argument defending the need for nuclear power plant as a source of energy, its efficiency and cost effectiveness, as well as safety related issues.
Potential Applications of Nuclear Energy for Process and Space Heat in the United States
Author | : Paul Ludwig Geiringer,Morton J. Goodfriend |
Publsiher | : Unknown |
Total Pages | : 286 |
Release | : 1958 |
Genre | : Nuclear reactors |
ISBN | : MINN:31951D03913677W |
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A survey and analysis of the potential opportunity for the use of nuclear reactors to satisfy process and space heat requirements in the continental United States and Alaska has been completed. The greatest emphasis has been devoted to manufacturing industries that utilize large quantities of process heat.
Heat Pipe Applications in Fission Driven Nuclear Power Plants
Author | : Bahman Zohuri |
Publsiher | : Springer |
Total Pages | : 362 |
Release | : 2019-02-14 |
Genre | : Technology & Engineering |
ISBN | : 9783030058821 |
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This book presents a new and innovative approach for the use of heat pipes and their application in a number of industrial scenarios, including space and nuclear power plants. The book opens by describing the heat pipe and its concept, including sizing, composition and binding energies. It contains mathematical models of high and low temperature pipes along with extensive design and manufacturing models, characteristics and testing programs. A detailed design and safety analysis concludes the book, emphasizing the importance of heat pipe implementation within the main cooling system and within the core of the reactor, making this book a useful resource for students, engineers, and researchers.