Advanced Pressurized Water Reactor Study
Author | : U.S. Atomic Energy Commission. Division of Reactor Development |
Publisher | : |
Total Pages | : 510 |
Release | : 1959 |
ISBN-10 | : UOM:39015095056662 |
ISBN-13 | : |
Rating | : 4/5 (62 Downloads) |
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Author | : U.S. Atomic Energy Commission. Division of Reactor Development |
Publisher | : |
Total Pages | : 510 |
Release | : 1959 |
ISBN-10 | : UOM:39015095056662 |
ISBN-13 | : |
Rating | : 4/5 (62 Downloads) |
Author | : International Atomic Energy Agency |
Publisher | : |
Total Pages | : 144 |
Release | : 2002 |
ISBN-10 | : UOM:39015052302166 |
ISBN-13 | : |
Rating | : 4/5 (66 Downloads) |
Accident analysis is an important tool for confirming the adequacy and efficiency of provisions within the defence in depth concept for the safety of nuclear power plants (NPPs). The purpose of the report is to provide the necessary practical guidance for performing adequate accident analysis in the light of current good practice worldwide.
Author | : Raul B. Rebak |
Publisher | : Elsevier |
Total Pages | : 237 |
Release | : 2020-01-10 |
ISBN-10 | : 9780128175040 |
ISBN-13 | : 0128175044 |
Rating | : 4/5 (40 Downloads) |
Accident Tolerant Materials for Light Water Reactor Fuels provides a description of what an accident tolerant fuel is and the benefits and detriments of each concept. The book begins with an introduction to nuclear power as a renewable energy source and the current materials being utilized in light water reactors. It then moves on to discuss the recent advancements being made in accident tolerant fuels, reviewing the specific materials, their fabrication and implementation, environmental resistance, irradiation behavior, and licensing requirements. The book concludes with a look to the future of new power generation technologies. It is written for scientists and engineers working in the nuclear power industry and is the first comprehensive work on this topic. - Introduces the fundamental description of accident tolerant fuel, including fabrication and implementation - Describes both the benefits and detriments of the various Accident Tolerant Fuel concepts - Includes information on the process of materials selection with a discussion of how and why specific materials were chosen, as well as why others failed
Author | : Thomas W. Kerlin |
Publisher | : Academic Press |
Total Pages | : 404 |
Release | : 2019-10-05 |
ISBN-10 | : 9780128152621 |
ISBN-13 | : 0128152621 |
Rating | : 4/5 (21 Downloads) |
Dynamics and Control of Nuclear Reactors presents the latest knowledge and research in reactor dynamics, control and instrumentation; important factors in ensuring the safe and economic operation of nuclear power plants. This book provides current and future engineers with a single resource containing all relevant information, including detailed treatments on the modeling, simulation, operational features and dynamic characteristics of pressurized light-water reactors, boiling light-water reactors, pressurized heavy-water reactors and molten-salt reactors. It also provides pertinent, but less detailed information on small modular reactors, sodium fast reactors, and gas-cooled reactors. - Provides case studies and examples to demonstrate learning through problem solving, including an analysis of accidents at Three Mile Island, Chernobyl and Fukushima Daiichi - Includes MATLAB codes to enable the reader to apply the knowledge gained to their own projects and research - Features examples and problems that illustrate the principles of dynamic analysis as well as the mathematical tools necessary to understand and apply the analysis Publishers Note: Table 3.1 has been revised and will be included in future printings of the book with the following data: Group Decay Constant, li (sec-1) Delayed Neutron Fraction (bi) 1 0.0124 0.000221 2 0.0305 0.001467 3 0.111 0.001313 4 0.301 0.002647 5 1.14 0.000771 6 3.01 0.000281 Total delayed neutron fraction: 0.0067
Author | : Yoshiaki Oka |
Publisher | : Springer Science & Business Media |
Total Pages | : 316 |
Release | : 2013-03-01 |
ISBN-10 | : 9784431541950 |
ISBN-13 | : 4431541950 |
Rating | : 4/5 (50 Downloads) |
Understanding time-dependent behaviors of nuclear reactors and the methods of their control is essential to the operation and safety of nuclear power plants. This book provides graduate students, researchers, and engineers in nuclear engineering comprehensive information on both the fundamental theory of nuclear reactor kinetics and control and the state-of-the-art practice in actual plants, as well as the idea of how to bridge the two. The first part focuses on understanding fundamental nuclear kinetics. It introduces delayed neutrons, fission chain reactions, point kinetics theory, reactivity feedbacks, and related measurement techniques. The second part helps readers to grasp the theories and practice of nuclear power plant control. It introduces control theory, nuclear reactor stability, and the operation and control of existing nuclear power plants such as a typical pressurized water reactor, a typical boiling water reactor, the prototype fast breeder reactor Monju, and the high-temperature gas-cooled test reactor (HTTR). Wherever possible, the design and operation data for these plants are provided.
Author | : Yoshiaki Oka |
Publisher | : Springer Science & Business Media |
Total Pages | : 664 |
Release | : 2010-07-01 |
ISBN-10 | : 9781441960344 |
ISBN-13 | : 1441960341 |
Rating | : 4/5 (44 Downloads) |
Super Light Water Reactors and Super Fast Reactors provides an overview of the design and analysis of nuclear power reactors. Readers will gain the understanding of the conceptual design elements and specific analysis methods of supercritical-pressure light water cooled reactors. Nuclear fuel, reactor core, plant control, plant stand-up and stability are among the topics discussed, in addition to safety system and safety analysis parameters. Providing the fundamentals of reactor design criteria and analysis, this volume is a useful reference to engineers, industry professionals, and graduate students involved with nuclear engineering and energy technology.
Author | : Yoshiaki Oka |
Publisher | : Springer |
Total Pages | : 337 |
Release | : 2014-06-11 |
ISBN-10 | : 9784431548980 |
ISBN-13 | : 443154898X |
Rating | : 4/5 (80 Downloads) |
This book focuses on core design and methods for design and analysis. It is based on advances made in nuclear power utilization and computational methods over the past 40 years, covering core design of boiling water reactors and pressurized water reactors, as well as fast reactors and high-temperature gas-cooled reactors. The objectives of this book are to help graduate and advanced undergraduate students to understand core design and analysis, and to serve as a background reference for engineers actively working in light water reactors. Methodologies for core design and analysis, together with physical descriptions, are emphasized. The book also covers coupled thermal hydraulic core calculations, plant dynamics, and safety analysis, allowing readers to understand core design in relation to plant control and safety.
Author | : Manaswita Bose |
Publisher | : Springer Nature |
Total Pages | : 1639 |
Release | : 2020-10-17 |
ISBN-10 | : 9789811559556 |
ISBN-13 | : 9811559554 |
Rating | : 4/5 (56 Downloads) |
This book presents selected papers from the 7th International Conference on Advances in Energy Research (ICAER 2019), providing a comprehensive coverage encompassing all fields and aspects of energy in terms of generation, storage, and distribution. Themes such as optimization of energy systems, energy efficiency, economics, management, and policy, and the interlinkages between energy and environment are included. The contents of this book will be of use to researchers and policy makers alike.
Author | : Ibrahim Dincer |
Publisher | : Academic Press |
Total Pages | : 657 |
Release | : 2014-07-15 |
ISBN-10 | : 9780123838612 |
ISBN-13 | : 0123838614 |
Rating | : 4/5 (12 Downloads) |
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
Author | : International Atomic Energy Agency |
Publisher | : |
Total Pages | : 0 |
Release | : 2012 |
ISBN-10 | : 920121510X |
ISBN-13 | : 9789201215109 |
Rating | : 4/5 (0X Downloads) |
On the basis of the principles included in the Fundamental Safety Principles, IAEA Safety Standards Series No. SF-1, this Safety Requirements publication establishes requirements applicable to the design of nuclear power plants. It covers the design phase and provides input for the safe operation of the power plant. It elaborates on the safety objective, safety principles and concepts that provide the basis for deriving the safety requirements that must be met for the design of a nuclear power plant. Contents: 1. Introduction; 2. Applying the safety principles and concepts; 3. Management of safety in design; 4. Principal technical requirements; 5. General plant design; 6. Design of specific plant systems.