Non Baseload Operation in Nuclear Power Plants

Non Baseload Operation in Nuclear Power Plants
Author: International Atomic Energy Agency
Publsiher: Unknown
Total Pages: 0
Release: 2018
Genre: Technology & Engineering
ISBN: 9201108168

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Addresses all relevant aspects of flexible (non-baseload) operation of nuclear power plants (NPPs), specifically focusing on changing electrical output to match the electrical demand and to control the frequency of the electrical system. It provides collective guidance based on current knowledge and operational experience.

Decommissioning of Nuclear Power Plants and Research Reactors

Decommissioning of Nuclear Power Plants and Research Reactors
Author: International Atomic Energy Agency
Publsiher: Unknown
Total Pages: 58
Release: 1999
Genre: Business & Economics
ISBN: UOM:39015042860851

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This Safety Guide addresses the subject of how to meet the requirements for decommissioning of nuclear power plants and research reactors. It provides guidance to national authorities and operating organizations on the planning and safe management of the decommissioning of such installations.

Nuclear Power

Nuclear Power
Author: National Research Council,Division on Engineering and Physical Sciences,Commission on Engineering and Technical Systems,Energy Engineering Board,Committee on Future Nuclear Power Development
Publsiher: National Academies Press
Total Pages: 234
Release: 1992-02-01
Genre: Science
ISBN: 9780309043953

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The construction of nuclear power plants in the United States is stopping, as regulators, reactor manufacturers, and operators sort out a host of technical and institutional problems. This volume summarizes the status of nuclear power, analyzes the obstacles to resumption of construction of nuclear plants, and describes and evaluates the technological alternatives for safer, more economical reactors. Topics covered include: Institutional issues-including regulatory practices at the federal and state levels, the growing trends toward greater competition in the generation of electricity, and nuclear and nonnuclear generation options. Critical evaluation of advanced reactors-covering attributes such as cost, construction time, safety, development status, and fuel cycles. Finally, three alternative federal research and development programs are presented.

Electric Grid Reliability and Interface with Nuclear Power Plants

Electric Grid Reliability and Interface with Nuclear Power Plants
Author: International Atomic Energy Agency
Publsiher: IAEA Nuclear Energy
Total Pages: 78
Release: 2012
Genre: Science
ISBN: 9201261101

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This publication describes the characteristics of the electrical grid system that are required for the connection and successful operation of a nuclear power plant, as well as the characteristics of a nuclear power plant that are significant for the design and operation of the electrical grid system. It addresses the issues to be considered when a nuclear power plant is being planned and describes the information exchange necessary between the developer of a nuclear power plant and the organization responsible for the electrical grid. The particular issue of a large nuclear unit connected with a small system is also discussed. A new topic introduced in this publication is the need for cyber security of the grid system near the nuclear power plant. Several case studies of Member States experience in developing new nuclear units and about grid events during operation are included.

The Power of Change

The Power of Change
Author: National Academies of Sciences, Engineering, and Medicine,Division on Engineering and Physical Sciences,Policy and Global Affairs,Board on Energy and Environmental Systems,Board on Science, Technology, and Economic Policy,Committee on Determinants of Market Adoption of Advanced Energy Efficiency and Clean Energy Technologies
Publsiher: National Academies Press
Total Pages: 341
Release: 2016-09-30
Genre: Science
ISBN: 9780309371421

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Electricity, supplied reliably and affordably, is foundational to the U.S. economy and is utterly indispensable to modern society. However, emissions resulting from many forms of electricity generation create environmental risks that could have significant negative economic, security, and human health consequences. Large-scale installation of cleaner power generation has been generally hampered because greener technologies are more expensive than the technologies that currently produce most of our power. Rather than trade affordability and reliability for low emissions, is there a way to balance all three? The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies considers how to speed up innovations that would dramatically improve the performance and lower the cost of currently available technologies while also developing new advanced cleaner energy technologies. According to this report, there is an opportunity for the United States to continue to lead in the pursuit of increasingly clean, more efficient electricity through innovation in advanced technologies. The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies makes the case that America's advantagesâ€"world-class universities and national laboratories, a vibrant private sector, and innovative states, cities, and regions that are free to experiment with a variety of public policy approachesâ€"position the United States to create and lead a new clean energy revolution. This study focuses on five paths to accelerate the market adoption of increasing clean energy and efficiency technologies: (1) expanding the portfolio of cleaner energy technology options; (2) leveraging the advantages of energy efficiency; (3) facilitating the development of increasing clean technologies, including renewables, nuclear, and cleaner fossil; (4) improving the existing technologies, systems, and infrastructure; and (5) leveling the playing field for cleaner energy technologies. The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies is a call for leadership to transform the United States energy sector in order to both mitigate the risks of greenhouse gas and other pollutants and to spur future economic growth. This study's focus on science, technology, and economic policy makes it a valuable resource to guide support that produces innovation to meet energy challenges now and for the future.

Climate Change and Nuclear Power 2020

Climate Change and Nuclear Power 2020
Author: IAEA
Publsiher: International Atomic Energy Agency
Total Pages: 104
Release: 2020-09-14
Genre: Technology & Engineering
ISBN: 9789201152206

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This publication provides an update on the current status of nuclear power and prospects for its contribution, together with other low carbon energy sources, to ambitious mitigation strategies that will help the world limit global warming to 1.5°C in line with the 2015 Paris Agreement. Since 2000, the IAEA has issued such information and analysis regularly, in order to support those Member States that choose to include nuclear power in their energy system as well as those considering other strategies. The focus of the 2020 publication is on the significant potential of nuclear energy, integrated in a low carbon energy system, to contribute to the 1.5°C climate change mitigation target, and the challenges of realizing this potential. Energy system and market related factors affecting the transition to a low carbon energy system are reviewed. This edition also outlines developments needed to realize the large scale capacity increase required to rapidly decarbonize the global energy system in line with limiting global warming to 1.5°C.

Nuclear Power Plant Life Management and Longer term Operation

Nuclear Power Plant Life Management and Longer term Operation
Author: OECD Nuclear Energy Agency
Publsiher: OECD Publishing
Total Pages: 68
Release: 2006
Genre: Business & Economics
ISBN: UOM:39015069120031

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On cover and title page: Nuclear development

Lessons Learned from the Fukushima Nuclear Accident for Improving Safety of U S Nuclear Plants

Lessons Learned from the Fukushima Nuclear Accident for Improving Safety of U S  Nuclear Plants
Author: National Research Council (U.S.). Committee on Lessons Learned from the Fukushima Nuclear Accident for Improving Safety and Security of U.S. Nuclear Plants,National Research Council,Nuclear and Radiation Studies Board,Division on Earth and Life Studies
Publsiher: National Academy Press
Total Pages: 394
Release: 2014-10-29
Genre: History
ISBN: 030927253X

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The March 11, 2011, Great East Japan Earthquake and tsunami sparked a humanitarian disaster in northeastern Japan. They were responsible for more than 15,900 deaths and 2,600 missing persons as well as physical infrastructure damages exceeding $200 billion. The earthquake and tsunami also initiated a severe nuclear accident at the Fukushima Daiichi Nuclear Power Station. Three of the six reactors at the plant sustained severe core damage and released hydrogen and radioactive materials. Explosion of the released hydrogen damaged three reactor buildings and impeded onsite emergency response efforts. The accident prompted widespread evacuations of local populations, large economic losses, and the eventual shutdown of all nuclear power plants in Japan. "Lessons Learned from the Fukushima Nuclear Accident for Improving Safety and Security of U.S. Nuclear Plants" is a study of the Fukushima Daiichi accident. This report examines the causes of the crisis, the performance of safety systems at the plant, and the responses of its operators following the earthquake and tsunami. The report then considers the lessons that can be learned and their implications for U.S. safety and storage of spent nuclear fuel and high-level waste, commercial nuclear reactor safety and security regulations, and design improvements. "Lessons Learned" makes recommendations to improve plant systems, resources, and operator training to enable effective ad hoc responses to severe accidents. This report's recommendations to incorporate modern risk concepts into safety regulations and improve the nuclear safety culture will help the industry prepare for events that could challenge the design of plant structures and lead to a loss of critical safety functions. In providing a broad-scope, high-level examination of the accident, "Lessons Learned" is meant to complement earlier evaluations by industry and regulators. This in-depth review will be an essential resource for the nuclear power industry, policy makers, and anyone interested in the state of U.S. preparedness and response in the face of crisis situations.