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Understanding and mitigating ageing in nuclear power plants

Materials and operational aspects of plant life management (PLiM)

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Kiadó: Woodhead Publishing
Kiadás helye: Oxxford/Cambridge/Philadelphia/New Delhi
Kiadás éve:
Kötés típusa: Fűzött kemény papírkötés
Oldalszám: 914 oldal
Sorozatcím: Woodhead Publishing Series In Energy
Kötetszám: 4
Nyelv: Angol  
Méret: 24 cm x 16 cm
ISBN: 978-1-84569-511-8
Megjegyzés: Fekete-fehér ábrákkal. További szerzők a műben.
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Fülszöveg


'A very useful compilation of international information and perspectives on long term operation of nuclear power plants.'
Carry C. Young, IAEA Technical Working Croup - Life Management of Nuclear Power
Plants, USA
Plant life management (PLiM) is a methodology focused on the safety-first management of nuclear power plants over their entire lifetime. It incorporates and builds upon the usual periodic safety reviews and licence renewals as part of an overall framework designed to assist plant operators and regulators in assessing the operating conditions of a nuclear power plant, and establishing the technical and economic requirements for safe, long-term operation.
Understanding and mitigating ageing in nuclear power plants critically reviews the fundamental ageing degradation mechanisms of materials used in nuclear power plant structures, systems and components (SSC), along with their relevant analysis and mitigation paths, as well as reactor-type specific PLiM practices.... Tovább

Fülszöveg


'A very useful compilation of international information and perspectives on long term operation of nuclear power plants.'
Carry C. Young, IAEA Technical Working Croup - Life Management of Nuclear Power
Plants, USA
Plant life management (PLiM) is a methodology focused on the safety-first management of nuclear power plants over their entire lifetime. It incorporates and builds upon the usual periodic safety reviews and licence renewals as part of an overall framework designed to assist plant operators and regulators in assessing the operating conditions of a nuclear power plant, and establishing the technical and economic requirements for safe, long-term operation.
Understanding and mitigating ageing in nuclear power plants critically reviews the fundamental ageing degradation mechanisms of materials used in nuclear power plant structures, systems and components (SSC), along with their relevant analysis and mitigation paths, as well as reactor-type specific PLiM practices. Obsolescence and other less obvious ageing-related aspects in nuclear power plant operation are also examined in depth.
Part I introduces the role of nuclear power in the global energy mix, and the importance and relevance of plant life management for the safety regulation and economics of nuclear power plants. Key ageing degradation mechanisms and their effects in nuclear power plant systems, structures and components are reviewed in Part II, along with routes taken to characterize and analyse the ageing of materials and to mitigate or eliminate ageing degradation effects.
Part III reviews analysis, monitoring and modelling techniques applicable to the study of nuclear power plant materials, as well as the application of advanced systems, structures and components in nuclear power plants. Part IV reviews the particular ageing degradation issues, plant designs, and application of plant life management (PLiM) practices in a range of commercial nuclear reactor types.
With its distinguished international team of contributors, Understanding and mitigating ageing in nuclear power plants will be a standard reference work for all nuclear plant designers, operators, and nuclear safety and materials professionals and researchers.
Dr Philip G. Tipping is a Nuclear Energy and Materials Consultant, and was formerly a Senior Materials Specialist/Metallurgist at the Swiss Federal Nuclear Safety Inspectorate (ENSI), Switzerland. He is noted for his research into ageing degradation in nuclear power plant materials and was lead author of IAEA Technical Report Series No. 448: Plant Life Management for Long Term Operation of Light Water Reactors. Vissza
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Understanding and mitigating ageing in nuclear power plants Understanding and mitigating ageing in nuclear power plants Understanding and mitigating ageing in nuclear power plants Understanding and mitigating ageing in nuclear power plants

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