Materials and water chemistry for supercritical water-cooled reactors /

Materials and Water Chemistry for Supercritical Water-cooled Reactors is unique in that it brings together materials and water chemistry, their interrelationship, the historical perspective and their application to SCWR conceptual design. Written by world's leading experts, all active in the ar...

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Bibliographic Details
Corporate Author: ScienceDirect (Online service)
Other Authors: Guzonas, David (Editor), Novotny, Radek (Editor), Pentilla, S. (Editor), Toivonen, Aki (Editor), Zheng, Wenyue (Editor)
Format: eBook
Language:English
Published: Duxford, United Kingdom : Woodhead Publishing, 2018.
Series:Woodhead Publishing in energy.
Subjects:
Online Access:Connect to the full text of this electronic book

MARC

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245 0 0 |a Materials and water chemistry for supercritical water-cooled reactors /  |c David Guzonas, Radek Novotny, Sami Penttilä, Aki Toivonen, Wenyue Zheng. 
264 1 |a Duxford, United Kingdom :  |b Woodhead Publishing,  |c 2018. 
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490 1 |a Woodhead Publishing series in energy 
500 |a Includes index. 
588 0 |a Online resource; title from PDF title page (Ebsco, viewed November 7, 2017). 
520 |a Materials and Water Chemistry for Supercritical Water-cooled Reactors is unique in that it brings together materials and water chemistry, their interrelationship, the historical perspective and their application to SCWR conceptual design. Written by world's leading experts, all active in the area of materials and chemistry R & D in support of GEN IV SCWR, this book presents for the first time a comprehensive reference on these topics, and in particular, how these data relate to the SCWR design itself. This book is an essential text for researchers in the areas of supercritical water-cooled reactor materials and chemistry, working in industry or academia. It will also give newcomers to the field a survey of all of the available literature and a clear understanding of how these studies relate to the design of the SCWR concept. The material presented is at a specialist's level in materials or corrosion science, or in water chemistry of power plants. 
505 0 0 |g Machine generated contents note:  |g 1.  |t Introduction --  |g 1.1.  |t Early efforts --  |g 1.2.  |t Recent developments --  |g 1.3.  |t Supercritical water-cooled reactor materials requirements --  |g 1.4.  |t Summary --  |t References --  |g 2.  |t Experimental methodologies --  |g 2.1.  |t Test facilities for corrosion and environmentally assisted cracking studies --  |g 2.2.  |t Test specimens --  |g 2.3.  |t Corrosion rate measurements --  |g 2.4.  |t Measurements of thermodynamic properties --  |g 2.5.  |t Stress corrosion cracking --  |g 2.6.  |t Testing under irradiated conditions --  |t References --  |g 3.  |t Radiation effects and mechanical properties --  |g 3.1.  |t Primary radiation damage --  |g 3.2.  |t Effects on mechanical properties --  |g 3.3.  |t Effects on microchemistry: radiation-induced segregation --  |g 3.4.  |t Creep --  |g 3.5.  |t Microstructural instability --  |g 3.6.  |t Modelling --  |t References --  |g 4.  |t Water chemistry --  |g 4.1.  |t Introduction --  |g 4.2.  |t Feedwater chemistry --  |g 4.3.  |t Activity transport --  |g 4.4.  |t Water radiolysis --  |g 4.5.  |t Chemistry control in a supercritical water-cooled reactor --  |g 4.6.  |t Molecular dynamics simulations --  |t References --  |g 5.  |t Corrosion --  |g 5.1.  |t Introduction --  |g 5.2.  |t Alloy composition --  |g 5.3.  |t Effects of key parameters --  |g 5.4.  |t Oxide morphology --  |g 5.5.  |t Oxide growth kinetics --  |g 5.6.  |t Mechanisms and modelling --  |t References --  |g 6.  |t Environmentally assisted cracking --  |g 6.1.  |t Introduction --  |g 6.2.  |t Effects of key variables --  |g 6.3.  |t Mechanisms and modelling --  |t References. 
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