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Pressurized Heavy Water Reactors: CANDU, the seventh volume in the
JSME Series on Thermal and Nuclear Power Generation series,
provides a comprehensive and complete review of a single type of
reactor in a very accessible and practical way. The book presents
the full lifecycle, from design and manufacturing to operation and
maintenance, also covering fitness-for-service and long-term
operation. It does not relate to any specific vendor-based
technology, but rather provides a broad overview of the latest
technologies from a variety of active locations which will be of
great value to countries invested in developing their own nuclear
programs. Including contemporary capabilities and challenges of
nuclear technology, the book offers practical solutions to common
problems faced, along with the safe and approved processes to reach
suitable solutions. Professionals involved in nuclear power plant
lifecycle assessment and researchers interested in the development
and improvement of nuclear energy technologies will gain a deep
understanding of PHWR nuclear reactor physics, chemistry and
thermal-hydraulic properties.
Pressurized Heavy Water Reactors: Atucha-II, the eighth volume in
the JSME Series on Thermal and Nuclear Power Generation, provides a
comprehensive and complete review of a single type of reactor in a
very accessible and practical way. The book presents a close
analysis of the Atucha reactor, covering reactor physics, aging
management of major components, and the role of codes in PHWR and
Nuclear Regulation and Licensing. Including contemporary
capabilities and challenges of nuclear technology, the book offers
solutions and advice on common problems faced, guiding the reader
through safe and approved processes that will help them reach
suitable solutions. Professionals involved in lifecycle assessments
and researchers interested in the development and improvement of
nuclear energy technologies will gain a deep understanding of PHWR
nuclear reactor physics, design and licensing.
Steam Generators for Nuclear Power Plants examines all phases of
the lifecycle of nuclear steam generators (NSGs), components which
are essential for the efficient and safe operation of light water
reactors (LWRs). Coverage spans the design, manufacturing,
operation and maintenance, fitness-for-service, and long-term
operation of these key reactor parts. Part One opens with a chapter
that provides fundamental background on NSG engineering and
operational experiences. Following chapters review the different
NSG concepts, describe NSG design and manufacturing, and consider
the particularities of SGs for VVER reactors. Part Two focuses on
NSG operation and maintenance, starting with an overview of the
activities required to support reliable and safe operation. The
discussion then moves on to tubing vibration, followed by the water
and steam cycle chemistry issues relevant to the NSG lifecycle.
Finally, a number of chapters focus on the key issue of corrosion
in NSGs from different angles. This book serves as a timely
resource for professionals involved in all phases of the NSG
lifecycle, from design, manufacturing, operation and maintenance,
to fitness-for-service and long-term operation. It is also intended
as a valuable resource for students and researchers interested in a
range of topics relating to NSG lifecycle management.
Power uprate and life extension are ongoing concerns for nuclear
power stations due to strengthened safety and regulatory
requirements. While great successes have been achieved, huge costs
have been reported and numerous technically challenging questions
have been raised. With regard to piping, most issues concern
whether relevant code requirements are reasonably met. This
monograph addresses a few issues essential for achieving a
consistent Design-By-Analysis in accordance with the ASME Boiler
& Pressure Vessel Code: nonlinear alternative rules, fatigue,
thermal ratcheting, dynamic loads, strain-based criteria, nonlinear
finite element procedures, supports under combined stresses, and
others. Throughout the text, the authors endeavour to seek more
reliable and consistent alternatives using advanced non-linear
finite element analysis. Unlike other texts on piping, this
monograph is focused on commercial software and current practices
for power uprate and life extension of aging nuclear power
facilities.
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