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Severe Accidents in Nuclear Reactors: Corium Retention Technologies
and Insights presents an authoritative and practical analysis of
the latest severe accident management strategies based on previous
events and experiments. Written for utilities and industries
operating and researching nuclear cooled reactor power plants, this
book presents the exponential growth in research since major
nuclear accidents and acts as a guide to retaining molten corium,
both inside and outside the reactor vessel. Sections cover the
physics behind several complex phenomena occurring during corium
coolability, providing the reader with an in-depth understanding by
presenting the insights obtained from simulated severe accidents.
In addition, the book validates several severe accident codes and
provides evidence on the termination of severe accident
progressions to help the reader evaluate the safety of existing
reactors and design the next generation of nuclear reactors.
Single-Phase, Two-Phase and Supercritical Natural Circulation
Systems provides readers with a deep understanding of natural
circulation systems. This book equips the reader with an
understanding on how to detect unstable loops to ensure plant
safety and reliability, calculate heat transport capabilities, and
design effective natural circulation loops, stability maps and
parallel channel systems. Each chapter begins with an introduction
to the circulation system before discussing each element in detail
and analyzing its effect on the performance of the system. The book
also presents thermosyphon heat transport devices in nuclear and
other industrial plants, a common information need for students and
researchers alike. This book is invaluable for engineers,
designers, operators and consultants in nuclear, mechanical,
electrical and chemical disciplines.
Advances of Computational Fluid Dynamics in Nuclear Reactor Design
and Safety Assessment presents the latest computational fluid
dynamic technologies. It includes an evaluation of safety systems
for reactors using CFD and their design, the modeling of Severe
Accident Phenomena Using CFD, Model Development for Two-phase
Flows, and Applications for Sodium and Molten Salt Reactor Designs.
Editors Joshi and Nayak have an invaluable wealth of experience
that enables them to comment on the development of CFD models, the
technologies currently in practice, and the future of CFD in
nuclear reactors. Readers will find a thematic discussion on each
aspect of CFD applications for the design and safety assessment of
Gen II to Gen IV reactor concepts that will help them develop cost
reduction strategies for nuclear power plants.
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