Nuclear Science Abstracts
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Published: 1976
Total Pages: 964
ISBN-13:
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Author:
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Published: 1976
Total Pages: 964
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DOWNLOAD EBOOKAuthor: Jeffrey P. Freidberg
Publisher: Cambridge University Press
Published: 2008-07-10
Total Pages: 6
ISBN-13: 1139462156
DOWNLOAD EBOOKThere has been an increase in interest worldwide in fusion research over the last decade and a half due to the recognition that a large number of new, environmentally attractive, sustainable energy sources will be needed to meet ever increasing demand for electrical energy. Based on a series of course notes from graduate courses in plasma physics and fusion energy at MIT, the text begins with an overview of world energy needs, current methods of energy generation, and the potential role that fusion may play in the future. It covers energy issues such as the production of fusion power, power balance, the design of a simple fusion reactor and the basic plasma physics issues faced by the developers of fusion power. This book is suitable for graduate students and researchers working in applied physics and nuclear engineering. A large number of problems accumulated over two decades of teaching are included to aid understanding.
Author: Thomas J. Dolan
Publisher: Springer Science & Business Media
Published: 2014-02-10
Total Pages: 816
ISBN-13: 1447155564
DOWNLOAD EBOOKMagnetic Fusion Technology describes the technologies that are required for successful development of nuclear fusion power plants using strong magnetic fields. These technologies include: • magnet systems, • plasma heating systems, • control systems, • energy conversion systems, • advanced materials development, • vacuum systems, • cryogenic systems, • plasma diagnostics, • safety systems, and • power plant design studies. Magnetic Fusion Technology will be useful to students and to specialists working in energy research.
Author: Igor Girka
Publisher: BoD – Books on Demand
Published: 2019-04-17
Total Pages: 116
ISBN-13: 1789857872
DOWNLOAD EBOOKPower production and its consumption and distribution are among the most urgent problems of mankind. Despite positive dynamics in introducing renewable sources of energy, nuclear power plants still remain the major source of carbon-free electric energy. Fusion can be an alternative to fission in the foreseeable future. Research in the field of controlled nuclear fusion has been ongoing for almost 100 years. Magnetic confinement systems are the most promising for effective implementation, and the International Thermonuclear Experimental Reactor is under construction in France. To accomplish nuclear fusion on Earth, we have to resolve a number of scientific and technological problems. This monograph includes selected chapters on nuclear physics and mechanical engineering within the scope of nuclear fusion.
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Published: 1974
Total Pages: 1570
ISBN-13:
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Published: 1973-01-19
Total Pages: 48
ISBN-13:
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Published: 1975-11
Total Pages: 960
ISBN-13:
DOWNLOAD EBOOKAuthor: Tetsuo Tanabe
Publisher: Springer Nature
Published: 2021-03-08
Total Pages: 209
ISBN-13: 9811603286
DOWNLOAD EBOOKThis book is a primer on the interplay between plasma and materials in a fusion reactor, so-called plasma–materials interactions (PMIs), highlighting materials and their influence on plasma through PMI. It aims to demonstrate that a plasma-facing surface (PFS) responds actively to fusion plasma and that the clarifying nature of PFS is indispensable to understanding the influence of PFS on plasma. It describes the modern insight into PMI, namely, relevant feedback to plasma performance from plasma-facing material (PFM) on changes in a material surface by plasma power load by radiation and particles, contrary to a conventional view that unilateral influence from plasma on PFM is dominant in PMI. There are many books and reviews on PMI in the context of plasma physics, that is, how plasma or plasma confinement works in PMI. By contrast, this book features a materials aspect in PMI focusing on changes caused by heat and particle load from plasma: how PFMs are changed by plasma exposure and then, accordingly, how the changed PFM interacts with plasma.