Atomic and Molecular Processes in Controlled Thermonuclear Fusion

Atomic and Molecular Processes in Controlled Thermonuclear Fusion
Author: M. R. McDowell
Publisher: Springer Science & Business Media
Total Pages: 497
Release: 2012-12-06
Genre: Science
ISBN: 1461591619

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The NATO Advanced Study Institute on "Atomic and Molecular Processes in Controlled TheI'IllOnuclear Fusion" was held at Chateau de Bonas, Castera-Verduzan, Gel's, France, from 13th to 24th August 1979, and this volume contains the text of the invited lectures. The Institute was supported by the Scientific Affairs Division of NATO, and additional support was received from EURATOM and the United States National Science Foundation. The Institute was attended by 88 scientists, all of whom were active research workers in control of thermonuclear plasmas, 01' atomic and molecular physics, 01' both. In addition to the formal lectures, printed in this volume, which were intended to be pedagogic, more than twenty research seminars were given by participants. The first half of the Institute was directed to introducing atomic and molecular theoretical and experimental physicists to the physics of controlled thermonuclear fusion. Most attention was paid to magnetic confinement, and within that field, to tokamaks. MI'.

Atomic and Molecular Physics of Controlled Thermonuclear Fusion

Atomic and Molecular Physics of Controlled Thermonuclear Fusion
Author: Douglass E. Joachain
Publisher: Springer Science & Business Media
Total Pages: 578
Release: 2013-06-29
Genre: Science
ISBN: 1461337631

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The need for long-term energy sources, in particular for our highly technological society, has become increasingly apparent during the last decade. One of these sources, of tremendous poten tial importance, is controlled thermonuclear fusion. The goal of controlled thermonuclear fusion research is to produce a high-temperature, completely ionized plasma in which the nuclei of two hydrogen isotopes, deuterium and tritium, undergo enough fusion reactions so that the nuclear energy released by these fusion reactions can be transformed into heat and electricity with an overall gain in energy. This requires average kinetic energies for the nuclei of the order of 10 keV, corresponding to temperatures of about 100 million degrees. Moreover, the plasma must remain confined for a certain time interval, during which sufficient energy must be produced to heat the plasma, overcome the energy losses and supply heat to the power station. At present, two main approaches are being investigated to achieve these objectives: magnetic confinement and inertial con finement. In magnetic confinement research, a low-density plasma is heated by electric currents, assisted by additional heating methods such as radio-frequency heating or neutral beam injection, and the confinement is achieved by using various magnetic field configurations. Examples of these are the plasmas produced in stellarator and tokamak devices.

Atomic and Molecular Process in Controlled Thermonuclear Fusion

Atomic and Molecular Process in Controlled Thermonuclear Fusion
Author: Nato Advanced Study Institute on Atomic and Molecular Process in Controlled Thermonuclear Fusion, Castera-Verduzan, France, 1979
Publisher:
Total Pages: 493
Release: 1980
Genre: Collisions (Nuclear physics)
ISBN:

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Atomic and Plasma-material Interaction Processes in Controlled Thermonuclear Fusion

Atomic and Plasma-material Interaction Processes in Controlled Thermonuclear Fusion
Author: Ratko K. Janev
Publisher: Elsevier Publishing Company
Total Pages: 502
Release: 1993
Genre: Science
ISBN:

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Atomic and plasma-material interaction processes play an important role in thermonuclear fusion plasmas and the knowledge of these processes has a significant impact on fusion energy research and development. The present volume provides a comprehensive survey of atomic and plasma-material interaction aspects of controlled thermonuclear fusion. The review articles included in this volume describe the role of atomic and plasma-material interaction processes in the currently most active fusion research areas and emphasize the need for accurate quantitative information on these processes for resolving many outstanding issues in fusion research and reactor design development such as plasma energy balance, particle transport and confinement, impurity control, thermal power and helium exhaust, plasma heating and fuelling, edge plasma physics, development of fusion reactor plasma facing components and plasma diagnostics and modelling.

Controlled Nuclear Fusion

Controlled Nuclear Fusion
Author: Samuel Glasstone
Publisher:
Total Pages: 56
Release: 1964
Genre: Controlled Fusion
ISBN:

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