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Comments to the Article “The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak” by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446

Comments to the Article “The Behavior of Radial Electric Field and Toroidal Rotation in the Edge... J Fusion Energ (2011) 30:357 DOI 10.1007/s10894-011-9387-2 BRIEF COMMUNICATION Comments to the Article ‘‘The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak’’ by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446 Alexander Romannikov Published online: 29 January 2011 Springer Science+Business Media, LLC 2011 I would like to pay attention that the main idea and con- of the electromagnetic field in the instantaneous inertial clusions of the article ‘‘The Behavior of Radial Electric corotating frame in which the material medium is at rest Field and Toroidal Rotation in the Edge Plasma of Divertor can be easily related to the radial electric field ‘‘Er’’ and Tokamak’’ by A. H. Bekheit published in J. Fusion Energy magnetic field ‘‘B’’ components in the laboratory frame (2010) 29, p. 443–446 are practically identical to the article [10]. In our case, it is possible to consider the corotating ‘‘Certain considerations concerning the nature of radial frame also as instantaneous inertial frame [11, 12]’’, electric field and toroidal rotation velocity profile in toka- p. 444); mak plasma’’ by A. Romannikov, published in Plasma 3. Items 4, 5 and 7 in Conclusion of Romannikov’s Phys. Control. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Fusion Energy Springer Journals

Comments to the Article “The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak” by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446

Journal of Fusion Energy , Volume 30 (5) – Jan 29, 2011

Comments to the Article “The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak” by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446

Abstract

J Fusion Energ (2011) 30:357 DOI 10.1007/s10894-011-9387-2 BRIEF COMMUNICATION Comments to the Article ‘‘The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak’’ by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446 Alexander Romannikov Published online: 29 January 2011 Springer Science+Business Media, LLC 2011 I would like to pay attention that the main idea and con- of the electromagnetic field in...
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References (1)

Publisher
Springer Journals
Copyright
Copyright © 2011 by Springer Science+Business Media, LLC
Subject
Physics; Energy Economics; Renewable and Green Energy; Atoms and Molecules in Strong Fields, Laser Matter Interaction; Nuclear Energy; Sustainable Development; Nuclear Fusion
ISSN
0164-0313
eISSN
1572-9591
DOI
10.1007/s10894-011-9387-2
Publisher site
See Article on Publisher Site

Abstract

J Fusion Energ (2011) 30:357 DOI 10.1007/s10894-011-9387-2 BRIEF COMMUNICATION Comments to the Article ‘‘The Behavior of Radial Electric Field and Toroidal Rotation in the Edge Plasma of Divertor Tokamak’’ by A. H. Bekheit Published in J. Fusion Energy (2010) 29, p. 443–446 Alexander Romannikov Published online: 29 January 2011 Springer Science+Business Media, LLC 2011 I would like to pay attention that the main idea and con- of the electromagnetic field in the instantaneous inertial clusions of the article ‘‘The Behavior of Radial Electric corotating frame in which the material medium is at rest Field and Toroidal Rotation in the Edge Plasma of Divertor can be easily related to the radial electric field ‘‘Er’’ and Tokamak’’ by A. H. Bekheit published in J. Fusion Energy magnetic field ‘‘B’’ components in the laboratory frame (2010) 29, p. 443–446 are practically identical to the article [10]. In our case, it is possible to consider the corotating ‘‘Certain considerations concerning the nature of radial frame also as instantaneous inertial frame [11, 12]’’, electric field and toroidal rotation velocity profile in toka- p. 444); mak plasma’’ by A. Romannikov, published in Plasma 3. Items 4, 5 and 7 in Conclusion of Romannikov’s Phys. Control.

Journal

Journal of Fusion EnergySpringer Journals

Published: Jan 29, 2011

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