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Titlebook: Electrically Induced Vortical Flows; V. Bojarevičs,J. A. Freibergs,E. V. Shcherbinin Book 1989 Kluwer Academic Publishers 1989 convection.

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书目名称Electrically Induced Vortical Flows
编辑V. Bojarevičs,J. A. Freibergs,E. V. Shcherbinin
视频video
丛书名称Mechanics of Fluids and Transport Processes
图书封面Titlebook: Electrically Induced Vortical Flows;  V. Bojarevičs,J. A. Freibergs,E. V. Shcherbinin Book 1989 Kluwer Academic Publishers 1989 convection.
描述Every scientific subject probably conceals unexplored or little investigated strata, which may show up at the proper time when favourable conditions coincide (practical demands, a circle of scientists prepared to recognize the novelty and capable of giving impetus to the development of a new theory, etc.). Something like this occurred in early seventies for magnetohydrodynamics, which at the time was considered to be a relatively complete branch of hydro­ dynamics with no apparent broad, unexplored areas. It was unexpectedly realized that, in addition to the traditional methods of affecting an electrically conducting medium, there is yet another way, one which subsequently lead to a new direction in magnetohydrodynamics. In the Soviet scientific literature this direction has been termed ‘electrically induced vortex flows‘, the essence of which are hydrodynamic effects due to the interaction of an electric current passing through the fluid with its own magnetic field. It cannot be said that this direction was created ex nihilo: individual studies related to the flows driven in a current-carrying medium in the absence of external magnetic fields appeared in the sixties; in the thirti
出版日期Book 1989
关键词convection; dynamics; flow; magnetohydrodynamics
版次1
doihttps://doi.org/10.1007/978-94-009-1163-5
isbn_softcover978-94-010-7017-1
isbn_ebook978-94-009-1163-5Series ISSN 0921-3805
issn_series 0921-3805
copyrightKluwer Academic Publishers 1989
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Using the Communication API and Web Sockets,nto account the electromagnetic force, which, in fact, sets magnetohydrodynamics apart as an individual branch of general hydrodynamics. The inclusion of additional force is not only an efficient tool to control the flow, but also leads to a variety of purely hydrodynamic phenomena which are not rea
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HTML5 Processing: Using CSS and JavaScript,esult of a spatially inhomogeneous electric current density. The difficulties associated with the mathematical description of such flows in hydrodynamics can be greatly reduced by restricting our attention to axisymmetric situations. To maintain laminar axisymmetric magnetohydrodynamic flow, it is e
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https://doi.org/10.1007/978-1-4302-3387-9in the previous chapter. The study will begin with so-called exact solutions, by which we mean those solutions obtained from the full equations of motion without . estimates and omission of any terms, say, after the order-of-magnitude analysis (this does not apply to the electrodynamic quantities, w
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Web Site Database: Using PHP and MySQL,mmetric electric current distributions (compared to the spherical case) are available, which, at least partly, have immediate practical implications. Second, in cylindrical coordinates there are several methods for the separation of variables in the Navier-Stokes and Maxwell equations that allow us
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