MAGNETOHYDRODYNAMIC LIQUID METAL FLOW IN ARBITRARY THREE - DIMENSIONAL GEOMETRIES IN STRONG, NON-UNIFORM MAGNETIC FIELDS. (IN GERMAN). PDF Download

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MAGNETOHYDRODYNAMIC LIQUID METAL FLOW IN ARBITRARY THREE - DIMENSIONAL GEOMETRIES IN STRONG, NON-UNIFORM MAGNETIC FIELDS. (IN GERMAN).

MAGNETOHYDRODYNAMIC LIQUID METAL FLOW IN ARBITRARY THREE - DIMENSIONAL GEOMETRIES IN STRONG, NON-UNIFORM MAGNETIC FIELDS. (IN GERMAN). PDF Author: L. Buehler
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


MAGNETOHYDRODYNAMIC LIQUID METAL FLOW IN ARBITRARY THREE - DIMENSIONAL GEOMETRIES IN STRONG, NON-UNIFORM MAGNETIC FIELDS. (IN GERMAN).

MAGNETOHYDRODYNAMIC LIQUID METAL FLOW IN ARBITRARY THREE - DIMENSIONAL GEOMETRIES IN STRONG, NON-UNIFORM MAGNETIC FIELDS. (IN GERMAN). PDF Author: L. Buehler
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 508

Book Description


Numerical Solutions of Three-dimensional MHD Flows in Strong Non-uniform Transverse Magnetic Fields

Numerical Solutions of Three-dimensional MHD Flows in Strong Non-uniform Transverse Magnetic Fields PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Magnetohydrodynamic flows of liquid metals in thin conducting ducts of various geometries in the presence of strong nonuniform transverse magnetic fields are examined. The interaction parameter and Hartmann number are assumed to be large, whereas the magnetic Reynolds number is assumed to be small. Under these assumptions, viscous and inertial effects are confined in very thin boundary layers adjacent to the walls. At walls parallel to the magnetic field lines, as at the side walls of a rectangular duct, the boundary layers (side layers) carry a significant fraction of the volumetric flow rate in the form of high velocity jets. This paper describes the analysis and summarizes the numerical methods for obtaining 3-D solutions (core solutions) for flow parameters outside these layers, without solving explicitly for the layers themselves. 13 refs., 1 fig.

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ISBN:
Category : Physics
Languages : en
Pages : 1248

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Three-dimensional Liquid Metal Flows in Strong Magnetic Fields PDF Author: Leo Bühler
Publisher:
ISBN:
Category :
Languages : en
Pages : 100

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Applied Mechanics Reviews PDF Author:
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ISBN:
Category : Mechanics, Applied
Languages : en
Pages : 694

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Category : Science
Languages : en
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Category : Plasma (Ionized gases)
Languages : en
Pages : 654

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Category : Mathematics
Languages : en
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Liquid Metal Magnetohydrodynamics

Liquid Metal Magnetohydrodynamics PDF Author: J.J. Lielpeteris
Publisher: Springer Science & Business Media
ISBN: 9400909993
Category : Science
Languages : en
Pages : 454

Book Description
Liquid metal MHO is within the scope of two series of international conferences. One is the International Congress on "MHD Power Generation", held every four years, which includes technical and economical aspects as well as scientific questions. The other if the Beer-Sheva Seminar on "MHO Flows and Turbulence", held every three years in Israel. In addition to these well established meetings, an IUTAM Symposium was previously organized in Cambridge (UK) in 1982 on "Metallurgical Applications of MHD" by the late Arthur Shercliff. It was focussed on a very specific subject developing radiply from the middle of the 1970's. The magnetic field was generally AC, including frequencies high enough for the skin-depth to be much smaller than the typical length scale of the liquide pool. And the development of new technologies, or the improvement of existing ones, was the main justification of most of the researches presented and discussed. Only two participants from Eastern countries attended this Symposium. By the middle of the 1980's we felt that on this very same topic ideas had reached much more maturity than in 1982. We also realized that a line of research on MHD flows related to fusion reactors (tokamaks) was developing significantly, with particular emphasis on flows at large interaction parameter.