Numerical Simulations Of Mhd Flow Transition In Ducts With Conducting Hartmann Walls Limtech Project A3 D4 Tui PDF Download

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MHD Flow in Rectangular Ducts with Inclined Non-uniform Transverse Magnetic Field

MHD Flow in Rectangular Ducts with Inclined Non-uniform Transverse Magnetic Field
Author:
Publisher:
Total Pages: 27
Release: 1994
Genre:
ISBN:

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This paper examines the three-dimensional liquid metal MHD flow in rectangular ducts with thin conducting walls and with an inclined nonuniform transverse magnetic field. The Hartmann number and interaction parameter are assumed to be large and the magnetic Reynolds number is assumed to be small. Under these assumptions, viscous and inertial effects are confined to thin boundary layers adjacent to the walls. Outside these layers, the governing equations are significantly simplified. For validation of the numerical solutions, exact analytical solutions are derived for the case of a rectangular duct of equal wall thickness and with a uniform magnetic field. Comparisons of the exact analytical and numerical solutions give excellent agreement. Variation of the fully developed flow pressure gradient with the wall conductance ratio, aspect ratio, and magnetic angle is discussed. Numerical solutions are presented for flow in the varying field region where the flow is perturbed due to three-dimensional effects. The three-dimensional pressure drop, i.e., in excess of the locally fully developed pressure, is presented and its implication to a fusion blanket is discussed. The velocity distributions are also presented.


Experimental Investigation of 3-D MHD Flows at High Hartmann Number and Interaction Parameters

Experimental Investigation of 3-D MHD Flows at High Hartmann Number and Interaction Parameters
Author:
Publisher:
Total Pages:
Release: 1988
Genre:
ISBN:

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Experimental investigations of 3-D MHD flows in uniform thin conducting wall ducts of circular and square cross section, conducted at Argonne National Laboratory's ALEX facility, are reported. The three-dimensional nature of the flow arises from the spacial variation of the applied transverse magnetic field. Measurements were performed at several Hartmann numbers, M, and interaction parameters, N, with the peak value for M exceeding 6 x 103 and the peak value for N exceeding 105. Typical results and their comparison to numerical analysis reported in a companion paper are given, as is a brief description of the ALEX facility and the experimental methods employed. Ongoing activities and plans for future experiments are also discussed. 6 refs., 3 figs.


Drag Reduction

Drag Reduction
Author: American Institute of Chemical Engineers
Publisher:
Total Pages: 116
Release: 1971
Genre: Technology & Engineering
ISBN:

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