Magnetohydrodynamic pipe flow Part2. High Hartmann number

From MaRDI portal
Publication:5728243

DOI10.1017/S0022112062000890zbMath0117.43302OpenAlexW2152794843MaRDI QIDQ5728243

J. Arthur Shercliff

Publication date: 1962

Published in: Journal of Fluid Mechanics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1017/s0022112062000890




Related Items (26)

Magnetohydrodynamic mixed convection flow in vertical concentric annuli with time periodic boundary condition: steady periodic regimeMHD flow between electromagnetically coupled concentric cylinders with slipping wallsSteady magnetohydrodynamic flow in an insulating circular pipeA higher-order finite difference method for two-dimensional singularly perturbed reaction-diffusion with source-term-discontinuous problemOn the analogy between streamlined magnetic and solid obstaclesAnalytical methods for an elliptic singular perturbation problem in a circleA new approach for solving weight functions of electromagnetic flowmeters using resistive network modelingMagnetohydrodynamic flow in rectangular ductsApproximate solution of the problem of the flow of a conducting liquid in a duct with rectangular cross sectionThe velocity profile of laminar MHD flows in circular conducting pipesStabilization in 3‐D FEM and solution of the MHD equationsMaximum electromagnetic drag configurations for a translating conducting cylinder with distant magnetic dipolesConstrained flow around a magnetic obstacleDuct flow with a transverse magnetic field at high Hartmann numbersAn application of the method of multiple scales to magnetohydrodynamic flowUnnamed ItemFinite element analysis of magnetohydrodynamic pipe flowDivisionally analytical solutions of Laplace's equations for dry calibration of electromagnetic velocity probesThe method of variably scaled radial kernels for solving two-dimensional magnetohydrodynamic (MHD) equations using two discretizations: the Crank-Nicolson scheme and the method of lines (MOL)Natural convection of liquid metal in a vertical annulus with lateral and volumetric heating in the presence of a horizontal magnetic fieldMeshless local Petrov-Galerkin (MLPG) method for the unsteady magnetohydrodynamic (MHD) flow through pipe with arbitrary wall conductivityAsymptotic solutions of singular perturbation problems for linear differential equations of elliptic typeA consistent and conservative immersed boundary method for MHD flows and moving boundary problemsNumerical Solutions of Two Heat Transfer Limits of MFM Square Duct Flow Using MatLab ProgramSome extremum principles for pipe flow in magnetohydrodynamicsFlow past a profile in a magnetic field perpendicular to the stream plane



Cites Work


This page was built for publication: Magnetohydrodynamic pipe flow Part2. High Hartmann number