International Journal of Numerical Methods for Heat & Fluid Flow: Volume 11 Issue 6

Subjects:

Table of contents

Natural convection flow of a viscous fluid about a truncated cone with temperature‐dependent viscosity and thermal conductivity

M.A. Hossain, M.S. Munir

A steady, two‐dimensional natural convection flow of a viscous, incompressible fluid having temperature‐dependent viscosity and thermal conductivity about a truncated cone is…

Numerical study of turbulent flow with heat removal from a flat plate using the finite volume‐based method of lines

Antonio Campo

A hybrid computational method has been developed for the calculation of momentum and heat transfer in turbulent boundary layer flows along flat plates. The proposed method, the…

The effect of choosing dependent variables and cell‐face velocities on convergence of the SIMPLE algorithm using non‐orthogonal grids

H. Lai, Y.Y. Yan

In this paper the effects of choosing dependent variables and cell face velocities on convergence of the SIMPLE algorithm are discussed. Using different velocity components as…

Non‐linear flow in fractured rock

Olaf Kolditz

This paper deals with theory and computation of fluid flow in fractured rock. Non‐Darcian flow behavior was observed in pumping tests at the geothermal research site at…

1609

Three‐dimensional computational modelling of momentum, heat and mass transfer in laser surface alloying with distributed melting of alloying element

P. Mohan Raj, S. Sarkar, S. Chakraborty, P. Dutta

A transient, three‐dimensional mathematical model of a single‐pass laser surface alloying process has been developed to examine the macroscopic heat, momentum and species…

Darcy‐Forchheimer mixed convection heat and mass transfer in fluid saturated porous media

Rami Y. Jumah, A. Fawzi, Fahmi Abu‐Al‐Rub

The Darcy‐Forchheimer mixed convection from a vertical flat plate embedded in a fluid‐saturated porous medium under the coupled effects of thermal and mass diffusion is analyzed…

Cover of International Journal of Numerical Methods for Heat & Fluid Flow

ISSN:

0961-5539

Online date, start – end:

1991

Copyright Holder:

Emerald Publishing Limited

Open Access:

hybrid

Editor:

  • Prof Roland Lewis