International Journal of Numerical Methods for Heat & Fluid Flow: Volume 6 Issue 2

Subjects:

Table of contents

Computer simulation of liquid encapsulated vertical bridgman crystal growth: pseudo steady‐state calculations

C.W. Lan, C.C. Ting

A pseudo steady‐state model is developed to study heat transfer, fluidflow, and the interface shape in the liquid encapsulated vertical Bridgmancrystal growth. The model, which is…

Three‐dimensional simulation of thermals using a split‐operator scheme

C.W. Li, F. Zhang

A three‐dimensional numerical model is developed to study the motion andmixing process induced by thermals. The model utilizes a split‐operatorapproach for the solution of the…

On adaptive time stepping approaches for thermal solidification processes

Tianhong Ouyang, Kumar K. Tamma

Thermal solidification processes are an important concern in today’smanufacturing technology. Because of the complex geometric nature ofreal‐world problems, analytical techniques…

A second order splitting algorithm for thermally‐driven flow problems

P.D. Minev, F.N. VAN De Vosse, L.J.P. Timmermans, A.A. Van Steenhoven

A splitting technique for solutions of the Navier—Stokes and the energyequations, in Boussinesq approximately, is presented. The equations are firstintegrated in time using a…

Solutions of three‐dimensional boundary layer equations by global methods of generalized differential‐integral quadrature

C. Shu, Y.T. Chew, B.C. Khoo, K.S. Yeo

The global methods of generalized differential quadrature (GDQ) andgeneralized integral quadrature (GIQ) are applied to solve three‐dimensional,incompressible, laminar boundary…

Short communication radiation effects on MHD free convection flow of a gas past a semi—infinite vertical plate

H.S. Takhar, Rama Subba Reddy Gorla, V.M. Soundalgekar

Free convection heat transfer due to the simultaneous action ofbuoyancy, radiation and transverse magnetic field is investigated for asemi‐infinite vertical plate. Solutions are…

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