Numerical solutions of two heat transfer limits of MFM square duct flow using MatLab program
Author | Al-Khawaja, Mohammed J. |
Author | Selmi, Mohamed |
Available date | 2024-04-23T07:09:24Z |
Publication Date | 2009-02-06 |
Publication Name | International Journal for Computational Methods in Engineering Science and Mechanics |
Identifier | http://dx.doi.org/10.1080/15502280802623271 |
Citation | Al-Khawaja, M. J., & Selmi, M. (2009). Numerical solutions of two heat transfer limits of MFM square duct flow using matlab program. International Journal for Computational Methods in Engineering Science and Mechanics, 10(1), 102-107. |
ISSN | 1550-2287 |
Abstract | The heat transfer of a magneto-fluid-dynamics (MFM) laminar flow in an electricallyinsulated square duct subjected to two boundary condition limits of constant heat flux and constant wall temperature is examined numerically. The working fluid is electrically conducting fluid (i.e. liquid metal). The central finite difference scheme is used to discretize the governing equations and the resulting equations are solved by MatLab using the iterative Gauss-Seidel method. The solutions for these heat transfer limits, the constant temperature boundary condition (with non-linear energy equation) and the constant heat flux boundary condition (with linear energy equation) are compared with previous work done for ducts of circular cross section subjected to constant heat flux boundary condition. The results show that the circular duct with constant heat flux exhibits the highest heat transfer rate whereas the square duct with constant temperature has the lowest heat transfer rate. |
Language | en |
Publisher | Taylor & Francis |
Subject | Electrically conducting fluid flow Heated liquid metal flow MFM flow MHD flow Square duct flow Two heat transfer limits |
Type | Article |
Pagination | 102-107 |
Issue Number | 1 |
Volume Number | 10 |
ESSN | 1550-2295 |
Check access options
Files in this item
This item appears in the following Collection(s)
-
Mechanical & Industrial Engineering [1396 items ]