Tobruk University Journal of Engineering Sciences (TUJES)
Our Aim "Engineering Education Research" [NO Traditional Teaching & NO Indoctrination], [YES to E-Learning & to Research Creative Thinking Skills]
Tobruk University Journal of Engineering Sciences (TUJES)
Mohamed Edali, Asma Milad, Walid Alaswad, Zaed Sahem ",
' Department of Chemical and Petroleum Engineering, Elmergib University, Elkhoms, Libya.
"Creativity Group for Technical Services, Ottawa, Ontario, Canada
*dredalicreativitygroupts@gmail.com,
Ali Elkamel
Department of Chemical Engineering, University of Waterloo, Waterloo, Ontario, Canada
Abstract:
For the Full paper, Click on.
Tobruk University Journal of Engineering Sciences (TUJES) Volume 4, Issue 2 :
The picture below >>
Author: Mohamed Edali, Asma Milad, Walid Alaswad, Zaed Sahem, and Ali Elkamel
Note: With your computer mouse just:
1) Explanation of the APP @ each of the produced free executable COMSOL runtime Apps for a brief description of the APP “Case Studies”'
2) Click on the App picture to have it downloaded, for free for students and professors worldwide to use "out of the box" to learn the science behind the simulation.
3) Click on the brown button below the first APP1 Logo for 3 minutes short video for the "Know How" to App1 Numerical & Analytical Navigation Manual and that is the work on APPs typical procedures.
A one-time installation is needed of the free COMSOL runtime libraries upon ONLY the first execution of an app.
APP #1 Heat Transfer
This simple App was created to study the steady-state conductive heat transfer where the total heat flux through a brick wall is calculated based on the one-dimensional conductive heat transfer governing equation. The App is designed in a simple way to allow students to navigate the two sections of the problem, where the first section is showing the theoretical background and the second section is divided into multiple numerical analysis tabs
APP #2 Heat Transfer
This App presented next is about a different type of investigating a conductive heat transfer. In this case, change over time “Transient approach” is considered to calculate heat flux loss through a small building roof.
APP #3 Heat Transfer
In this App, presented next two types of heat transfer were covered. The App illustrates the combined conductive and convective heat transfer for a case of an insulating chamber. The flexibility of the input data section enables a student to try different scenarios to find the best way to reach the required insulation needs.