Description of Individual Course Units
Course Unit CodeCourse Unit TitleType of Course UnitYear of StudySemesterNumber of ECTS Credits
FYE633-15FINITE ELEMENT METHODCompulsory126
Level of Course Unit
Second Cycle
Objectives of the Course
To teach the use of the finite element method widely used in Numerical structure analysis, the basic concepts of the finite element method, material parameters and boundary conditions, SE modelli the establishment of methods of solution, the displacement, stress and strain, the acquisition of the changes of the structure of determination of their influence on the behavior of freight acceptance material assumptions and the material parameters to examine the effects of structural behavior.Commercial engineering program, ANSYS program in teaching and foundations of engineering designs in the development of renewable energy sources analysis and design in the creation of the infrastructure that can use the program ANSYS.
Name of Lecturer(s)
Yrd.Doç.Dr.Mehmet Sami GÜLER
Learning Outcomes
1Define requirements for the design of mechanical systems
2Be able to create computer models of machine parts and assemblies to
3To be able to solve static and dynamic finite element analysis,
4To be able to compare the results of the analysis for different designs,
5
Mode of Delivery
Formal Education
Prerequisites and co-requisities
None
Recommended Optional Programme Components
None
Course Contents
Renewable energy sources for mechanical systems computer aided design with the SolidWorks program which is a program to create input to ANSYS program and to be able to do the work.
Weekly Detailed Course Contents
WeekTheoreticalPracticeLaboratory
1Engineering problems and introduction to finite element method
2The establishment of the mathematical model, definitions, finite element mesh
3Modeling techniques, materials, and load acceptance
4Under the influence of axial force elements
5Solution of simple trusses,
6Solution of simple trusses, applications
7Elements under the influence of the cutting force
8Bending moments in the elements
9Midterm exam
10Analysis of plane frames
11Two-dimensional plane finite elements
12Commercial software used in structural analysis
13Overall assessment
14Seminar
15End-of-term exam
Recommended or Required Reading
J. H.G. HAHN; Methode der finiten Elemente in der Festigkeitslehre, 1982. N. REDY; An Intr. to the Finite Element Method, McGraw-Hill, 1993. D. GÜNAY; Fundamentals Of The Finite Element Method For Engineers, 1993 W. Al-Khafaji, J.R. Tooley, Numerical Methods in Engineering Practice, 1986
Planned Learning Activities and Teaching Methods
Assessment Methods and Criteria
Term (or Year) Learning ActivitiesQuantityWeight
SUM0
End Of Term (or Year) Learning ActivitiesQuantityWeight
SUM0
Yarıyıl (Yıl) İçi Etkinlikleri40
Yarıyıl (Yıl) Sonu Etkinlikleri60
SUM100
Language of Instruction
Turkish
Work Placement(s)
None
Workload Calculation
ActivitiesNumberTime (hours)Total Work Load (hours)
Midterm Examination111
Final Examination111
Attending Lectures14342
Report Preparation42080
Report Presentation133
Self Study14342
Individual Study for Mid term Examination12020
TOTAL WORKLOAD (hours)189
Contribution of Learning Outcomes to Programme Outcomes
PO
1
PO
2
PO
3
PO
4
PO
5
PO
6
PO
7
PO
8
PO
9
PO
10
LO13312211321
LO22312211332
LO33322212233
LO45544522434
LO54334423244
* Contribution Level : 1 Very low 2 Low 3 Medium 4 High 5 Very High
 
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