Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Graduate School of Sciences
  • Departman of Rail Transport Engineering
  • Rail Transport Engineering Master with Thesis
  • Course Structure Diagram with Credits
  • Advanced Finite Element Analys
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

Course Introduction Information

Code - Course Title RYL564 - Advanced Finite Element Analys
Course Type Elective Courses
Language of Instruction Türkçe
Laboratory + Practice 3+0
ECTS 7.5
Course Instructor(s) DOKTOR ÖĞRETİM ÜYESİ ÖZGÜN SUNAR
Mode of Delivery face-to-face
Prerequisites
Courses Recomended
Required or Recommended Resources Thomas Apel Olaf Steinbach, Advanced Finite Element Methods and Applications, Springer Berlin, Heidelberg, 2013, https://doi.org/10.1007/978-3-642-30316-6
Recommended Reading List [1] Bhavikatti, S. S. Finite element analysis. New Age International, 2005.[2] Segerlind, Larry J. Applied finite element analysis. John Wiley & Sons, 1991.[3] Dar, Fazilat H., Judith R. Meakin, and Richard M. Aspden. "Statistical methods in finite element analysis." Journal of biomechanics 35.9 (2002): 1155-1161.[4] Srirekha, A., and Kusum Bashetty. "Infinite to finite: an overview of finite element analysis." Indian Journal of Dental Research 21.3 (2010): 425.[5] Szabó, Barna, and Ivo Babuška. "Finite Element Analysis: Method, Verification and Validation." (2021)[6] Kim, Nam-Ho, Bhavani V. Sankar, and Ashok V. Kumar. Introduction to finite element analysis and design. John Wiley & Sons, 2018.[7] SUNAR, Özgün, and Mehmet ÇEVİK. "fatigue analysis of single leaf springs with finite element method." Celal Bayar University Journal of Science 11.1 (2015): 1-6.
Assessment methods and criteria 1 Midterm 1 Final and 1 Project
Work Placement
Sustainability Development Goals

Content

Weeks Topics
Week - 1 Fundamental principles of Finite Element Analysis
Week - 2 Finite Element Software and Properties
Week - 3 Modelling and Boundary Conditions
Week - 4 Element Types and Mesh Methods
Week - 5 Linear Finite Element Analysis
Week - 6 Non-Linear Finite Element Analysis
Week - 7 Non-Linear Elastic and Electroplastic Analysis
Week - 8 Contact Types and Submodelling Techniques
Week - 9 Transient Finite Element Analysis
Week - 10 Mesh Quality Control and Convergence Analysis
Week - 11 Transient Thermal Analysis Applications
Week - 12 Transient Structural Analysis Applications
Week - 13 Modal Analysis Applications

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Discussion
  • Question & Answer
  • Team/Group Work
  • Demonstration
  • Drill - Practise
  • Case Study
  • Problem Solving
  • Brain Storming
  • Report Preparation and/or Presentation
  • Competences
  • Productive
  • True to core values
  • Rational
  • Questoning
  • Entrepreneur
  • Creative
  • Follow ethical and moral rules
  • Effective use of a foreign language
  • Work in teams
  • Use time effectively
  • Eleştirel düşünebilme
  • Abstract analysis and synthesis
  • Problem solving
  • Applying theoretical knowledge into practice
  • Concern for quality
  • Information Management
  • To work autonomously
  • Organization and planning
  • Elementary computing skills
  • Decision making
  • To work in interdisciplinary projects
  • Project Design and Management
  • Leadership
  • To work in international projects

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 40
Final Exam 1 60
Toplam (%) 100
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