Course detail
Application of FEM
FSI-KAMAcad. year: 2026/2027
The subject is focused mainly on practical tasks; routine control calculations when designing a device and finding causes for damage to already operated devices. Students will learn the principles of model preparation and the method of evaluating the results of analyzes that comply with standards (EN 13445, Eurocodes, ASME BPVC) in case studies where practical devices have been analyzed. Analyzes will be performed using ANSYS Workbench software.
Language of instruction
Number of ECTS credits
Assignment to study programme types
Mode of study
Guarantor
Department
Entry knowledge
Rules for evaluation and completion of the course
The attendance at exercises is compulsory and an absence will be compensated by self-study of the missed topic.
Aims
Students will deepen the skills of appropriate MLP applications in designing new devices, determining the residual life of already operated devices, and finding the causes of damage to inappropriately functioning devices. They will be able to choose a suitable standard, meet its numerical analysis requirements, and control relevant methods for evaluating results. Practical knowledge of workflows in ANSYS Workbench software can be easily applied when using any MKP software.
Study aids
Prerequisites and corequisites
Basic literature
K. L. Lawrence, ANSYS Workbench tutorial: structural & thermal analysis using the ANSYS Workbench release 14 environment. Mission, Kan: SDC Publ., Schroff Development Corporation, 2012. (EN)
Lee, Finite element simulations with ANSYS workbench 14: [theory, applications, case studies]. Mission, Kan: Schroff Development Corp, 2012. (EN)
S. Tickoo, Ansys workbench 14.0: a tutorial approach. S.l.: Cadcim Technologies, 2012. (EN)
Recommended reading
Classification of course in study plans
Type of course unit
Computer-assisted exercise
Teacher / Lecturer
Syllabus
Week 1 – Theoretical Introduction to the Finite Element Method (FEM)
-
Introduction to the ANSYS software environment
-
Program operation and controls
-
Geometry creation
-
Working with the model
-
Practice example
Week 2 – Model Meshing
-
Options for defining material properties
-
Defining boundary conditions
-
Practice example
Week 3 – Solver Module
-
Evaluation of analysis results
-
Solving structural problems
Week 4 – Work on Individual Project
Week 5 – Contact Problem Solutions
-
Modal analysis
Week 6 – Practical Problem Solving
-
Calculation of a gas mixer
Week 7 – Practical Problem Solving
-
Calculation of a gas mixer
Week 8 – Practical Problem Solving
-
Calculation of a gas mixer
Week 9 – Practical Problem Solving
-
Calculation of a gas mixer
Week 10 – Design Optimization
Week 11 – Flanged Joint Analysis
Week 12 – Flanged Joint Analysis
Week 13 – Flanged Joint Analysis