AE3781- Computational Analysis Laboratory Syllabus Regulation 2021 Anna University

Regulation 2021, Anna University Subject code – AE3781 deals with B.E Aeronautical Engineering 4th year semester VII Computational Analysis Laboratory Syllabus. To prepare for challenging subjects in the field of Aeronautics need a detailed syllabus and preparation strategies. In this article, we discuss the Computational Analysis Laboratory syllabus.

We intend to provide every topic of the syllabus and content required for academic performance, along with reference books. In this article, AE3781 – Computational Analysis Laboratory Syllabus, you will be guided to get an idea of each topic of the syllabus and you can make your preparation strategy, and notes by filtering difficult topics from the different subjects. Then you can concentrate on the topic where you need to focus more. We included all the topics regarding the Aeronautical syllabus. We hope this information is useful to you. Don’t forget to share it with your friends and classmates.

If you want to know more about the syllabus of B.E Computer Science and Engineering connected to an affiliated institution’s under four-year undergraduate degree programme. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link B.E Aeronautical Engineering Syllabus Anna University, Regulation 2021.

Aim Of Concept:

To familiarize with

  • The stress distribution
  • Meshing of various geometries
  • Variation of mechanical properties on different load conditions,
  • Flow analysis, and
  • Thermal analysis.

AE3781- Computational Analysis Laboratory Syllabus

List Of Experiments:

  1. Grid independence study and convergence test using any simple case like cylinder
  2. Simulation of flow over an aero foil
  3. Simulation of flow over backward facing step.
  4. Simulation of Karman vortex trail (vortex shedding) using circular cylinder.
  5. External flow simulation of subsonic and supersonic aero foils.
  6. Internal flow simulation of subsonic, sonic and supersonic flow through a CD nozzle.
  7. Structural analysis of bar and beam
  8. Structural analysis of truss.
  9. Structural analysis of tapered wing.
  10. Structural analysis of fuselage structure.
  11. Analysis of composite laminate structures.
  12. Heat transfer analysis of structures.

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