MAE 5700

MAE 5700

Course information provided by the Courses of Study 2023-2024.

Introduction to linear finite element static analysis for discrete and distributed mechanical and aerospace structures. Prediction of load, deflection, stress, strain, and temperature distributions. Major emphasis on underlying mechanics and mathematical formulation. Introduction to computational aspects via educational and commercial software (such as MATLAB and ANSYS). Selected mechanical and aerospace applications in the areas of trusses, beams, frames, heat transfer and elasticity. A selection of advanced topics such as dynamic modal analysis, transient heat transfer, or design optimization techniques may also be covered, time permitting.

When Offered Fall.

Permission Note Enrollment limited to: graduate students in Engineering or permission of instructor.

Comments Requires additional programming assignment.

Outcomes
  • Students will be able to recall, identify, and analyze the mathematical and physical principles underlying the FEM as applied to solid mechanics, thermal analysis and select aspects of fluid mechanics.
  • Students will be able to develop their own FEM computer programs, for mathematically simple but physically challenging problems, in MATLAB.
  • Students will be able to compare FEM results obtained with MATLAB with those obtained from ANSYS. Analyze more complex problems (in solid mechanics or thermal analysis) using the commercial FEM code ANSYS.
  • Students will be able to demonstrate the ability to design a component using FEM analysis (both MATLAB AND ANSYS).
  • Students will be able to make clear and effective technical presentations, both in terms of form as well as content, of his/her work and write clear technical reports describing his/her work.

View Enrollment Information

Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one laboratory. Combined with: MAE 4700

  • 4 Credits Graded

  •  7776 MAE 5700   LEC 001

  • Instruction Mode: In Person
    Grad version of MAE 4700.

  •  8260 MAE 5700   LAB 411

    • F Upson Hall 225
    • Aug 21 - Dec 4, 2023
    • Bouklas, N

  • Instruction Mode: In Person

  • 12081 MAE 5700   LAB 412

  • Instruction Mode: Distance Learning-Asynchronous

Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one laboratory.

  • 4 Credits Graded

  • 12105 MAE 5700   LEC 002

  • Instruction Mode: Distance Learning-Asynchronous

  • 12106 MAE 5700   LAB 413

  • Instruction Mode: Distance Learning-Asynchronous