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This course introduces finite element methods for the analysis of solid, structural, fluid, field, and heat transfer problems

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English

English [CC]

FREE

Description

Steady-state, transient, and dynamic conditions are considered. Finite element methods and solution procedures for linear and nonlinear analyses are presented using largely physical arguments. The homework and a term project (for graduate students) involve use of the general purpose finite element analysis program ADINA. Applications include finite element analyses, modeling of problems, and interpretation of numerical results.

Course content

  • Introduction: why to study FEA Unlimited
  • The finite element analysis process Unlimited
  • Analysis of solids/structures and fluids Unlimited
  • The principle of virtual work Unlimited
  • The finite element formulation Unlimited
  • Finite element solution process Unlimited
  • Finite element solution process, cont’d Unlimited
  • Nonlinear finite element analysis of solids and structures Unlimited
  • Heat transfer analysis Unlimited
  • Finite element analysis of heat transfer and incompressible fluid flow Unlimited
  • Physical explanation of Gauss elimination Unlimited
  • Solution of dynamic equilibrium equations Unlimited
  • Solution of dynamic equilibrium equations, cont’d Unlimited
  • Modeling for dynamic analysis and solution Unlimited
  • Modeling for dynamic analysis and solution, cont’d Unlimited
  • Wave propagation response Unlimited
  • Solution of the generalized eigenvalue problem Unlimited
  • Solution of Kφ = λMφ Unlimited

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Instructor

Massachusetts Institute of Technology
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