Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D,...

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Continuum Simulation Monday, 9/30/2002

Transcript of Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D,...

Page 1: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Continuum Simulation

Monday, 9/30/2002

Page 2: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Class ProgressVisualization: abstract concept (stress,2D, 3D), mechanical fieldStochastic simulations: random walk, Brownian movementMonte Carlo method (MC) EnsembleMolecular Dynamics (MD) Trajectory

Multiscale simulationAdaptive Mesh Refinement/Coarsening; Renormalization

Continuum simulationFinite Element Method (FEM); Material Point Method (MPM)

Page 3: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Continuum vs. Atomistic

Continuum Atomistic

Matter Indefinitely divisible

Atom aggregate

Interaction Stress; strain Interatomic force

Model Constitutive model

Potential model

Page 4: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Continuum Problems

σij, j +bi =ρai

Equilibrium equations:

Material constitutive equations (linear):

σij =Eijklεkl

Boundary conditions

Page 5: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Discretization inFinite Element Method (FEM)

The basic concept is that a body or structure may be divided into smaller elements.

Page 6: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Discretization in Material Point Method (MPM)

Solid line is an outline of the body analyzed.Black dots are the material points.Dashed lines show a regular, background grid for calculation.

Page 7: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Lagrangian & Eulerian Description

Lagrangian: quantities like position, velocity, stress, are given for a particular moving particle at varying times.

Eulerian:the velocities are given at fixed points in space as time varies. Imagine a case where both the measuring device and the frame of reference are fixed.

Page 8: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Approximation to Region

MPM FEM

Page 9: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

FEM Simulation ofCrack Tip Process

Page 10: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

MPM Simulation ofCrack Tip Process

Page 11: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

Adaptive Mesh Refinement/Coarsening

Page 12: Continuum Simulation Monday, 9/30/2002. Class Progress Visualization: abstract concept (stress,2D, 3D), mechanical field Stochastic simulations: random.

MPM Simulation ofFragmentation