Applications of homogenization theory to the study of mineralized tissue
tarafından
 
Gilbert, Robert P., 1932- author.

Başlık
Applications of homogenization theory to the study of mineralized tissue

Yazar
Gilbert, Robert P., 1932- author.

ISBN
9780429533242
 
9780429143380
 
9780429547942
 
9781584887928

Basım Bilgisi
1st.

Fiziksel Tanımlama
1 online resource : illustrations (black and white).

Seri
Chapman & Hall/CRC Monographs and Research Notes in Mathematics

Genel Not

Introductory Remarks

Some Functional Spaces

Variational Formulation

Geometry of Two Phase Composite

Two-scale Convergence Method

The Concept of a Homogenized Equation

Two-Scale convergence with time dependence

Potential and Solenoidal Fields

The Homogenization Technique Applied to Soft Tissue

Homogenization of Soft Tissue

Galerkin approximations

Derivation of the effective equation of U0

Acoustics in Porous Media

Introduction

Diphasic Macroscopic Behavior

Well-posedness for problem (3.2.49 and 3.2.55)

The slightly compressible di-phasic behavior

Wet Ionic, Piezo-electric Bone

Introduction

Wet bone with ionic interaction

Homogenization using Formal Power Series

Wet bone without ionic interaction

Electrodynamics

Visco-elasticity and Contact Friction Between the Phases

Kelvin-Voigt Material

Rigid Particles in a Visco-elastic Medium

Equations of motion and contact conditions

Two-scale expansions and formal homogenization

Model case I: Linear contract conditions

Model case II: Quadratic contract conditions

Model case III: Power type contact condition

Acoustics in a Random Microstructure

Introduction

Stochastic Two-scale limits

Periodic Approximation

Non-Newtonian Interstitial Fluid

The Slightly Compressible Polymer. Microscale Problem

A Priori Estimates

Two-Scale System

Description of the effective stress

Effective equations

Multiscale FEM for the modeling of cancellous bone

Concept of the multiscale FEM

Microscale: Modeling of the RVE and calculation of the effective material properties

Macroscale: Simulation of the ultrasonic test

Simplified version of the RVE and comparison with the experimental results

Anisotropy of cancellous bone

Investigation of the influence of reflection on the attenuation of cancellous bone

Determination of the geometry of the RVE for cancellous bone by using the effective complex shear modulus

G-convergence and Homogenization of Viscoelastic Flows

Introduction

Main definitions. Corrector operators for G-convergence

A scalar elliptic equation in divergence form

Homogenization of two-phase visco-elastic flows with time-varying interface

Main theorem and outline of the proof

Corrector operators and oscillating test functions

Inertial terms in the momentum balance equation

Effective deviatoric stress. Proof of the main theorem

Fluid-structure interaction

Biot Type Models for Bone Mechanics

Bone Rigidity

Anisotropic Biot Systems

The Case of a non-Newtonian Interstitial Fluid

Some Time-Dependent Solutions to the Biot System

Creation of RVE for Bone Microstructure

The RVE Model

Reformulation as a Graves-like scheme

Absorbring boundary condition-perfectly matched layer

Discretized systems

Bone Growth and Adaptive Elasticity

The Model

Scalings of Unknowns

Asymptotic Solutions

Further Reading


Konu Terimleri
Homogenization (Differential equations)
 
Biology -- Mathematical models.
 
Physical sciences -- Mathematical models.
 
MATHEMATICS / Differential Equations
 
MATHEMATICS / Applied

Yazar Ek Girişi
Vasilic, Ana,
 
Klinge, Sandra,
 
Panchenko, Alex (Alexander),
 
Hackl, K. (Klaus),

Elektronik Erişim
Taylor & Francis https://www.taylorfrancis.com/books/9780429143380
 
OCLC metadata license agreement http://www.oclc.org/content/dam/oclc/forms/terms/vbrl-201703.pdf


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