Computational Reality: Solving Nonlinear and Coupled Problems in Continuum Mechanics
Book information
Description
This book presents the theory of continuum mechanics for mechanical, thermodynamical, and electrodynamical systems. It shows how to obtain governing equations and it applies them by computing the reality. It uses only open-source codes developed under the FEniCS project and includes codes for 20 engineering applications from mechanics, fluid dynamics, applied thermodynamics, and electromagnetism. Moreover, it derives and utilizes the constitutive equations including coupling terms, which allow to compute multiphysics problems by incorporating interactions between primitive variables, namely, motion, temperature, and electromagnetic fields. An engineering system is described by the primitive variables satisfying field equations that are partial differential equations in space and time. The field equations are mostly coupled and nonlinear, in other words, difficult to solve. In order to solve the coupled, nonlinear system of partial differential equations, the book uses a novel collection of open-source packages developed under the FEniCS project. All primitive variables are solved at once in a fully coupled fashion by using finite difference method in time and finite element method in space.
Similar books
Analysis and Simulation of Multifield Problems
2003 · PDF
Meshfree Particle Methods
2004 · PDF
Mathematical Modelling in Solid Mechanics
2017 · PDF
Variational Methods in Molecular Modeling
2017 · PDF
Mathematical Analysis of Continuum Mechanics and Industrial Applications: Proceedings of the International Conference CoMFoS15
2017 · PDF
Unified Lagrangian Formulation for Fluid and Solid Mechanics, Fluid-Structure Interaction and Coupled Thermal Problems Using the PFEM
2017 · PDF
Meshfree Particle Methods
2004 · PDF
Analysis and Simulation of Multifield Problems
2003 · PDF