Smooth Particle Applied Mechanics The State Of The Art


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Smooth Particle Applied Mechanics: The State Of The Art


Smooth Particle Applied Mechanics: The State Of The Art

Author: William Graham Hoover

language: en

Publisher: World Scientific

Release Date: 2006-11-02


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This book takes readers through all the steps necessary for solving hard problems in continuum mechanics with smooth particle methods. Pedagogical problems clarify the generation of initial conditions, the treatment of boundary conditions, the integration of the equations of motion, and the analysis of the results. Particular attention is paid to the parallel computing necessary for large problems and to the graphic displays, including debugging software, required for the efficient completion of computational projects.The book is self-contained, with summaries of classical particle mechanics and continuum mechanics for both fluids and solids, computer languages, the stability of numerical methods, Lyapunov spectra, and message-passing parallel computing. The main difficulties faced by meshless particle methods are discussed and the means of overcoming them are illustrated with worked examples.

Microscopic And Macroscopic Simulation Techniques: Kharagpur Lectures


Microscopic And Macroscopic Simulation Techniques: Kharagpur Lectures

Author: William Graham Hoover

language: en

Publisher: World Scientific

Release Date: 2018-03-13


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This book aims to provide an example-based education in numerical methods for atomistic and continuum simulations of systems at and away from equilibrium. The focus is on nonequilibrium systems, stressing the use of tools from dynamical systems theory for their analysis. Lyapunov instability and fractal dimensionality are introduced and algorithms for their analysis are detailed. The book is intended to be self-contained and accessible to students who are comfortable with calculus and differential equations.The wide range of topics covered will provide students, researchers and academics with effective tools for formulating and solving interesting problems, both atomistic and continuum. The detailed description of the use of thermostats to control nonequilibrium systems will help readers in writing their own programs rather than being saddled with packaged software.

Multiscale Modeling and Simulation of Shock Wave-Induced Failure in Materials Science


Multiscale Modeling and Simulation of Shock Wave-Induced Failure in Materials Science

Author: Martin Oliver Steinhauser

language: en

Publisher: Springer

Release Date: 2018-02-24


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Martin Oliver Steinhauser deals with several aspects of multiscale materials modeling and simulation in applied materials research and fundamental science. He covers various multiscale modeling approaches for high-performance ceramics, biological bilayer membranes, semi-flexible polymers, and human cancer cells. He demonstrates that the physics of shock waves, i.e., the investigation of material behavior at high strain rates and of material failure, has grown to become an important interdisciplinary field of research on its own. At the same time, progress in computer hardware and software development has boosted new ideas in multiscale modeling and simulation. Hence, bridging the length and time scales in a theoretical-numerical description of materials has become a prime challenge in science and technology.