Multiscale Thermo-Dynamics

Multiscale Thermo-Dynamics
Title Multiscale Thermo-Dynamics PDF eBook
Author Michal Pavelka
Publisher Walter de Gruyter GmbH & Co KG
Pages 294
Release 2018-08-06
Genre Science
ISBN 3110350955

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One common feature of new emerging technologies is the fusion of the very small (nano) scale and the large scale engineering. The classical environment provided by single scale theories, as for instance by the classical hydrodynamics, is not anymore satisfactory. The main challenge is to keep the important details while still be able to keep the overall picture and simplicity. It is the thermodynamics that addresses this challenge. Our main reason for writing this book is to explain such general viewpoint of thermodynamics and to illustrate it on a very wide range of examples. Contents Levels of description Hamiltonian mechanics Irreversible evolution Reversible and irreversible evolution Multicomponent systems Contact geometry Appendix: Mathematical aspects

An Introduction to multiscale modeling with applications

An Introduction to multiscale modeling with applications
Title An Introduction to multiscale modeling with applications PDF eBook
Author Pietro Asinari
Publisher Società Editrice Esculapio
Pages 372
Release 2019-01-01
Genre Science
ISBN 882958911X

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This book collects the slides prepared for the course of Advanced Engineering Thermodynamics (Master of Science in Mechanical Engineering) and those for the course of Multiscale Modelling and Simulation of Molecular and Mesoscopic Dynamics (PhD Program in Energetics), taught in English at Turin Polytechnic. Here, we provide a broad overview on the different topics taught in our classes. Even though not all topics are presented in the same class, students should be able to more easily reconstruct the connections among different phenomena (and scales), build their own mind map and, eventually, find their own way of deepening the subjects they are more interested in. Several engineering applications have been included. This helps in stressing that very different phenomena are described by transport theory and obey the same underlying fundamental laws of engineering thermodynamics. Detailed tutorials are reported, based on open-source codes for the laboratories (Gromacs, Palabos, OpenFoam and Cantera).

Multiscale Thermodynamics of Charged Mixtures

Multiscale Thermodynamics of Charged Mixtures
Title Multiscale Thermodynamics of Charged Mixtures PDF eBook
Author Petr Vágner
Publisher
Pages
Release 2020
Genre
ISBN

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A multiscale theory of interacting continuum mechanics and thermodynamics of mixtures of fluids, electrodynamics, polarization and magnetization is proposed. The mechanical (reversible) part of the theory is constructed in a purely geometric way by means of semidirect products. This leads to a complex Hamiltonian system with a new Poisson bracket, which can be used in principle with any energy functional. The thermodynamic (irreversible) part is added as gradient dynamics, generated by derivatives of a dissipation potential, which makes the theory part of the GENERIC framework. Subsequently, Dynamic MaxEnt reductions are carried out, which lead to reduced GENERIC models for smaller sets of state variables. Eventually, standard engineering models are recovered as the low-level limits of the detailed theory. The theory is then compared to recent literature.

Continuum Mechanics and Thermodynamics

Continuum Mechanics and Thermodynamics
Title Continuum Mechanics and Thermodynamics PDF eBook
Author Ellad B. Tadmor
Publisher Cambridge University Press
Pages 373
Release 2012
Genre Science
ISBN 1107008263

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Treats subjects directly related to nonlinear materials modeling for graduate students and researchers in physics, materials science, chemistry and engineering.

Beyond Equilibrium Thermodynamics

Beyond Equilibrium Thermodynamics
Title Beyond Equilibrium Thermodynamics PDF eBook
Author Hans Christian Öttinger
Publisher John Wiley & Sons
Pages 651
Release 2005-05-13
Genre Technology & Engineering
ISBN 0471727911

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Beyond Equilibrium Thermodynamics fills a niche in the market by providing a comprehensive introduction to a new, emerging topic in the field. The importance of non-equilibrium thermodynamics is addressed in order to fully understand how a system works, whether it is in a biological system like the brain or a system that develops plastic. In order to fully grasp the subject, the book clearly explains the physical concepts and mathematics involved, as well as presenting problems and solutions; over 200 exercises and answers are included. Engineers, scientists, and applied mathematicians can all use the book to address their problems in modelling, calculating, and understanding dynamic responses of materials.

Multiscale Modeling

Multiscale Modeling
Title Multiscale Modeling PDF eBook
Author Pedro Derosa
Publisher CRC Press
Pages 310
Release 2010-12-09
Genre Science
ISBN 1439810400

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While the relevant features and properties of nanosystems necessarily depend on nanoscopic details, their performance resides in the macroscopic world. To rationally develop and accurately predict performance of these systems we must tackle problems where multiple length and time scales are coupled. Rather than forcing a single modeling approach to

Computational Multiscale Modeling of Fluids and Solids

Computational Multiscale Modeling of Fluids and Solids
Title Computational Multiscale Modeling of Fluids and Solids PDF eBook
Author Martin Oliver Steinhauser
Publisher Springer
Pages 419
Release 2016-11-29
Genre Science
ISBN 3662532247

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The idea of the book is to provide a comprehensive overview of computational physics methods and techniques, that are used for materials modeling on different length and time scales. Each chapter first provides an overview of the basic physical principles which are the basis for the numerical and mathematical modeling on the respective length-scale. The book includes the micro-scale, the meso-scale and the macro-scale, and the chapters follow this classification. The book explains in detail many tricks of the trade of some of the most important methods and techniques that are used to simulate materials on the perspective levels of spatial and temporal resolution. Case studies are included to further illustrate some methods or theoretical considerations. Example applications for all techniques are provided, some of which are from the author’s own contributions to some of the research areas. The second edition has been expanded by new sections in computational models on meso/macroscopic scales for ocean and atmosphere dynamics. Numerous applications in environmental physics and geophysics had been added.