Multiscale Model Reduction
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Multiscale Model Reduction
Author | : Eric Chung,Yalchin Efendiev,Thomas Y. Hou |
Publsiher | : Springer Nature |
Total Pages | : 499 |
Release | : 2023-06-07 |
Genre | : Mathematics |
ISBN | : 9783031204098 |
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This monograph is devoted to the study of multiscale model reduction methods from the point of view of multiscale finite element methods. Multiscale numerical methods have become popular tools for modeling processes with multiple scales. These methods allow reducing the degrees of freedom based on local offline computations. Moreover, these methods allow deriving rigorous macroscopic equations for multiscale problems without scale separation and high contrast. Multiscale methods are also used to design efficient solvers. This book offers a combination of analytical and numerical methods designed for solving multiscale problems. The book mostly focuses on methods that are based on multiscale finite element methods. Both applications and theoretical developments in this field are presented. The book is suitable for graduate students and researchers, who are interested in this topic.
Model Reduction and Coarse Graining Approaches for Multiscale Phenomena
Author | : Alexander N. Gorban,Nikolas Kazantzis,I. G. Kevrekidis,Hans Christian Öttinger,Konstantinos Theodoropoulos |
Publsiher | : Springer Science & Business Media |
Total Pages | : 554 |
Release | : 2006-09-22 |
Genre | : Science |
ISBN | : 9783540358886 |
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Model reduction and coarse-graining are important in many areas of science and engineering. How does a system with many degrees of freedom become one with fewer? How can a reversible micro-description be adapted to the dissipative macroscopic model? These crucial questions, as well as many other related problems, are discussed in this book. All contributions are by experts whose specialities span a wide range of fields within science and engineering.
Principles of Multiscale Modeling
Author | : Weinan E |
Publsiher | : Cambridge University Press |
Total Pages | : 485 |
Release | : 2011-07-07 |
Genre | : Mathematics |
ISBN | : 9781107096547 |
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A systematic discussion of the fundamental principles, written by a leading contributor to the field.
Multiscale Modeling of Heterogeneous Structures
Author | : Jurica Sorić,Peter Wriggers,Olivier Allix |
Publsiher | : Springer |
Total Pages | : 381 |
Release | : 2017-11-30 |
Genre | : Science |
ISBN | : 9783319654638 |
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This book provides an overview of multiscale approaches and homogenization procedures as well as damage evaluation and crack initiation, and addresses recent advances in the analysis and discretization of heterogeneous materials. It also highlights the state of the art in this research area with respect to different computational methods, software development and applications to engineering structures. The first part focuses on defects in composite materials including their numerical and experimental investigations; elastic as well as elastoplastic constitutive models are considered, where the modeling has been performed at macro- and micro levels. The second part is devoted to novel computational schemes applied on different scales and discusses the validation of numerical results. The third part discusses gradient enhanced modeling, in particular quasi-brittle and ductile damage, using the gradient enhanced approach. The final part addresses thermoplasticity, solid-liquid mixtures and ferroelectric models. The contents are based on the international workshop “Multiscale Modeling of Heterogeneous Structures” (MUMO 2016), held in Dubrovnik, Croatia in September 2016.
Multiscale Modeling for Process Safety Applications
Author | : Arnab Chakrabarty,Sam Mannan,Tahir Cagin |
Publsiher | : Butterworth-Heinemann |
Total Pages | : 446 |
Release | : 2015-11-29 |
Genre | : Technology & Engineering |
ISBN | : 9780123972835 |
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Multiscale Modeling for Process Safety Applications is a new reference demonstrating the implementation of multiscale modeling techniques on process safety applications. It is a valuable resource for readers interested in theoretical simulations and/or computer simulations of hazardous scenarios. As multi-scale modeling is a computational technique for solving problems involving multiple scales, such as how a flammable vapor cloud might behave if ignited, this book provides information on the fundamental topics of toxic, fire, and air explosion modeling, as well as modeling jet and pool fires using computational fluid dynamics. The book goes on to cover nanomaterial toxicity, QPSR analysis on relation of chemical structure to flash point, molecular structure and burning velocity, first principle studies of reactive chemicals, water and air reactive chemicals, and dust explosions. Chemical and process safety professionals, as well as faculty and graduate researchers, will benefit from the detailed coverage provided in this book. Provides the only comprehensive source addressing the use of multiscale modeling in the context of process safety Bridges multiscale modeling with process safety, enabling the reader to understand mapping between problem detail and effective usage of resources Presents an overall picture of addressing safety problems in all levels of modeling and the latest approaches to each in the field Features worked out examples, case studies, and a question bank to aid understanding and involvement for the reader
Fundamentals of Multiscale Modeling of Structural Materials
Author | : Wenjie Xia,Luis Alberto Ruiz Pestana |
Publsiher | : Elsevier |
Total Pages | : 450 |
Release | : 2022-11-26 |
Genre | : Technology & Engineering |
ISBN | : 9780128230534 |
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Fundamentals of Multiscale Modeling of Structural Materials provides a robust introduction to the computational tools, underlying theory, practical applications, and governing physical phenomena necessary to simulate and understand a wide-range of structural materials at multiple time and length scales. The book offers practical guidelines for modeling common structural materials with well-established techniques, outlining detailed modeling approaches for calculating and analyzing mechanical, thermal and transport properties of various structural materials such as metals, cement/concrete, polymers, composites, wood, thin films, and more.Computational approaches based on artificial intelligence and machine learning methods as complementary tools to the physics-based multiscale techniques are discussed as are modeling techniques for additively manufactured structural materials. Special attention is paid to how these methods can be used to develop the next generation of sustainable, resilient and environmentally-friendly structural materials, with a specific emphasis on bridging the atomistic and continuum modeling scales for these materials. Synthesizes the latest cutting-edge computational multiscale modeling techniques for an array of structural materials Emphasizes the foundations of the field and offers practical guidelines for modeling material systems with well-established techniques Covers methods for calculating and analyzing mechanical, thermal and transport properties of various structural materials such as metals, cement/concrete, polymers, composites, wood, and more Highlights underlying theory, emerging areas, future directions and various applications of the modeling methods covered Discusses the integration of multiscale modeling and artificial intelligence
Multiscale Modeling Simulation and Visualization and Their Potential for Future Aerospace Systems
Author | : Anonim |
Publsiher | : Unknown |
Total Pages | : 462 |
Release | : 2002 |
Genre | : Composite materials |
ISBN | : PSU:000049491036 |
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An Introduction to multiscale modeling with applications
Author | : Pietro Asinari,Eliodoro Chiavazzo |
Publsiher | : Società Editrice Esculapio |
Total Pages | : 372 |
Release | : 2019-01-01 |
Genre | : Science |
ISBN | : 9788829589111 |
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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).