Multiscale Materials Modeling: Approaches to Full Multiscaling, Siegfried Schmauder, Immanuel Sch?fer
Автор: Pavliotis Название: Multiscale Methods ISBN: 0387738282 ISBN-13(EAN): 9780387738284 Издательство: Springer Рейтинг: Цена: 9781.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The book is meant to be an introduction, aimed primarily towards graduate students. Part I of the book (theoretical foundations) and Part III of the book (proving theorems concerning simplified versions of the models that are studied in Part II) are necessarily terse and present the wide range of applications of the ideas, and illustrate their unity. The subject matter in these set of notes has, for the most part, been known for several decades. However, the particular presentation of the material here is particularly suited to the pedagogical goal of communicating the subject area to the wide range of mathematicians, scientists and engineers who are currently engaged in the use of these tools to tackle the enormous range of applications that require them.Extensions and generalizations of the results presented in these notes, as well as references to the literature, are given in the Discussion and Bibliography section, at the end of each chapter. With the exception of Chapter 1, all chapters are supplemented with exercises.
Автор: Weinberger Название: Multiscale Materials Modeling for Nanomechanics ISBN: 3319334786 ISBN-13(EAN): 9783319334783 Издательство: Springer Рейтинг: Цена: 17468.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book presents a unique combination of chapters that togetherprovide a practical introduction to multiscale modeling applied to nanoscalematerials mechanics. The goal of this book is to present a balancedtreatment of both the theory of the methodology, as well as some practicalaspects of conducting the simulations and models. The first half of thebook covers some fundamental modeling and simulation techniques ranging from ab-inito methods to the continuum scale.Included in this set of methods are several different concurrent multiscalemethods for bridging time and length scales applicable to mechanics at the nanoscaleregime. The second half of the book presents a range of casestudies from a varied selection of research groups focusing either on a the applicationof multiscale modeling to a specific nanomaterial, or novel analysis techniquesaimed at exploring nanomechanics. Readers are also directed tohelpful sites and other resources throughout the book where the simulationcodes and methodologies discussed herein can be accessed. Emphasis on thepracticality of the detailed techniques is especially felt in the latter halfof the book, which is dedicated to specific examples to studynanomechanics and multiscale materials behavior. An instructive avenue forlearning how to effectively apply these simulation tools to solve nanomechanicsproblems is to study previous endeavors. Therefore, each chapter iswritten by a unique team of experts who have used multiscale materials modelingto solve a practical nanomechanics problem. These chapters provide an extensivepicture of the multiscale materials landscape from problem statement throughthe final results and outlook, providing readers with a roadmap forincorporating these techniques into their own research.
Автор: Sagaut Pierre Название: Multiscale and Multiresolution Approaches in Turbulence ISBN: 1848169868 ISBN-13(EAN): 9781848169869 Издательство: World Scientific Publishing Рейтинг: Цена: 22176.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Aims to provide the reader with a general presentation of multiscale/multiresolution approaches in turbulent flow simulations. In this book, all modern approaches (LES, hybrid RANS/LES, DES, SAS) are discussed and recast in a global comprehensive framework.
Описание: Integrating macroscopic properties with observations at lower levels, this book details advances in multiscale modelling and analysis pertaining to classes of composites which either have a wider range of relevant microstructural scales, such as metals, or do not have a very well-defined microstructure, e.g.
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