Book > Methods Of Fundamental Solutions In Solid Mechanics

Methods of Fundamental Solutions in Solid Mechanics

Methods of Fundamental Solutions in Solid Mechanics

Detail Book : Methods of Fundamental Solutions in Solid Mechanics written by Hui Wang, published by Elsevier which was released on 06 June 2019. Download Methods of Fundamental Solutions in Solid Mechanics Books now! Available in PDF, ePub and Kindle. Methods of Fundamental Solutions in Solid Mechanics presents the fundamentals of continuum mechanics, the foundational concepts of the MFS, and methodologies and applications to various engineering problems. Eight chapters give an overview of meshless methods, the mechanics of solids and structures, the basics of fundamental solutions and radical basis functions, meshless analysis for thin beam bending, thin plate bending, two-dimensional elastic, plane piezoelectric problems, and heat transfer in heterogeneous media. The book presents a working knowledge of the MFS that is aimed at solving real-world engineering problems through an understanding of the physical and mathematical characteristics of the MFS and its applications. Explains foundational concepts for the method of fundamental solutions (MFS) for the advanced numerical analysis of solid mechanics and heat transfer Extends the application of the MFS for use with complex problems Considers the majority of engineering problems, including beam bending, plate bending, elasticity, piezoelectricity and heat transfer Gives detailed solution procedures for engineering problems Offers a practical guide, complete with engineering examples, for the application of the MFS to real-world physical and engineering challenges

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Author : Hui Wang
Release Date : 06 June 2019
Publisher : Elsevier
Rating : 4/5 (from 21 users)
Pages : 312
ISBN : 0128182849
Format : PDF, ePUB, KF8, PDB, MOBI, Tuebl
Methods of Fundamental Solutions in Solid Mechanics

Methods of Fundamental Solutions in Solid Mechanics

Methods of Fundamental Solutions in Solid Mechanics presents the fundamentals of continuum mechanics, the foundational concepts of the MFS, and methodologies and applications to various engineering problems. Eight chapters give an overview of meshless methods, the mechanics of solids and structures, the basics of fundamental solutions and radical basis functions,

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Recent Developments in Boundary Element Methods

Recent Developments in Boundary Element Methods

This Festschrift is a collection of articles contributed by colleagues, collaborators and past students to honor Professor John T. Katsikadelis on the occasion of his 70 years. Professor Katsikadelis, now an emeritus professor at the National Technical University of Athens in Greece, is one of the BEM pioneers who started his

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Engineering Solid Mechanics

Engineering Solid Mechanics

Engineering Solid Mechanics bridges the gap between elementary approaches to strength of materials and more advanced, specialized versions on the subject. The book provides a basic understanding of the fundamentals of elasticity and plasticity, applies these fundamentals to solve analytically a spectrum of engineering problems, and introduces advanced topics of

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Foundations of Solid Mechanics

Foundations of Solid Mechanics

This book has been written with two purposes, as a textbook for engineering courses and as a reference book for engineers and scientists. The book is an outcome of several lecture courses. These include lectures given to graduate students at the Asian Institute of Technology for several years, a course

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Meshless Methods in Solid Mechanics

Meshless Methods in Solid Mechanics

This book covers the fundamentals of continuum mechanics, the integral formulation methods of continuum problems, the basic concepts of finite element methods, and the methodologies, formulations, procedures, and applications of various meshless methods. It also provides general and detailed procedures of meshless analysis on elastostatics, elastodynamics, non-local continuum mechanics and

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Intermediate Solid Mechanics

Intermediate Solid Mechanics

A concise yet comprehensive treatment of the fundamentals of solid mechanics, including solved examples, exercises, and homework problems.

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Applied Mechanics of Solids

Applied Mechanics of Solids

Modern computer simulations make stress analysis easy. As they continue to replace classical mathematical methods of analysis, these software programs require users to have a solid understanding of the fundamental principles on which they are based.Develop Intuitive Ability to Identify and Avoid Physically Meaningless PredictionsApplied Mechanics o

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Computational Methods in Solid Mechanics

Computational Methods in Solid Mechanics

This volume presents an introduction to the three numerical methods most commonly used in the mechanical analysis of deformable solids, viz. the finite element method (FEM), the linear iteration method (LIM), and the finite difference method (FDM). The book has been written from the point of view of simplicity and

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Fundamental Solutions in Elastodynamics

Fundamental Solutions in Elastodynamics

This work contains fundamental solutions for classical, canonical, elastodynamics problems using common format and notation.

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Fundamentals of the Three Dimensional Theory of Stability of Deformable Bodies

Fundamentals of the Three Dimensional Theory of Stability of Deformable Bodies

At the present time stability theory of deformable systems has been developed into a manifold field within solid mechanics with methods, techniques and approaches of its own. We can hardly name a branch of industry or civil engineering where the results of the stability theory have not found their application.

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IUTAM Symposium on Anisotropy  Inhomogeneity and Nonlinearity in Solid Mechanics

IUTAM Symposium on Anisotropy Inhomogeneity and Nonlinearity in Solid Mechanics

Proceedings of the IUTAM-ISIMM Symposium, held in Nottingham, U.K., 30 August--3 September 1994

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Boundary Element Advances in Solid Mechanics

Boundary Element Advances in Solid Mechanics

This volume presents and discusses recent advances in boundary element methods and their solid mechanics applications. It illustrates these methods in their latest forms, developed during the last five to ten years, and demonstrates their advantages in solving a wide range of solid mechanics problems.

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Fundamental Solutions for Differential Operators and Applications

Fundamental Solutions for Differential Operators and Applications

A self-contained and systematic development of an aspect of analysis which deals with the theory of fundamental solutions for differential operators, and their applications to boundary value problems of mathematical physics, applied mathematics, and engineering, with the related computational aspects.

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Boundary Element Methods in Applied Mechanics

Boundary Element Methods in Applied Mechanics

This Proceedings features a broad range of computational mechanics papers on both solid and fluid mechanics as well as electromagnetics, acoustics, heat transfer and other interdisciplinary problems. Topics covered include theoretical developments, numerical analysis, intelligent and adaptive solution strategies and practical applications.

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Fundamentals of Structural Mechanics

Fundamentals of Structural Mechanics

A solid introduction to basic continuum mechanics, emphasizing variational formulations and numeric computation. The book offers a complete discussion of numerical method techniques used in the study of structural mechanics.

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