The Boundary Integral Equation Method in Axisymmetric Stress Analysis Problems

The Boundary Integral Equation Method in Axisymmetric Stress Analysis Problems PDF Author: A. A. Bakr
Publisher: Springer Verlag
ISBN: 9780387160306
Category : Technology & Engineering
Languages : en
Pages : 0

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The Boundary Integral Equation Method in Axisymmetric Stress Analysis Problems

The Boundary Integral Equation Method in Axisymmetric Stress Analysis Problems PDF Author: A. A. Bakr
Publisher: Springer Verlag
ISBN: 9780387160306
Category : Technology & Engineering
Languages : en
Pages : 0

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The Boundary Integral Equatio Method in Axisymmetric Stress Analysis Problems

The Boundary Integral Equatio Method in Axisymmetric Stress Analysis Problems PDF Author: Adib A. Bakr
Publisher: Springer Science & Business Media
ISBN: 364282644X
Category : Science
Languages : en
Pages : 227

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Book Description
The Boundary Integral Equation (BIE) or the Boundary Element Method is now well established as an efficient and accurate numerical technique for engineering problems. This book presents the application of this technique to axisymmetric engineering problems, where the geometry and applied loads are symmetrical about an axis of rotation. Emphasis is placed on using isoparametric quadratic elements which exhibit excellent modelling capabilities. Efficient numerical integration schemes are also presented in detail. Unlike the Finite Element Method (FEM), the BIE adaptation to axisymmetric problems is not a straightforward modification of the two or three-dimensional formulations. Two approaches can be used; either a purely axisymmetric approach based on assuming a ring of load, or, alternatively, integrating the three-dimensional fundamental solution of a point load around the axis of rotational symmetry. Throughout this ~ook, both approaches are used and are shown to arrive at identi cal solutions. The book starts with axisymmetric potential problems and extends the formulation to elasticity, thermoelasticity, centrifugal and fracture mechanics problems. The accuracy of the formulation is demonstrated by solving several practical engineering problems and comparing the BIE solution to analytical or other numerical methods such as the FEM. This book provides a foundation for further research into axisymmetric prob lems, such as elastoplasticity, contact, time-dependent and creep prob lems.

Boundary integral equation analysis of axisymmetric stress and potential problems

Boundary integral equation analysis of axisymmetric stress and potential problems PDF Author: Adip Abdul Ghafour Bakr
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Stress Analysis by Boundary Element Methods

Stress Analysis by Boundary Element Methods PDF Author: J. Balaš
Publisher: Elsevier
ISBN: 148329174X
Category : Technology & Engineering
Languages : en
Pages : 699

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Book Description
The boundary element method is an extremely versatile and powerful tool of computational mechanics which has already become a popular alternative to the well established finite element method. This book presents a comprehensive and up-to-date treatise on the boundary element method (BEM) in its applications to various fields of continuum mechanics such as: elastostatics, elastodynamics, thermoelasticity, micropolar elasticity, elastoplasticity, viscoelasticity, theory of plates and stress analysis by hybrid methods. The fundamental solution of governing differential equations, integral representations of the displacement and temperature fields, regularized integral representations of the stress field and heat flux, boundary integral equations and boundary integro-differential equations are derived. Besides the mathematical foundations of the boundary integral method, the book deals with practical applications of this method. Most of the applications concentrate mainly on the computational problems of fracture mechanics. The method has been found to be very efficient in stress-intensity factor computations. Also included are developments made by the authors in the boundary integral formulation of thermoelasticity, micropolar elasticity, viscoelasticity, plate theory, hybrid method in elasticity and solution of crack problems. The solution of boundary-value problems of thermoelasticity and micropolar thermoelasticity is formulated for the first time as the solution of pure boundary problems. A new unified formulation of general crack problems is presented by integro-differential equations.

Advanced Development of the Boundary Element Method for Elastic and Inelastic Thermal Stress Analysis

Advanced Development of the Boundary Element Method for Elastic and Inelastic Thermal Stress Analysis PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 268

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The Boundary Element Method Applied to Inelastic Problems

The Boundary Element Method Applied to Inelastic Problems PDF Author: J.C.F. Telles
Publisher: Springer Science & Business Media
ISBN: 364245562X
Category : Technology & Engineering
Languages : en
Pages : 257

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Boundary Integral Equation Methods in Eigenvalue Problems of Elastodynamics and Thin Plates

Boundary Integral Equation Methods in Eigenvalue Problems of Elastodynamics and Thin Plates PDF Author: M. Kitahara
Publisher: Elsevier
ISBN: 1483294471
Category : Mathematics
Languages : en
Pages : 292

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Book Description
The boundary integral equation (BIE) method has been used more and more in the last 20 years for solving various engineering problems. It has important advantages over other techniques for numerical treatment of a wide class of boundary value problems and is now regarded as an indispensable tool for potential problems, electromagnetism problems, heat transfer, fluid flow, elastostatics, stress concentration and fracture problems, geomechanical problems, and steady-state and transient electrodynamics.In this book, the author gives a complete, thorough and detailed survey of the method. It provides the only self-contained description of the method and fills a gap in the literature. No-one seriously interested in eigenvalue problems of elasticity or in the boundary integral equation method can afford not to read this book. Research workers, practising engineers and students will all find much of benefit to them.Contents: Introduction. Part I. Applications of Boundary Integral Equation Methods to Eigenvalue Problems of Elastodynamics. Fundamentals of BIE Methods for Elastodynamics. Formulation of BIEs for Steady-State Elastodynamics. Formulation of Eigenvalue Problems by the BIEs. Analytical Treatment of Integral Equations for Circular and Annular Domains. Numerical Procedures for Eigenvalue Problems. Numerical Analysis of Eigenvalue Problems in Antiplane Elastodynamics. Numerical Analysis of Eigenvalue Problems in Elastodynamics. Appendix: Dominant mode analysis around caverns in a semi-infinite domain. Part II. Applications of BIE Methods to Eigenvalue Problems of Thin Plates. Fundamentals of BIE Methods for Thin Plates. Formulation of BIEs for Thin Plates and Eigenvalue Problems. Numerical Analysis of Eigenvalue Problems in Plate Problems. Indexes.

Boundary Element Methods

Boundary Element Methods PDF Author:
Publisher: Institute of Physics Publishing (GB)
ISBN:
Category : Mathematics
Languages : en
Pages : 134

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Boundary Integral Equation Analyses of Singular, Potential, and Biharmonic Problems

Boundary Integral Equation Analyses of Singular, Potential, and Biharmonic Problems PDF Author: D. B. Ingham
Publisher: Springer Science & Business Media
ISBN: 3642823300
Category : Technology & Engineering
Languages : en
Pages : 165

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Book Description
Harmonic and biharmonic boundary value problems (BVP) arising in physical situations in fluid mechanics are, in general, intractable by analytic techniques. In the last decade there has been a rapid increase in the application of integral equation techniques for the numerical solution of such problems [1,2,3]. One such method is the boundary integral equation method (BIE) which is based on Green's Formula [4] and enables one to reformulate certain BVP as integral equations. The reformulation has the effect of reducing the dimension of the problem by one. Because discretisation occurs only on the boundary in the BIE the system of equations generated by a BIE is considerably smaller than that generated by an equivalent finite difference (FD) or finite element (FE) approximation [5]. Application of the BIE in the field of fluid mechanics has in the past been limited almost entirely to the solution of harmonic problems concerning potential flows around selected geometries [3,6,7]. Little work seems to have been done on direct integral equation solution of viscous flow problems. Coleman [8] solves the biharmonic equation describing slow flow between two semi infinite parallel plates using a complex variable approach but does not consider the effects of singularities arising in the solution domain. Since the vorticity at any singularity becomes unbounded then the methods presented in [8] cannot achieve accurate results throughout the entire flow field.

The Boundary Integral Equation Method Applied to Free Surface Flow Problems in Porous Media

The Boundary Integral Equation Method Applied to Free Surface Flow Problems in Porous Media PDF Author: Gerard P. Lennon
Publisher:
ISBN:
Category : Boundary element methods
Languages : en
Pages : 376

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