A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- And Three-Dimensional Structures

A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- And Three-Dimensional Structures PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781722000424
Category :
Languages : en
Pages : 40

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Book Description
A review of a hybrid finite element-boundary integral formulation for scattering and radiation by two- and three-dimensional composite structures is presented. In contrast to other hybrid techniques involving the finite element method, the proposed one is in principle exact and can be implemented using a low O(N) storage. This is of particular importance for large scale applications and is a characteristic of the boundary chosen to terminate the finite element mesh, usually as close to the structure as possible. A certain class of these boundaries lead to convolutional boundary integrals which can be evaluated via the fast Fourier transform (FFT) without a need to generate a matrix; thus, retaining the O(N) storage requirement. The paper begins with a general description of the method. A number of two- and three-dimensional applications are then given, including numerical computations which demonstrate the method's accuracy, efficiency, and capability. Jin, Jian-Ming and Volakis, John L. and Collins, Jeffery D. Unspecified Center NAG2-541...

A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- And Three-Dimensional Structures

A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- And Three-Dimensional Structures PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781722000424
Category :
Languages : en
Pages : 40

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Book Description
A review of a hybrid finite element-boundary integral formulation for scattering and radiation by two- and three-dimensional composite structures is presented. In contrast to other hybrid techniques involving the finite element method, the proposed one is in principle exact and can be implemented using a low O(N) storage. This is of particular importance for large scale applications and is a characteristic of the boundary chosen to terminate the finite element mesh, usually as close to the structure as possible. A certain class of these boundaries lead to convolutional boundary integrals which can be evaluated via the fast Fourier transform (FFT) without a need to generate a matrix; thus, retaining the O(N) storage requirement. The paper begins with a general description of the method. A number of two- and three-dimensional applications are then given, including numerical computations which demonstrate the method's accuracy, efficiency, and capability. Jin, Jian-Ming and Volakis, John L. and Collins, Jeffery D. Unspecified Center NAG2-541...

A Finite Element-boundary Integral Method for Scattering and Radiation by Two- and Three-dimensional Structures

A Finite Element-boundary Integral Method for Scattering and Radiation by Two- and Three-dimensional Structures PDF Author: Jian-Ming Jin
Publisher:
ISBN:
Category : Boundary element methods
Languages : en
Pages : 72

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Book Description


A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- and Three-Dimensional Structures by Jian- Ming Jin, John L. Volakis and Jeffery D. Collins

A Finite Element-Boundary Integral Method for Scattering and Radiation by Two- and Three-Dimensional Structures by Jian- Ming Jin, John L. Volakis and Jeffery D. Collins PDF Author: Jianming Jin
Publisher:
ISBN: 9780598081681
Category :
Languages : en
Pages : 40

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Book Description


A FINITE ELEMENT - BOUNDARY INTEGAL METHOD FOR SCATTERING AND RADIATION BY TWO - AND THREE DIMENSIONAL STRUCTURES

A FINITE  ELEMENT - BOUNDARY INTEGAL METHOD FOR SCATTERING AND RADIATION BY TWO - AND   THREE DIMENSIONAL STRUCTURES PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 40

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Book Description


Finite Element and Finite Difference Methods in Electromagnetic Scattering

Finite Element and Finite Difference Methods in Electromagnetic Scattering PDF Author: M.A. Morgan
Publisher: Elsevier
ISBN: 1483289532
Category : Technology & Engineering
Languages : en
Pages : 398

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Book Description
This second volume in the Progress in Electromagnetic Research series examines recent advances in computational electromagnetics, with emphasis on scattering, as brought about by new formulations and algorithms which use finite element or finite difference techniques. Containing contributions by some of the world's leading experts, the papers thoroughly review and analyze this rapidly evolving area of computational electromagnetics. Covering topics ranging from the new finite-element based formulation for representing time-harmonic vector fields in 3-D inhomogeneous media using two coupled scalar potentials, to the consideration of conforming boundary elements and leap-frog time-marching in transient field problems involving corners and wedges in two and three dimensions, the volume will provide an indispensable reference source for practitioners and students of computational electromagnetics.

Finite Element Method Electromagnetics

Finite Element Method Electromagnetics PDF Author: John L. Volakis
Publisher: John Wiley & Sons
ISBN: 9780780334250
Category : Science
Languages : en
Pages : 364

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Book Description
Employed in a large number of commercial electromagnetic simulation packages, the finite element method is one of the most popular and well-established numerical techniques in engineering. This book covers the theory, development, implementation, and application of the finite element method and its hybrid versions to electromagnetics. FINITE ELEMENT METHOD FOR ELECTROMAGNETICS begins with a step-by-step textbook presentation of the finite method and its variations then goes on to provide up-to-date coverage of three dimensional formulations and modern applications to open and closed domain problems. Worked out examples are included to aid the reader with the fine features of the method and the implementation of its hybridization with other techniques for a robust simulation of large scale radiation and scattering. The crucial treatment of local boundary conditions is carefully worked out in several stages in the book. Sponsored by: IEEE Antennas and Propagation Society.

A finite element-boundary integral method for cavities in a circular cylinder

A finite element-boundary integral method for cavities in a circular cylinder PDF Author: Leo C. Kempel and J. L. Volakis
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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Book Description


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 702

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Book Description


Frequency Domain Hybrid Finite Element Methods in Electromagnetics

Frequency Domain Hybrid Finite Element Methods in Electromagnetics PDF Author: John Volakis
Publisher: Springer Nature
ISBN: 3031016947
Category : Technology & Engineering
Languages : en
Pages : 148

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Book Description
This book provides a brief overview of the popular Finite Element Method (FEM) and its hybrid versions for electromagnetics with applications to radar scattering, antennas and arrays, guided structures, microwave components, frequency selective surfaces, periodic media, and RF materials characterizations and related topics. It starts by presenting concepts based on Hilbert and Sobolev spaces as well as Curl and Divergence spaces for generating matrices, useful in all engineering simulation methods. It then proceeds to present applications of the finite element and finite element-boundary integral methods for scattering and radiation. Applications to periodic media, metamaterials and bandgap structures are also included. The hybrid volume integral equation method for high contrast dielectrics and is presented for the first time. Another unique feature of the book is the inclusion of design optimization techniques and their integration within commercial numerical analysis packages for shape and material design. To aid the reader with the method's utility, an entire chapter is devoted to two-dimensional problems. The book can be considered as an update on the latest developments since the publication of our earlier book (Finite Element Method for Electromagnetics, IEEE Press, 1998). The latter is certainly complementary companion to this one.

Coupled Boundary and Finite Element Methods for the Solution of the Dynamic Fluid-Structure Interaction Problem

Coupled Boundary and Finite Element Methods for the Solution of the Dynamic Fluid-Structure Interaction Problem PDF Author: Siamak Amini
Publisher: Springer Science & Business Media
ISBN: 3642517277
Category : Technology & Engineering
Languages : en
Pages : 116

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Book Description
This text considers the problem of the dynamic fluid-structure interaction between a finite elastic structure and the acoustic field in an unbounded fluid-filled exterior domain. The exterior acoustic field is modelled through a boundary integral equation over the structure surface. However, the classical boundary integral equation formulations of this problem either have no solutions or do not have unique solutions at certain characteristic frequencies (which depend on the surface geometry) and it is necessary to employ modified boundary integral equation formulations which are valid for all frequencies. The particular approach adopted here involves an arbitrary coupling parameter and the effect that this parameter has on the stability and accuracy of the numerical method used to solve the integral equation is examined. The boundary integral analysis of the exterior acoustic problem is coupled with a finite element analysis of the elastic structure in order to investigate the interaction between the dynamic behaviour of the structure and the associated acoustic field. Recently there has been some controversy over whether or not the coupled problem also suffers from the non-uniqueness problems associated with the classical integral equation formulations of the exterior acoustic problem. This question is resolved by demonstrating that .the solution to the coupled problem is not unique at the characteristic frequencies and that it is necessary to employ an integral equation formulation valid for all frequencies.