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Advanced electromagnetic models for ...
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Sabbagh, Harold A.
Advanced electromagnetic models for materials characterization and nondestructive evaluation
Record Type:
Electronic resources : Monograph/item
Title/Author:
Advanced electromagnetic models for materials characterization and nondestructive evaluationby Harold A Sabbagh ... [et al.].
other author:
Sabbagh, Harold A.
Published:
Cham :Springer International Publishing :2021.
Description:
xii, 351 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Nondestructive testing.
Online resource:
https://doi.org/10.1007/978-3-030-67956-9
ISBN:
9783030679569$q(electronic bk.)
Advanced electromagnetic models for materials characterization and nondestructive evaluation
Advanced electromagnetic models for materials characterization and nondestructive evaluation
[electronic resource] /by Harold A Sabbagh ... [et al.]. - Cham :Springer International Publishing :2021. - xii, 351 p. :ill., digital ;24 cm. - Scientific computation,1434-8322. - Scientific computation..
Chapter 1. A Bilinear Conjugate-Gradient Inversion Algorithm -- Chapter 2. Voxel-Based Inversion Via Set-Theoretic Estimation -- Chapter 3. Modeling Composite Structures -- Chapter 4. Application Of The Set-Theoretic Algorithm To Cfrp's -- Chapter 5. An Electromagnetic Model For Anisotropic Media: Green's Dyad For Plane-Layered Media -- Chapter 6. Stochastic Inverse Problems: Models And Metrics -- Chapter 7. Integration Of Functionals, PCM And Stochastic Integral Equations -- Chapter 8. A Model For Microstructure Characterization -- Chapter 9. High-Dimension Model Representation Via Sparse Grid Techniques -- Chapter 10. Characterization Of Atherosclerotic Lesions By Inversion Of Eddy-Current Impedance Data -- Chapter 11. Spintronics -- Chapter 12. Carbon-Nanotube Reinforced Polymers.
This book expands on the subject matter of 'Computational Electromagnetics and Model-Based Inversion: A Modern Paradigm for Eddy-Current Nondestructive Evaluation.' It includes (a) voxel-based inversion methods, which are generalizations of model-based algorithms; (b) a complete electromagnetic model of advanced composites (and other novel exotic materials), stressing the highly anisotropic nature of these materials, as well as giving a number of applications to nondestructive evaluation; and (c) an up-to-date discussion of stochastic integral equations and propagation-of-uncertainty models in nondestructive evaluation. As such, the book combines research started twenty-five years ago in advanced composites and voxel-based algorithms, but published in scattered journal articles, as well as recent research in stochastic integral equations. All of these areas are of considerable interest to the aerospace, nuclear power, civil infrastructure, materials characterization and biomedical industries. The book covers the topic of computational electromagnetics in eddy-current nondestructive evaluation (NDE) by emphasizing three distinct topics: (a) fundamental mathematical principles of volume-integral equations as a subset of computational electromagnetics, (b) mathematical algorithms applied to signal-processing and inverse scattering problems, and (c) applications of these two topics to problems in which real and model data are used. It is therefore more than an academic exercise and is valuable to users of eddy-current NDE technology in industries as varied as nuclear power, aerospace, materials characterization and biomedical imaging.
ISBN: 9783030679569$q(electronic bk.)
Standard No.: 10.1007/978-3-030-67956-9doiSubjects--Topical Terms:
224986
Nondestructive testing.
LC Class. No.: TA417.2
Dewey Class. No.: 620.1127
Advanced electromagnetic models for materials characterization and nondestructive evaluation
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Chapter 1. A Bilinear Conjugate-Gradient Inversion Algorithm -- Chapter 2. Voxel-Based Inversion Via Set-Theoretic Estimation -- Chapter 3. Modeling Composite Structures -- Chapter 4. Application Of The Set-Theoretic Algorithm To Cfrp's -- Chapter 5. An Electromagnetic Model For Anisotropic Media: Green's Dyad For Plane-Layered Media -- Chapter 6. Stochastic Inverse Problems: Models And Metrics -- Chapter 7. Integration Of Functionals, PCM And Stochastic Integral Equations -- Chapter 8. A Model For Microstructure Characterization -- Chapter 9. High-Dimension Model Representation Via Sparse Grid Techniques -- Chapter 10. Characterization Of Atherosclerotic Lesions By Inversion Of Eddy-Current Impedance Data -- Chapter 11. Spintronics -- Chapter 12. Carbon-Nanotube Reinforced Polymers.
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This book expands on the subject matter of 'Computational Electromagnetics and Model-Based Inversion: A Modern Paradigm for Eddy-Current Nondestructive Evaluation.' It includes (a) voxel-based inversion methods, which are generalizations of model-based algorithms; (b) a complete electromagnetic model of advanced composites (and other novel exotic materials), stressing the highly anisotropic nature of these materials, as well as giving a number of applications to nondestructive evaluation; and (c) an up-to-date discussion of stochastic integral equations and propagation-of-uncertainty models in nondestructive evaluation. As such, the book combines research started twenty-five years ago in advanced composites and voxel-based algorithms, but published in scattered journal articles, as well as recent research in stochastic integral equations. All of these areas are of considerable interest to the aerospace, nuclear power, civil infrastructure, materials characterization and biomedical industries. The book covers the topic of computational electromagnetics in eddy-current nondestructive evaluation (NDE) by emphasizing three distinct topics: (a) fundamental mathematical principles of volume-integral equations as a subset of computational electromagnetics, (b) mathematical algorithms applied to signal-processing and inverse scattering problems, and (c) applications of these two topics to problems in which real and model data are used. It is therefore more than an academic exercise and is valuable to users of eddy-current NDE technology in industries as varied as nuclear power, aerospace, materials characterization and biomedical imaging.
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based on 0 review(s)
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