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Titlebook: Computational Electromagnetics and Model-Based Inversion; A Modern Paradigm fo Harold A Sabbagh,R. Kim Murphy,Jeremy S Knopp Book 2013 Spri

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發(fā)表于 2025-3-21 19:33:19 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Computational Electromagnetics and Model-Based Inversion
副標(biāo)題A Modern Paradigm fo
編輯Harold A Sabbagh,R. Kim Murphy,Jeremy S Knopp
視頻videohttp://file.papertrans.cn/233/232263/232263.mp4
概述Defines the modern technology of eddy-current NDE by showing how mathematics and the computer will solve problems more effectively than current analog practice.Applicable to actual test situations tha
叢書名稱Scientific Computation
圖書封面Titlebook: Computational Electromagnetics and Model-Based Inversion; A Modern Paradigm fo Harold A Sabbagh,R. Kim Murphy,Jeremy S Knopp Book 2013 Spri
描述.This volume will define the direction of eddy-current technology in nondestructive evaluation (NDE) in the twenty-first century. It describes the natural marriage of the computer to eddy-current NDE, and its publication was encouraged by favorable responses from workers in the nuclear-power and aerospace industries. It will be used by advanced students and practitioners in the fields of computational electromagnetics, electromagnetic inverse-scattering theory, nondestructive evaluation, materials evaluation and biomedical imaging, among others, and will be based on our experience in applying the subject of computational electromagnetics to these areas, as manifested by our recent research and publications. Finally, it will be a reference to future monographs on advanced NDE that are being contemplated by our colleagues and others. Its importance lies in the fact that it will be the first book to show that advanced computational methods can be used to solve practical, but difficult, problems in eddy-current NDE. In fact, in many cases these methods are the only things available for solving the problems..The book will cover the topic of computational electromagnetics in eddy-current
出版日期Book 2013
關(guān)鍵詞computational NDE; computational electromagnetics; eddy current; eddy current nde; eddy current nondestr
版次1
doihttps://doi.org/10.1007/978-1-4419-8429-6
isbn_softcover978-1-4899-8814-0
isbn_ebook978-1-4419-8429-6Series ISSN 1434-8322 Series E-ISSN 2198-2589
issn_series 1434-8322
copyrightSpringer Science+Business Media New York 2013
The information of publication is updating

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The Volume-Integral Equations for Plane-Layered Media the spectral-domain), the further development of the integral equation, together with its discretization, is best done in the spatial domain. We will now give an example of the transformation from the Fourier-domain to the spatial domain.
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Discretization via the Galerkin Method of Moments cause problems will be removed by the testing process. In order to test these derivatives, we introduce special vector expansion functions, called “facet elements” and “edge elements,” that comprise products of pulse and tent functions.
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Advanced Probe Models Based on Magnetic Dipoles and Ferrite Corese, as in the pancake coil of Appendix A.1 of Chap. 5, or with its axis coinciding with the axis of a tube, as in the bobbin coils of Chap. 9. In this chapter, we develop a theory that allows us to efficiently discretize the current density in such probes, thereby allowing us to use transfer matrices
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Advanced Probe Models Based on Electric Dipolesr life extension, where conductivity and stress are related via the piezoresistive effect. Broadband (0.1–100 MHz) planar spiral-coil eddy-current probes are currently being developed using photolithography for the purpose of efficiently measuring the conductivity spectra for subsequent inversion to
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Examples of Basic Inverse Problemss is introduced that provides a framework for incorporating the numerical forward models discussed in Part I in an algorithm that estimates an unknown set of values of the test. A diagram of a general inverse method process is presented in Fig. 11.1.
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