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Titlebook: Computational Ocean Acoustics; Finn B. Jensen,William A. Kuperman,Henrik Schmidt Textbook 2011Latest edition Springer Science+Business Med

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发表于 2025-3-21 18:38:26 | 显示全部楼层 |阅读模式
书目名称Computational Ocean Acoustics
编辑Finn B. Jensen,William A. Kuperman,Henrik Schmidt
视频videohttp://file.papertrans.cn/233/232875/232875.mp4
概述Revised and throughly updated edition of a classic in the field of ocean acoustics.Chapter-end problems to reinforce concepts.Extensive use of color illustrations throughout.The only book to cover num
丛书名称Modern Acoustics and Signal Processing
图书封面Titlebook: Computational Ocean Acoustics;  Finn B. Jensen,William A. Kuperman,Henrik Schmidt Textbook 2011Latest edition Springer Science+Business Med
描述Senior level/graduate level text/reference presenting state-of-the- art numerical techniques to solve the wave equation in heterogeneous fluid-solid media. Numerical models have become standard research tools in acoustic laboratories, and thus computational acoustics is becoming an increasingly important branch of ocean acoustic science. The first edition of this successful book, written by the recognized leaders of the field, was the first to present a comprehensive and modern introduction to computational ocean acoustics accessible to students. This revision, with 100 additional pages, completely updates the material in the first edition and includes new models based on current research. It includes problems and solutions in every chapter, making the book more useful in teaching (the first edition had a separate solutions manual). The book is intended for graduate and advanced undergraduate students of acoustics, geology and geophysics, applied mathematics, ocean engineering or as areference in computational methods courses, as well as professionals in these fields, particularly those working in government (especially Navy) and industry labs engaged in the development or use of p
出版日期Textbook 2011Latest edition
版次2
doihttps://doi.org/10.1007/978-1-4419-8678-8
isbn_softcover978-1-4939-3704-2
isbn_ebook978-1-4419-8678-8Series ISSN 2364-4915 Series E-ISSN 2364-4923
issn_series 2364-4915
copyrightSpringer Science+Business Media, LLC 2011
The information of publication is updating

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Ray Methods,or ray tracing and primarily the latter. Today, however, ray tracing codes have fallen somewhat out of favor in the research community, the problem being the inherent (high frequency) approximation of the method which leads to somewhat coarse accuracy in the results. On the other hand, ray methods a
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Normal Modes,e theory for a simple two-layer model of the ocean. At about the same time Ide et al. [2] had been using normal modes to interpret propagation in the Potomac River and Chesapeake Bay. Progress in the development of normal-mode methods is presented in an excellent summary given by Williams [3]. Numer
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Parabolic Equations,ve propagation in the atmosphere. Since then, parabolic equations have been used in several branches of physics, including the fields of optics, plasma physics, seismics, and underwater acoustics. It is the application of PE methods to wave-propagation problems in the ocean that is the subject of th
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Finite Differences and Finite Elements,re of these approaches are numerically efficient for the majority of forward problems occurring in underwater acoustics, including propagation over very long ranges, with or without lateral variations in the environment. However, the numerical efficiency of these approaches is obtained by sacrificin
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Broadband Modeling,Earth’s crust, underwater acousticians have traditionally favored spectral analysis techniques, which only provide information about the band-averaged energy distribution in space. There are several reasons for choosing this approach in ocean acoustics. Most importantly, the ocean is characterized b
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Ambient Noise,ise in the ocean impacts underwater acoustics in two ways: It is the resident acoustic field in the ocean and hence also a diagnostic of the ocean environment. It is the interference with respect to detecting or measuring signals.
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