This book presents current research trends in the field of underwater acoustic wave direct and inverse problems. The ocean-seabed system is an acoustic waveguide, and this is the only book that treats inverse problems in a waveguide. The propagation of acoustic waves in this system is treated for various types of seabeds and the direct and inverse problems are considered in realistic ocean environments. The inverse problem is to determine the shape of an impenetrable or penetrable object, or to determine the coefficients describing the seabed, achieved by acoustically illuminating the seabed and investigating the scattered field. The book emphasizes computation of Green's Functions with new material added for elastic and poro-elastic seabeds. It addresses many areas of practical interest related to underwater acoustical imaging, including ecological survey and cleanup, protection of open water harbors, maintenance of offshore petroleum and gas enterprises, and other areas of environmental and military concern.
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James L. Buchanan is Professor of Mathematics at the United States Naval Academy. He has published two books and over 30 articles in function theoretic methods, elasticity, ocean acoustics, inverse problems, and numerical analysis.
Robert P. Gilbert is Unidel Chair of Applied Analysis at the University of Delaware. He is primarily known for his treatises on function theoretic methods applied to partial differential equations and his work in elasticity. He has published 13 books and over 260 articles and is founding editor of two mathematics journals, Complex Variables and Applicable Analysis.
Armand Wirgin is Directeur de Recherche at the Laboratoire de Mécanique et d’Acoustique of the Centre National de la Recherche Scientifique. He has published over 170 articles, book chapters, and books on direct and inverse scattering of electromagnetic and elastic waves.
Yongzhi S. Xu is a University of Chattanooga Foundation Professor of Mathematics at the University of Tennessee at Chattanooga. He has published over 60 papers in direct and inverse problems in ocean acoustics, function theoretic methods, mathematical study of carcinoma and osteoporosis, and other applied partial differential equation problems.
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Paperback. Condition: New. This book presents current research trends in the field of underwater acoustic wave direct and inverse problems. Until very recently, little had been published concerning model-based inversions of the boundaries and material constants of finite-sized targets located in either the water column or the sediments. This text is the first to investigate inverse problems in an ocean environment, with a heavy emphasis placed on the description and resolution of the forward scattering problem.Marine Acoustics emphasizes computation of Green's Functions with new material added for elastic and poro-elastic seabeds. This timely publication addresses many areas of practical interest related to underwater acoustical imaging, including ecological survey and cleanup, protection of open water harbors, maintenance of offshore petroleum and gas enterprises, and other areas of environmental and military concern.The ocean-seabed system is an acoustic waveguide, and this is the only book that treats inverse problems in a waveguide. The propagation of acoustic waves in this system is treated for various types of seabeds and the direct and inverse problems are considered in realistic ocean environments. The inverse problem is to determine the shape of an impenetrable or penetrable object, or to determine the coefficients describing the seabed. This is done by acoustically illuminating the seabed and investigating the scattered field. Seller Inventory # LU-9780898715477
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