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Dynamics of Offshore Structures [Hardcover]

James F. Wilson (Editor)

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Book Description

October 9, 2002 0471264679 978-0471264675 2
Unique, cutting-edge material on structural dynamics and natural forces for offshore structures

Using the latest advances in theory and practice, Dynamics of Offshore Structures, Second Edition is extensively revised to cover all aspects of the physical forces, structural modeling, and mathematical methods necessary to effectively analyze the dynamic behavior of offshore structures. Both closed-form solutions and the Mathematica(r) software package are used in many of the up-to-date example problems to compute the deterministic and stochastic structural responses for such offshore structures as buoys; moored ships; and fixed-bottom, cable-stayed, and gravity-type platforms.

Throughout the book, consideration is given to the many assumptions involved in formulating a structural model and to the natural forces encountered in the offshore environment. These analyses focus on plane motions of elastic structures with linear and nonlinear restraints, as well as motions induced by the forces of currents, winds, earthquakes, and waves, including the latest theories and information on wave mechanics. Topics addressed include multidegree of freedom linear structures, continuous system analysis (including the motion of cables and pipelines), submerged pile design, structural modal damping, fluid-structure-soil interactions, and single degree of freedom structural models that, together with plane wave loading theories, lead to deterministic or time history predictions of structural responses. These analyses are extended to statistical descriptions of both wave loading and structural motion.

Dynamics of Offshore Structures, Second Edition is a valuable text for students in civil and mechanical engineering programs and an indispensable resource for structural, geotechnical, and construction engineers working with offshore projects.


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From the Back Cover

Unique, cutting-edge material on structural dynamics and natural forces for offshore structures

Using the latest advances in theory and practice, Dynamics of Offshore Structures, Second Edition is extensively revised to cover all aspects of the physical forces, structural modeling, and mathematical methods necessary to effectively analyze the dynamic behavior of offshore structures. Both closed-form solutions and the Mathematica(r) software package are used in many of the up-to-date example problems to compute the deterministic and stochastic structural responses for such offshore structures as buoys; moored ships; and fixed-bottom, cable-stayed, and gravity-type platforms.

Throughout the book, consideration is given to the many assumptions involved in formulating a structural model and to the natural forces encountered in the offshore environment. These analyses focus on plane motions of elastic structures with linear and nonlinear restraints, as well as motions induced by the forces of currents, winds, earthquakes, and waves, including the latest theories and information on wave mechanics. Topics addressed include multidegree of freedom linear structures, continuous system analysis (including the motion of cables and pipelines), submerged pile design, structural modal damping, fluid-structure-soil interactions, and single degree of freedom structural models that, together with plane wave loading theories, lead to deterministic or time history predictions of structural responses. These analyses are extended to statistical descriptions of both wave loading and structural motion.

Dynamics of Offshore Structures, Second Edition is a valuable text for students in civil and mechanical engineering programs and an indispensable resource for structural, geotechnical, and construction engineers working with offshore projects.

About the Author

JAMES F. WILSON, PHD, is Professor Emeritus in the Department of Civil and Environmental Engineering at Duke University. He has earned numerous awards and authored several hundred papers, along with five previous books.

BRUCE J. MUGA, PHD, is Professor Emeritus in the Department of Civil and Environmental Engineering at Duke University. During his career, he worked with the U.S. Naval Civil Engineering Laboratory in Port Hueneme, California.

LYMON C. REESE, PHD, is the Nasser I. Al-Rashid Chair Emeritus and Professor of Civil Engineering at the University of Texas in Austin. He is also principal at Ensoft, Inc., a distributor of engineering software, and a consultant with Lymon C. Reese & Associates, a subsidiary of Ensoft.

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Inside This Book (learn more)
First Sentence:
Offshore structures, constructed on or above the continental shelves and on the adjacent continental slopes, take many forms and serve a multitude of purposes: towers for microwave transmission, installations for power generation, portable pipeline systems for mining the ocean floor, and a few platforms and floating islands that serve as resort hotels. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
nondimensional method, fixed leg platform, free body sketch, harmonic response function, wave height spectrum, cylinder roughness, jackup platform, jackup rig, opposing cables, rocking frequency, gravity platform, covariance propagation equation, horizontal water particle velocity, compliant towers, ballast mass, linear wave theory, pile deflection, periodic vortices, dredge pipe, modal vectors, ideal white noise, deck mass, statistical responses, wave loading, virtual mass
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Gulf of Mexico, Proceedings of the Offshore Technology Conference, North Sea, Coastal Engineering, Englewood Cliffs, American Petroleum Institute, Civil Engineering, Van Nostrand Reinhold, Wolfram Media, British Ship Research Association, Dynamics of Structures, Gulf of Alaska, Dynamic Response of Structures, Petroleum Engineer, Spread-Moored Landing Craft, Army Corps of Engineers, Automatic Control, Cambridge University Press, Deep Water Mooring-Part, Den Hartog, Journal of Dynamic Systems, Journal of Energy Resources Technology, Journal of the Structural Division, Perform Steps
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