Compiled by leading experts, this text details the new and longstanding methods used for analyzing offshore structures. It details the latest procedures for computing wind, wave, current, tide, and seismic effects. With an emphasis on risk-based analysis, the authors consider construction style and materials choices as well as environmental factors, especially seabed soils. Covering theory and applications, this text provides more than 200 illustrations and includes practical problems with worked solutions at the end of each chapter.
Compiled by leading experts, this text details the new and longstanding methods used for analyzing offshore structures. It details the latest procedures for computing wind, wave, current, tide, and seismic effects. With an emphasis on risk-based analysis, the authors consider construction style and materials choices as well as environmental factors, especially seabed soils. Covering theory and applications, this text provides more than 200 illustrations and includes practical problems with worked solutions at the end of each chapter.
D. V. Reddy, Ph.D., P.E., P. Eng., C. Eng (U.K.) is a professor of civil, environmental and geomatics engineering, and director, Center for Marine Structures and Geotechnique, Florida Atlantic University, Boca Raton, FL, U.S.A. He has held professorships at the Indian Institute of Technology Madras, Chennai, India; Memorial University of Newfoundland, St. John's, NL, Canada; and University of Florida, Gainesville, FL, U.S.A.; and visiting professorships at a number of universities. He has taught courses on offshore and coastal structures for over 30 years. His research interests are in the areas of marine structures, materials, and geotechnical engineering, with particular focus on concrete technology and computational/analytical mechanics. He is a Fellow of the American Concrete Institute. He has authored over 370 papers, two books, edited three conference volumes; and been recognized by a number of awards. Dr. A.S.J. Swamidas , Ph.D, has held professorships at the Indian Institute of Technology Madras, Chennai, India; and at Memorial University of Newfoundland, St. John's, NL, Canada. He has taught offshore structures for more than 20 years and acted as a consultant to a number of companies. His research interests are in the area of dynamics of offshore and onshore structures. He has authored over 210 papers/reports, and edited two conference volumes.
Inhaltsangabe
Offshore Operations and Structural Development. Components of a Typical Offshore Structure. Ocean Environment - Wind, Wave, Current, Tides, Ice and Seismic Effects. Seabed Mechanics. Materials and Their Behavior in the Ocean Environment. Environmental Forces on Offshore Structures. Fundamental Considerations for Offshore Structures. Analysis of Framed Steel Offshore Structures. Gravity Concrete Structures Analysis. Compliant Structural Analysis. Semi-submersibles and Station-keeping. Submerged and Structure Analysis. Offshore Pipeline Analysis. Manmade Offshore Islands and Analysis. Higher Aspects of Offshore Structural Analysis.
Offshore Operations and Structural Development. Components of a Typical Offshore Structure. Ocean Environment - Wind, Wave, Current, Tides, Ice and Seismic Effects. Seabed Mechanics. Materials and Their Behavior in the Ocean Environment. Environmental Forces on Offshore Structures. Fundamental Considerations for Offshore Structures. Analysis of Framed Steel Offshore Structures. Gravity Concrete Structures Analysis. Compliant Structural Analysis. Semi-submersibles and Station-keeping. Submerged and Structure Analysis. Offshore Pipeline Analysis. Manmade Offshore Islands and Analysis. Higher Aspects of Offshore Structural Analysis.
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