Offshore mechanics : structural and fluid dynamics for recent applications /

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Bibliographic Details
Main Authors: Karimirad, Madjid (Author), Michailides, Constantine, 1978- (Author), Nematbakhsh, Ali, 1984- (Author)
Corporate Author: ProQuest (Firm)
Format: Electronic eBook
Language:English
Published: Hoboken NJ, USA : Wiley, 2018.
Edition:First edition.
Subjects:
Online Access:Connect to this title online (unlimited simultaneous users allowed; 325 uses per year)

MARC

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100 1 |a Karimirad, Madjid,  |e author. 
245 1 0 |a Offshore mechanics :  |b structural and fluid dynamics for recent applications /  |c Madjid Karimirad, Constantine Michailides, Ali Nematbakhsh. 
250 |a First edition. 
263 |a 1802 
264 1 |a Hoboken NJ, USA :  |b Wiley,  |c 2018. 
300 |a 1 online resource. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b n  |2 rdamedia 
338 |a online resource  |b nc  |2 rdacarrier 
504 |a Includes bibliographical references and index. 
505 0 0 |a Machine generated contents note:   |g 1.  |t Preliminaries --   |g 2.  |t Offshore Structures --   |g 2.1.  |t Ship-shaped Offshore Structures --   |g 2.2.  |t Oil and Gas Offshore Platforms --   |g 2.3.  |t Offshore Wind Turbines --   |g 2.4.  |t Wave Energy Converters --   |g 2.5.  |t Tidal Energy Converters --   |g 2.6.  |t Combined Offshore Energy Systems --   |g 2.7.  |t Multipurpose Offshore Structures and Systems --   |g 2.8.  |t Submerged Floating Tunnels --   |g 2.9.  |t Floating Bridges --   |g 2.10.  |t Aquaculture and Fish Farms --   |t References --   |g 3.  |t Offshore Environmental Conditions --   |g 3.1.  |t Introduction --   |g 3.2.  |t Wave Conditions --   |g 3.2.1.  |t Basic Characteristics of Free Surface Normal Waves --   |g 3.2.2.  |t Swells --   |g 3.2.3.  |t Wave Propagation in Space --   |g 3.2.4.  |t Wave Measurement --   |g 3.3.  |t Wind --   |g 3.3.1.  |t Global Wind Pattern --   |g 3.3.2.  |t Wind Measurement --   |g 3.4.  |t Currents --   |g 3.4.1.  |t Tidal Currents --   |g 3.4.2.  |t Wind-driven Currents --   |g 3.4.2.1.  |t Global Wind-driven Currents --   |g 3.4.2.2.  |t Longshore Currents --   |g 3.4.2.3.  |t Rip Currents --   |g 3.4.2.4.  |t Upwelling Currents --   |g 3.5.  |t Joint Distribution of Waves and Winds --   |g 3.6.  |t Oceanographic and Bathymetric Aspects --   |g 3.7.  |t Scour and Erosion --   |g 3.8.  |t Extreme Environmental Conditions --   |g 3.9.  |t Environmental Impact of Offshore Structures' Application --   |t References --   |g 4.  |t Hydrodynamic and Aerodynamic Analyses of Offshore Structures --   |g 4.1.  |t Introduction --   |g 4.2.  |t Wave Kinematics --   |g 4.2.1.  |t Regular Waves --   |g 4.2.2.  |t Ocean Waves --   |g 4.3.  |t Wave Loads on Offshore Structures --   |g 4.3.1.  |t Wave Loads Induced by Inviscid Flows --   |g 4.3.1.1.  |t Inviscid Loads Due to Forced Oscillation of an Offshore Structure (Concept of Added Mass and Damping Coefficients) --   |g 4.3.1.2.  |t Added Mass and Damping Coefficients in the Presence of a Free Surface --   |g 4.3.1.3.  |t Considering Diffraction Effects on Calculating Wave Loads --   |g 4.3.2.  |t Morison Equation --   |g 4.4.  |t Tides and Currents Kinematics --   |g 4.5.  |t Current Loads on Offshore Structures --   |g 4.6.  |t Wind Kinematics --   |g 4.6.1.  |t Wind Data Analysis --   |g 4.6.2.  |t Extreme Wind Conditions --   |g 4.6.3.  |t Wind Speed Variation with Height --   |g 4.7.  |t Wind Loads on Offshore Structures --   |g 4.8.  |t Aerodynamic Analysis of Offshore Wind Turbines --   |g 4.8.1.  |t 1D Momentum Theory --   |g 4.8.2.  |t Effects of Wind Turbine Rotation on Wind Thrust Force --   |g 4.8.3.  |t Blade Element Momentum Theory --   |t References --   |g 5.  |t Fundamentals of Structural Analysis --   |g 5.1.  |t Background --   |g 5.1.1.  |t Structural Components --   |g 5.1.2.  |t Stress and Strain --   |g 5.2.  |t Structural Analysis of Beams --   |g 5.2.1.  |t Introduction --   |g 5.2.2.  |t Beams under Torsion --   |g 5.2.3.  |t Bending of Beams --   |g 5.2.4.  |t Beam Deflections --   |g 5.2.5.  |t Buckling of Beams --   |g 5.3.  |t Mathematical Models for Structural Dynamics of Beams --   |g 5.3.1.  |t Bernoulli-Euler Beam Theory --   |g 5.4.  |t Frame Structures and Matrix Analysis --   |g 5.5.  |t Plate Theories --   |g 5.5.1.  |t Introduction --   |g 5.5.2.  |t Plane Stress --   |g 5.5.3.  |t Mathematical Models for Bending of Plates --   |t References --   |g 6.  |t Numerical Methods in Offshore Structural Mechanics --   |g 6.1.  |t Structural Dynamics --   |g 6.2.  |t Stress Analysis --   |g 6.3.  |t Time-Domain and Frequency-Domain Analysis --   |g 6.4.  |t Multibody Approach --   |g 6.5.  |t Finite Element Method --   |g 6.6.  |t Nonlinear Analysis --   |g 6.7.  |t Extreme Response Analysis and Prediction --   |g 6.8.  |t Testing and Validation of Offshore Structures --   |g 6.9.  |t Examples --   |g 6.9.1.  |t Example 6.1 --   |g 6.9.2.  |t Example 6.2 --   |t References --   |g 7.  |t Numerical Methods in Offshore Fluid Mechanics --   |g 7.1.  |t Introduction --   |g 7.2.  |t Potential Flow Theory Approach --   |g 7.2.1.  |t Three-dimensional Problem --   |g 7.2.2.  |t Numerical Consideration --   |g 7.3.  |t CFD Approach --   |g 7.3.1.  |t Discretization of the Navier-Stokes Equation on Rectangular Structured Grids --   |g 7.3.2.  |t Advection Terms --   |g 7.3.3.  |t Viscous Terms --   |g 7.3.4.  |t Pressure Term and Mass Conservation Equation --   |g 7.3.5.  |t Solving Navier--Stokes Equations --   |g 7.3.6.  |t Poisson Equation --   |g 7.3.7.  |t Effects of Free Surface --   |g 7.3.8.  |t Volume of Fluid Method --   |g 7.3.9.  |t Level Set Method --   |g 7.3.10.  |t Discretization of Level Set Function --   |g 7.3.11.  |t Discretization of Reinitialization Equation --   |g 7.3.12.  |t Studying Solid--Fluid Interaction --   |g 7.3.13.  |t Immersed Boundary Methods --   |g 7.3.14.  |t Discretization of the NS Equation in a Mapped Coordinate System --   |g 7.3.15.  |t Grid Generation in a Mapped Coordinate System: Stretched Grid --   |g 7.3.16.  |t Grid Generation in the Mapped Coordinate System: Body-Fitted Grids --   |g 7.3.17.  |t Body-Fitted Grid Generation by Using Unstructured Grids --   |t References --   |g 8.  |t Mooring and Foundation Analysis --   |g 8.1.  |t Mooring Considerations --   |g 8.1.1.  |t Catenary Moorings --   |g 8.1.2.  |t Taut Moorings --   |g 8.2.  |t Soil Mechanics --   |g 8.3.  |t Foundation Design --   |t References. 
533 |a Electronic reproduction.  |b Ann Arbor, MI  |n Available via World Wide Web. 
588 0 |a Print version record and CIP data provided by publisher; resource not viewed. 
650 0 |a Offshore structures  |x Hydrodynamics. 
700 1 |a Michailides, Constantine,  |d 1978-  |e author. 
700 1 |a Nematbakhsh, Ali,  |d 1984-  |e author. 
710 2 |a ProQuest (Firm) 
776 0 8 |i Print version:  |a Karimirad, Madjid.  |t Offshore mechanics.  |b First edition.  |d Hoboken NJ, USA : Wiley, 2018  |z 9781119216629  |w (DLC) 2017043079 
856 4 0 |u https://ebookcentral.proquest.com/lib/santaclara/detail.action?docID=5261384  |z Connect to this title online (unlimited simultaneous users allowed; 325 uses per year)  |t 0 
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