Reprint

Advances in Marine Mechanical and Structural Engineering

Edited by
August 2024
322 pages
  • ISBN978-3-7258-1739-9 (Hardback)
  • ISBN978-3-7258-1740-5 (PDF)

This is a Reprint of the Special Issue Advances in Marine Mechanical and Structural Engineering that was published in

Engineering
Environmental & Earth Sciences
Summary

In the design of modern ship and offshore structures, one of the key issues is the accurate prediction of strength considering some new materials and structures used in the structural design and in extreme sea environments and accidental states. This Reprint contains the advanced analysis of marine structures and recent advanced materials and structures used in the structural design and analysis of ship and offshore platforms.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
cruciform structure; model experiment; numerical simulation; ship collision and grounding; ductile failure criteria; marine pipelines; dynamic behavior; Johnson–Cook (J-C) model; tensile test; numerical simulation; node configuration; platform stress; transformation mode; negative Poisson’s ratio; Star-CCM+ and ABAQUS Co-simulation; offshore semi-submersible wind turbine; fluid-structure interaction (FSI); multiphysics load; 3D star-shaped honeycomb; platform stress; stress–strain curve; specific energy absorption; negative Poisson’s ratio; longitudinal strength; ship FE model; shear force; bending moment; global ship analysis; algorithm; pendulum-tuned mass damper; SSXCTD buoyancy platform; flow-induced vibration; structural damping; finite volume simulation; sandwich beam with metal foam; repeated impacts; plastic behavior; theoretical analysis; membrane factor method; bolted ball joint; sealing method; numerical simulation analysis; air tightness test; ship structure health monitoring; longitudinal bending moment identification; XGboost fitting; four-point bending experiment; influence coefficient matrix; stiffened plates; longitudinal and transversal curvatures; lateral ultimate strength; collapse modes; empirical formula; lateral soil resistance; CEL method; reinforced thermoplastic pipes (RTPs); pipe–soil interaction; submarine cable; burial; mechanical cutting mechanism; cutting mechanism; chain-type; simulation tests; multi-support shafting; shafting alignment; transfer learning; bearing displacement value calculation; n/a

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