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Study of offshore monopile behaviour due to ocean waves
Miao Li
, Hong Zhang, hong Guan
Imaging and Sensing Research Group
Computing, Mathematics and Engineering
Griffith University
Research output
:
Contribution to journal
›
Article
›
peer-review
50
Citations (Scopus)
Overview
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Keyphrases
Ocean Waves
100%
Offshore Monopile
100%
Monopile Foundation
100%
Scaled Boundary Finite Element Method (SBFEM)
75%
Finite Element Model
75%
Offshore Monopile Foundations
50%
Water Depth
25%
Three-dimensional (3D)
25%
Structural Response
25%
Shallow Water
25%
Wave Properties
25%
Numerical Techniques
25%
Wave Amplitude
25%
Analytical Solution
25%
Computational Efficiency
25%
Wave number
25%
Structural Behavior
25%
Wave Loads
25%
Equivalent Finite Element Model
25%
Lateral Displacement
25%
Foundation Structure
25%
Offshore pile Foundation
25%
Dynamic Ocean
25%
Numerical Approximation
25%
Radial Direction
25%
Ocean Environment
25%
Geometric Dimension
25%
Wave Effects
25%
Amplitude Depth
25%
Offshore Renewables
25%
Earth and Planetary Sciences
Ocean Wave
100%
Shallow Water
50%
Water Depth
50%
Renewable Energy
50%
Wave Property
50%
Structural Response
50%
Ocean Dynamics
50%
Pile Foundations
50%
Engineering
Monopile Foundation
100%
Finite Element Modeling
66%
Computational Efficiency
16%
Parametric Study
16%
Wave Number
16%
Pile Foundations
16%
Numerical Technique
16%
Offshore Pile
16%
Geometric Dimension
16%
Radial Direction
16%
Offshore Renewable Energy
16%
Structural Behavior
16%
Lateral Displacement
16%
Structural Response
16%