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3D modeling of wave-seabed-pipeline in marine environments
Behnam Shabani, Dong-Sheng Jeng
Research output
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Article
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peer-review
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Dive into the research topics of '3D modeling of wave-seabed-pipeline in marine environments'. Together they form a unique fingerprint.
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Keyphrases
Pressure Stress
100%
Wave-induced
100%
Pore Pressure
100%
Wave Characteristics
100%
Three-dimensional Characteristics
100%
Soil Reaction
100%
3D Modeling
100%
3D numerical Model
100%
Soil Stress
100%
Soil Characteristics
100%
Soil Trench
100%
Seabed Response
100%
Underwater pipelines
100%
2D Model
100%
3D Model
100%
Trench Configurations
100%
Seabed Instability
100%
Seabed pipeline
100%
Finite Element Method
100%
Marine Environment
100%
Wave Obliquity
100%
Wave Loading
100%
Earth and Planetary Sciences
Trench
100%
Marine Environment
100%
Pore Pressure
50%
Numerical Model
50%
Elastic Wave
50%
Obliquity
50%
Submarine Pipeline
50%
Soil Stress
50%
Engineering
Numerical Model
100%
Submarine Pipeline
100%
Wave Loading
100%
Finite Element Analysis
100%