4.4 Article

A three-dimensional model to analyse dynamic response of VLFS based on the Kane method

Related references

Note: Only part of the references are listed.
Article Engineering, Marine

A simplified method for nonlinear hydroelastic responses of a truss-type VLFS in oblique seas based on orthotropic plate model

Zhanyang Chen et al.

Summary: The load response characteristics of VLFS in oblique waves are crucial for the safety assessment of VLFS structures. However, current research focuses on box-typed VLFS structures, neglecting the complexity of truss-type VLFS structures. Therefore, a simplified time-domain nonlinear hydroelastic method is proposed to analyze truss-type VLFS structures, and useful conclusions are drawn from the analysis results.

SHIPS AND OFFSHORE STRUCTURES (2022)

Article Engineering, Marine

A method to predict hydroelastic responses of VLFS under waves and moving loads

Heng Huang et al.

Summary: Based on the multi-floating-body theory, a novel method is developed to predict the hydroelastic responses of a VLFS under waves and moving loads. The proposed method is verified using ANSYS-AQWA software and is found to be accurate in analyzing the dynamic responses of the multi-floating-body model. The results demonstrate that this method is more convenient for considering various combined loads.

OCEAN ENGINEERING (2022)

Article Engineering, Civil

A method to Estimate Dynamic Responses of VLFS Based on Multi-Floating-Module Model Connected by Elastic Hinges

Huang Heng et al.

Summary: A novel method is proposed to estimate the dynamic responses of VLFS using the elastic foundation beam theory and the multi-floating-module hydrodynamic theory. By solving the rotation stiffness problem of elastic hinges through static analysis, the dynamic responses of VLFS can be obtained. The validation of the method shows satisfactory agreement with experiment and calculation data from relative references.

CHINA OCEAN ENGINEERING (2021)

Article Engineering, Marine

Experimental study on responses of an 8-module VLFS considering different encounter wave conditions

J. Ding et al.

Summary: This study conducted experiments on the responses of a VLFS under different encounter wave conditions, and found that inhomogeneous wave conditions significantly influence the VLFS, particularly causing a notable increase in connector loads. Traditional numerical methods using homogeneous wave fields may not be suitable for the safe design of VLFS in complex wave environments.

MARINE STRUCTURES (2021)

Article Engineering, Mechanical

Dynamic hydroelastic response of a surface-piercing strut in waves and ventilated flows

Y. L. Young et al.

JOURNAL OF FLUIDS AND STRUCTURES (2020)

Article Engineering, Mechanical

A 3D direct coupling method for steady ship hydroelastic analysis

Ik Jae Lee et al.

JOURNAL OF FLUIDS AND STRUCTURES (2020)

Article Engineering, Marine

A study of hydroelastic behavior of hinged VLFS

Yonggang Sun et al.

INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING (2018)

Review Engineering, Marine

A review of Very Large Floating Structures (VLFS) for coastal and offshore uses

Miguel Lamas-Pardo et al.

OCEAN ENGINEERING (2015)

Article Engineering, Marine

Hydroelastic analysis of floating plates with multiple hinge connections in regular waves

Joo-Seong Yoon et al.

MARINE STRUCTURES (2014)

Article Engineering, Ocean

A Study of the Roll Motion by Means of a Free Decay Test

Hamid Zeraatgar et al.

JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING-TRANSACTIONS OF THE ASME (2010)

Article Engineering, Marine

Hydroelastic analysis of flexible floating interconnected structures

Shixiao Fu et al.

OCEAN ENGINEERING (2007)

Article Engineering, Marine

Overview of Megafloat: Concept, design criteria, analysis, and design

H Suzuki

MARINE STRUCTURES (2005)