The hydroelastic behaviour of a pontoon-type VLFS subjected to unsteady external loads in wave condition is investigated in the context of the time-domain modal expansion theory, in which the boundary element method (BEM) based on time domain Kelvin sources is used for hydrodynamic forces and the finite element method (FEM) is adopted for solving the deflections of the VLFS. In this analysis, the interpolation-tabulation scheme is applied to assess rapidly and accurately the free-surface Green function in finite water depth, and the boundary integral equation of a quarter VLFS model is further established taking advantage of symmetry of flow field and structure. The VLFS is modelled as an equivalent solid plate based on the Mindlin plate th...
Hydroelasticity of marine structures with and without forward speed is studied directly using time d...
Presented herein is a literature survey of the research on hydroelastic analysis of pontoon-type ver...
Wave loads estimation and structural strength evaluation are the fundamental work at the ship design...
The hydroelastic behaviour of a pontoon-type VLFS subjected to unsteady external loads in wave condi...
This paper is concerned with the hydroelastic response of pontoon-type, very large floating structur...
Pontoon-type very large floating structures (VLFS) are giant plates resting on the sea surface. As t...
This paper is concerned with the hydroelastic analysis of a pontoon-type circular very large floatin...
An investigation upon the hydrodynamic/hydroelastic behaviour of two types (pontoon and semi-submers...
A novel frequency domain numerical method for Very Large Floating Structure (VLFS) hydroelasticity i...
Hydroelasticity of marine structures with and without forward speed is studied directly using time d...
Pneumatically supported floating structures, which utilize an aircushion below the structural bottom...
In the present study, a brief discussion on the hydroelastic analysis of VLFS using Boundary Element...
This paper is concerned with the hydroelastic analysis of a pontoon-type, circular, very large float...
SummaryIn the present study, a brief discussion on the hydroelastic analysis of VLFS using Boundary ...
This paper is concerned with the reduction of hydroelastic responses of pontoon-type very large floa...
Hydroelasticity of marine structures with and without forward speed is studied directly using time d...
Presented herein is a literature survey of the research on hydroelastic analysis of pontoon-type ver...
Wave loads estimation and structural strength evaluation are the fundamental work at the ship design...
The hydroelastic behaviour of a pontoon-type VLFS subjected to unsteady external loads in wave condi...
This paper is concerned with the hydroelastic response of pontoon-type, very large floating structur...
Pontoon-type very large floating structures (VLFS) are giant plates resting on the sea surface. As t...
This paper is concerned with the hydroelastic analysis of a pontoon-type circular very large floatin...
An investigation upon the hydrodynamic/hydroelastic behaviour of two types (pontoon and semi-submers...
A novel frequency domain numerical method for Very Large Floating Structure (VLFS) hydroelasticity i...
Hydroelasticity of marine structures with and without forward speed is studied directly using time d...
Pneumatically supported floating structures, which utilize an aircushion below the structural bottom...
In the present study, a brief discussion on the hydroelastic analysis of VLFS using Boundary Element...
This paper is concerned with the hydroelastic analysis of a pontoon-type, circular, very large float...
SummaryIn the present study, a brief discussion on the hydroelastic analysis of VLFS using Boundary ...
This paper is concerned with the reduction of hydroelastic responses of pontoon-type very large floa...
Hydroelasticity of marine structures with and without forward speed is studied directly using time d...
Presented herein is a literature survey of the research on hydroelastic analysis of pontoon-type ver...
Wave loads estimation and structural strength evaluation are the fundamental work at the ship design...