ABSTRACTA reliable steady/transient hydro-elastic analysis is developed for flexible (composite) marine propeller blade design which deforms according to its environmental load (ship speed, revolution speed, wake distribution, etc.) Hydro-elastic analysis based on CFD and FEM has been widely used in the engineering field because of its accurate results however it takes large computation time to apply early propeller design stage. Therefore the analysis based on a boundary element method-Finite Element Method (BEM-FEM) Fluid-Structure Interaction (FSI) is introduced for computational efficiency and accuracy. The steady FSI analysis, and its application to reverse engineering, is designed for use regarding optimum geometry and ply stack desig...
The recent strong development of composite blades for propellers and tidal turbines has been driven...
This paper presents a two-way Fluid-Structure Interaction (FSI) co-simulation of a marine propeller ...
Carbon fibre composite has extremely high strength, low density and no corrosion in sea water. These...
ABSTRACTA reliable steady/transient hydro-elastic analysis is developed for flexible (composite) mar...
The paper presents a method based on hydro-elastic analysis to determine the hydrodynamics character...
Boundary element methods (BEM) have been used for propeller hydrodynamic calculations since the 1990...
Boundary element methods (BEM) have been used for propeller hydrodynamic calculations since the 1990...
A coupled boundary element method finite element method (BEMFEM) is presented for the transient hy...
The first part of the paper presents a partitioned fluid–structure interaction (FSI) coupling for th...
Propellers are used to propel the vast majority of ships. They are most commonly made out of Nickel-...
A fairly recent development in the maritime industry is the rising interest in composites, as they h...
In the past several decades, many papers have been published on fluid–structure coupled calculations...
Higher efficiencies, higher cavitation inception speeds and reduced acoustic signature are claimed b...
Professional paper The paper presents a method based on hydro-elastic analysis to determine the hydr...
In this work, a coupled boundary element method (BEM) – finite element method (FEM) is presented fo...
The recent strong development of composite blades for propellers and tidal turbines has been driven...
This paper presents a two-way Fluid-Structure Interaction (FSI) co-simulation of a marine propeller ...
Carbon fibre composite has extremely high strength, low density and no corrosion in sea water. These...
ABSTRACTA reliable steady/transient hydro-elastic analysis is developed for flexible (composite) mar...
The paper presents a method based on hydro-elastic analysis to determine the hydrodynamics character...
Boundary element methods (BEM) have been used for propeller hydrodynamic calculations since the 1990...
Boundary element methods (BEM) have been used for propeller hydrodynamic calculations since the 1990...
A coupled boundary element method finite element method (BEMFEM) is presented for the transient hy...
The first part of the paper presents a partitioned fluid–structure interaction (FSI) coupling for th...
Propellers are used to propel the vast majority of ships. They are most commonly made out of Nickel-...
A fairly recent development in the maritime industry is the rising interest in composites, as they h...
In the past several decades, many papers have been published on fluid–structure coupled calculations...
Higher efficiencies, higher cavitation inception speeds and reduced acoustic signature are claimed b...
Professional paper The paper presents a method based on hydro-elastic analysis to determine the hydr...
In this work, a coupled boundary element method (BEM) – finite element method (FEM) is presented fo...
The recent strong development of composite blades for propellers and tidal turbines has been driven...
This paper presents a two-way Fluid-Structure Interaction (FSI) co-simulation of a marine propeller ...
Carbon fibre composite has extremely high strength, low density and no corrosion in sea water. These...