Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly capture the physics involved. Computational Structural Mechanics (CSM) and Computation Fluid Dynamics (CFD) have to be coupled and at the moment there is a lack of monolithic solvers capable to tackle industrial applications that involves high fidelity models which mesh can be comprised of hundred millions of cells. This paper shows an efficient approach based on standard commercial tools. The FEM solver ANSYS® Mechanical™ is used to extract a given number of eigenmodes. Then the modal shapes are imported in the CFD solver Fluent® using the Add On RBF Morph™. Updating the modal coordinates it is possible to adapt the shape of the model by taking...
The reduction of noise and vibration are very important in the design of hydrofoils. The current stu...
Fluid structure interaction, as applied to flexible structures, has wide application in diverse area...
Recent advancement in computing technology has given us a way to study fluid problems numerically, t...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The Francis-99 hydrofoil is simulated using a quasi two-way Fluid-Structure Interaction procedure. T...
Numerical prediction of vortex-induced vibrations requires employment of the unsteady Navier-Stokes ...
This thesis describes the development and application of a methodology for modelling fluid-structure...
The reduction of noise and vibration are very important in the design of hydrofoils. The current stu...
The reduction of noise and vibration are very important in the design of hydrofoils. The current stu...
Fluid structure interaction, as applied to flexible structures, has wide application in diverse area...
Recent advancement in computing technology has given us a way to study fluid problems numerically, t...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
Fluid Structure Interaction (FSI) numerical modelling requires an efficient workflow to properly cap...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The present paper addresses the numerical fluid-structure interaction (FSI) analysis of a thermowell...
The Francis-99 hydrofoil is simulated using a quasi two-way Fluid-Structure Interaction procedure. T...
Numerical prediction of vortex-induced vibrations requires employment of the unsteady Navier-Stokes ...
This thesis describes the development and application of a methodology for modelling fluid-structure...
The reduction of noise and vibration are very important in the design of hydrofoils. The current stu...
The reduction of noise and vibration are very important in the design of hydrofoils. The current stu...
Fluid structure interaction, as applied to flexible structures, has wide application in diverse area...
Recent advancement in computing technology has given us a way to study fluid problems numerically, t...