Downwind yacht sails are subjected to fluid structure interaction effects which can slightly change the initial design shape, with a direct impact on the overall performances. The turbulent flow acting on downwind sails is separated for the larger part of the device, with large vortices and recirculating regions. The sail is made of a thin fabric, the deformation of which is affected by wrinkling, which produces out-of-plane oscillations of the surface of the fabric, and locally changes the stress/strain distribution. Because of the interactions of these fluid and structural phenomena, the detailed analysis of downwind sails requires sophisticated approaches able to capture the structural deformations, the generation of the wrinkles and the...
A Fluid-Structure Interaction (FSI) conventional case study is proposed to be used as a benchmark fo...
The dynamic Fluid Structure Interaction (FSI) of yacht sails submitted to a harmonic pitching motion...
A numerical model for the simulation of the fluid-structure interaction (FSI) between the wind and th...
Sails are an example of fluid structure interaction (FSI), where the structural deformation, as well...
Sail analysis is a rapidly evolving field, since it has a big impact in the performances of yachts. ...
International audienceWe propose a method of modelling sail type structures which captures the wrink...
Computational Fluid Dynamics (CFD), as early used in the design stage, helps engineers to come up wi...
In recent years technological innovations has allowed large improvements to be made in sail design a...
The process of designing a sail can be a challenging task because of the difficulties in predicting ...
While historically sailmaking and saildesign were considered as arts, in the 20th century, mainly fr...
The spreading of high computational resources at very low costs led, over the years, to develop new ...
ABSTRACTMost yacht sails are made of thin fabric, and they have a cambered shape to generate lift fo...
Gennakers are lightweight and flexible sails, used for downwind sailing configurations. Qualities so...
This thesis focuses on the numerical simulation of yacht sails using both computational fluid dynami...
A Fluid-Structure Interaction (FSI) conventional case study is proposed to be used as a benchmark fo...
The dynamic Fluid Structure Interaction (FSI) of yacht sails submitted to a harmonic pitching motion...
A numerical model for the simulation of the fluid-structure interaction (FSI) between the wind and th...
Sails are an example of fluid structure interaction (FSI), where the structural deformation, as well...
Sail analysis is a rapidly evolving field, since it has a big impact in the performances of yachts. ...
International audienceWe propose a method of modelling sail type structures which captures the wrink...
Computational Fluid Dynamics (CFD), as early used in the design stage, helps engineers to come up wi...
In recent years technological innovations has allowed large improvements to be made in sail design a...
The process of designing a sail can be a challenging task because of the difficulties in predicting ...
While historically sailmaking and saildesign were considered as arts, in the 20th century, mainly fr...
The spreading of high computational resources at very low costs led, over the years, to develop new ...
ABSTRACTMost yacht sails are made of thin fabric, and they have a cambered shape to generate lift fo...
Gennakers are lightweight and flexible sails, used for downwind sailing configurations. Qualities so...
This thesis focuses on the numerical simulation of yacht sails using both computational fluid dynami...
A Fluid-Structure Interaction (FSI) conventional case study is proposed to be used as a benchmark fo...
The dynamic Fluid Structure Interaction (FSI) of yacht sails submitted to a harmonic pitching motion...
A numerical model for the simulation of the fluid-structure interaction (FSI) between the wind and th...