International audienceAutonomous Underwater Vehicles (AUVs) are increasingly important tools for marine applications. A reasonably reliable prediction of their six degrees of freedom (6DOF) motions is essential. The manoeuvrability of these unmanned submarines relies on the capability to predict the hydrodynamic forces on a freely moving submerged body. Numerical simulators integrating the full physics of the problem have been developed but their validation remains the key issue. Three-dimensional calculations still take too much computing power to complete the very large number of simulations which is required for a full validation procedure. Furthermore, a very large pool with expensive measuring devices is also necessary to obtain experi...
This study presents the results of small scale flume experiments on a submerged rectangular cylinder...
From Pontryagin’s Maximum Principle to the Duke Kahanamoku Aquatic Complex; we develop the theory an...
Coefficients or hydrodynamic derivatives of autonomous underwater vehicles (AUVs) play a key role in...
International audienceAutonomous Underwater Vehicles (AUVs) are increasingly important tools for mar...
The prediction of manoeuvring of underwater vehicles such as UAV or submarines is a key point for t...
In the early days of underwater vehicle development, the hull geometry of tethered submersibles was ...
Hydrodynamic derivatives are used to model the manoeuvring performance of proposed and existing hull...
Maneuverability is one of the most important performance characteristics of submarines. Hydrodynamic...
This paper reports on numerical simulations conducted on an underwater vehicle for six-degrees of fr...
This thesis presents the development of a validated six Degrees-of-Freedom (6-DOF) manoeuvring simul...
The missions being proposed for autonomous underwater vehicles (AUVs), by both marine scientists and...
Submarines are relatively complicated machinery that are required to operate in a range of environme...
The work detailed in this thesis investigates the behaviour of the hydrodynamic interaction effects ...
In order to achieve 5 degrees of freedom (DOFs) movement in an underwater space with only two moving...
An added momentum sources-based method is proposed in this paper to compute hydrodynamic coefficient...
This study presents the results of small scale flume experiments on a submerged rectangular cylinder...
From Pontryagin’s Maximum Principle to the Duke Kahanamoku Aquatic Complex; we develop the theory an...
Coefficients or hydrodynamic derivatives of autonomous underwater vehicles (AUVs) play a key role in...
International audienceAutonomous Underwater Vehicles (AUVs) are increasingly important tools for mar...
The prediction of manoeuvring of underwater vehicles such as UAV or submarines is a key point for t...
In the early days of underwater vehicle development, the hull geometry of tethered submersibles was ...
Hydrodynamic derivatives are used to model the manoeuvring performance of proposed and existing hull...
Maneuverability is one of the most important performance characteristics of submarines. Hydrodynamic...
This paper reports on numerical simulations conducted on an underwater vehicle for six-degrees of fr...
This thesis presents the development of a validated six Degrees-of-Freedom (6-DOF) manoeuvring simul...
The missions being proposed for autonomous underwater vehicles (AUVs), by both marine scientists and...
Submarines are relatively complicated machinery that are required to operate in a range of environme...
The work detailed in this thesis investigates the behaviour of the hydrodynamic interaction effects ...
In order to achieve 5 degrees of freedom (DOFs) movement in an underwater space with only two moving...
An added momentum sources-based method is proposed in this paper to compute hydrodynamic coefficient...
This study presents the results of small scale flume experiments on a submerged rectangular cylinder...
From Pontryagin’s Maximum Principle to the Duke Kahanamoku Aquatic Complex; we develop the theory an...
Coefficients or hydrodynamic derivatives of autonomous underwater vehicles (AUVs) play a key role in...