ABSTRACTThis paper examines the suitability of using the Computational Fluid Dynamics (CFD) tools, ANSYS-CFX, as an initial analysis tool for predicting the drag and propulsion performance (thrust and torque) of a concept underwater vehicle design. In order to select an appropriate thruster that will achieve the required speed of the Underwater Disk Robot (UDR), the ANSYS-CFX tools were used to predict the drag force of the UDR. Vertical Planar Motion Mechanism (VPMM) test simulations (i.e. pure heaving and pure pitching motion) by CFD motion analysis were carried out with the CFD software. The CFD results reveal the distribution of hydrodynamic values (velocity, pressure, etc.) of the UDR for these motion studies. Finally, CFD bollard pull...
ABSTRACTAutonomous Underwater Vehicles (AUVs) provide a useful means of collecting detailed oceano-g...
The calculation of the drag force is a fundamental requirement in the design of any submerged system...
For a design of a bio-inspired fish like robot with caudal fin a Fluid Structure Interaction (FSI) a...
ABSTRACTThis paper examines the suitability of using the Computational Fluid Dynamics (CFD) tools, A...
Fan-wing thrusters are primarily used for aircraft propulsion, but their potential for underwater ap...
In this paper, a new computational fluid dynamics approach is suggested to calculate translational l...
Computational Fluid Dynamics (CFD) was used in this report to determine the hydrodynamic characteris...
Remotely Operated Vehicle (ROV) is mainly used for many tasks and applications such as exploration i...
Dynamics model is essential and critical for a successful navigation and control system design of an...
The missions being proposed for autonomous underwater vehicles (AUVs), by both marine scientists and...
Hydrodynamic coefficient estimation is crucial to the shape design, dynamic modeling, and control of...
Nowadays, underwater robots play a significant role in many aspects of industry such as mine hunting...
Autonomous Underwater Vehicles (AUV’s) provide an important tool for collecting detailed scientific ...
Fan-wings, as a form of aircraft propulsion, have shown effectiveness for underwater propulsion. The...
Maritime Platforms Division within DSTO is ciirrently studying the science and technology of autonom...
ABSTRACTAutonomous Underwater Vehicles (AUVs) provide a useful means of collecting detailed oceano-g...
The calculation of the drag force is a fundamental requirement in the design of any submerged system...
For a design of a bio-inspired fish like robot with caudal fin a Fluid Structure Interaction (FSI) a...
ABSTRACTThis paper examines the suitability of using the Computational Fluid Dynamics (CFD) tools, A...
Fan-wing thrusters are primarily used for aircraft propulsion, but their potential for underwater ap...
In this paper, a new computational fluid dynamics approach is suggested to calculate translational l...
Computational Fluid Dynamics (CFD) was used in this report to determine the hydrodynamic characteris...
Remotely Operated Vehicle (ROV) is mainly used for many tasks and applications such as exploration i...
Dynamics model is essential and critical for a successful navigation and control system design of an...
The missions being proposed for autonomous underwater vehicles (AUVs), by both marine scientists and...
Hydrodynamic coefficient estimation is crucial to the shape design, dynamic modeling, and control of...
Nowadays, underwater robots play a significant role in many aspects of industry such as mine hunting...
Autonomous Underwater Vehicles (AUV’s) provide an important tool for collecting detailed scientific ...
Fan-wings, as a form of aircraft propulsion, have shown effectiveness for underwater propulsion. The...
Maritime Platforms Division within DSTO is ciirrently studying the science and technology of autonom...
ABSTRACTAutonomous Underwater Vehicles (AUVs) provide a useful means of collecting detailed oceano-g...
The calculation of the drag force is a fundamental requirement in the design of any submerged system...
For a design of a bio-inspired fish like robot with caudal fin a Fluid Structure Interaction (FSI) a...