We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incompressible fluid with a given amount of circulation around the body. We derive the equations of motion for this system by performing symplectic reduction with respect to the group of volume-preserving diffeomorphisms and obtain the relevant Poisson structures after a further Poisson reduction with respect to the group of translations and rotations. In this way, we recover the equations of motion given for this system by Chaplygin and Lamb, and we give a geometric interpretation for the Kutta-Zhukowski force as a curvature-related effect. In addition, we show that the motion of a rigid body with circulation can be understood as a geodesic flow o...
In this paper, we consider the motion of the hydrodynamic Chaplygin sleigh, a planar rigid body in a...
We consider the motion of a planar rigid body in a potential flow with circulation and subject to a ...
This paper concerns the dynamics of a rigid body moving under the influence of a central gravitation...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incomp...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incomp...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incom...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
ABSTRACT The motion of a circular body in 2D potential flow is studied using symplectic reduction. T...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
International audienceWe consider the motion of several rigid bodies immersed in a two-dimensional i...
In this paper, we consider the motion of the hydrodynamic Chaplygin sleigh, a planar rigid body in a...
We consider the motion of a planar rigid body in a potential flow with circulation and subject to a ...
This paper concerns the dynamics of a rigid body moving under the influence of a central gravitation...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incomp...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incomp...
We consider the motion of a two-dimensional body of arbitrary shape in a planar irrotational, incom...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
ABSTRACT The motion of a circular body in 2D potential flow is studied using symplectic reduction. T...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
The motion of a circular body in 2D potential flow is studied using symplectic reduction. The equati...
We derive the equations of motion for a planar rigid body of circular shape moving in a 2D perfect f...
International audienceWe consider the motion of several rigid bodies immersed in a two-dimensional i...
In this paper, we consider the motion of the hydrodynamic Chaplygin sleigh, a planar rigid body in a...
We consider the motion of a planar rigid body in a potential flow with circulation and subject to a ...
This paper concerns the dynamics of a rigid body moving under the influence of a central gravitation...