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20092024
most citedDynamics of rigid bodies in a two dimensional incompressible perfect fluid

5 citations · 7 across the 9 of their papers we have counts for

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math.AP2020

Remote trajectory tracking of rigid bodies immersed in a 2D perfect incompressible fluid

Olivier Glass, József Kolumbán, Franck Sueur

We consider the motion of several rigid bodies immersed in a two-dimensional incompressible perfect fluid. The motion of the rigid bodies is given by the Newton laws with forces du…

math.AP20192 cited

Dynamics of several rigid bodies in a two-dimensional ideal fluid and convergence to vortex systems

Olivier Glass, Franck Sueur

We consider the motion of several solids in a bounded cavity filled with a perfect incompressible fluid, in two dimensions. The solids move according to Newton's law, under the inf…

math.AP20195 cited

Dynamics of rigid bodies in a two dimensional incompressible perfect fluid

Olivier Glass, Christophe Lacave, Alexandre Munnier +1

We consider the motion of several rigid bodies immersed in a two-dimensional incompress-ible perfect fluid, the whole system being bounded by an external impermeable fixed boundary…

math.AP2018

On Kolmogorov entropy compactness estimates for scalar conservation laws without uniform convexity

Fabio Ancona, Olivier Glass, Khai T. Nguyen

In the case of scalar conservation laws with uniformly strictly convex flux , quantitative compactness estimates - in…

math.AP2012

On the controllability of the relativistic Vlasov-Maxwell system

Olivier Glass, Daniel Han-Kwan

In this paper, we study the controllability of the two-dimensional relativistic Vlasov-Maxwell system in a torus, by means of an interior control. We give two types of results. Wit…

math.AP2011

On the motion of a small body immersed in a two dimensional incompressible perfect fluid

Olivier Glass, Christophe Lacave, Franck Sueur

In this paper we prove that the motion of a solid body in a two dimensional incompressible perfect fluid converges, when the body shrinks to a point with fixed mass and circulation…