Associate Professor
Institut Élie Cartan
Université Henri Poincaré, Nancy

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Publications

Journals

  1. With C. Conca and M. Malik: Detection of a moving rigid solid in a perfect fluid, Inverse Problems, 2010, To appear, arXiv.
  2. With B. Pinçon: Locomotion of articulated bodies in an ideal fuid: 2d model with buoyancy, circulation and collisions. Math. Models Methods Appl. Sci, 2010, To appear, HAL.
  3. Locomotion of deformable bodies in an ideal fuid: Newtonian versus Lagrangian formalisms. J. Nonlinear Sci. 19(6):665-715, 2009, HAL.
  4. On the self-displacement of deformable bodies in a potential fluid flow. Math. Models Methods Appl. Sci. 18(11):1945-1981, 2008, HAL.
  5. With J. Houot: On the motion and collisions of rigid bodies in an ideal fluid. Asymptot. Anal., 56(3-4):125-158, 2008, HAL.
  6. With E. Zuazua: Large time behavior for a simplified N-dimensional model of fluid-solid interaction. Comm. Partial Differential Equations 30 (2005), no. 1-3, 377-417, HAL.
  7. Stability and linear oscillations of liquid bridges with varied boundary conditions under zero gravity. Z. Angew. Math. Phys. 54 (2003), no. 6, 977--1000.
  8. Petites oscillations d'un liquide, dans un container de révolution avec fond élastique, en l'absence de pesanteur. Z. Angew. Math. Phys. 48 (1997), no. 4, 629-645.

Proceedings

  1. With T. Chambrion: When Fish Moonwalk, IEEE ACC 2010, Baltimore.
  2. With J. Cartier: Geometric Eddington factor for radiative transfer problems. Numerical methods for hyperbolic and kinetic problems, 271-293, IRMA Lect. Math. Theor. Phys., 7, Eur. Math. Soc., Zürich, 2005, HAL.

Submitted

  1. With T. Chambrion: Locomotion and control of a self-propelled shape-changing body in a fluid. 2010, arXiv.
  2. With T. Chambrion: Generalized Scallop Theorem for Linear Swimmers. 2010, arXiv
  3. Passive and Self-propelled Locomotion of an Elastic Swimmer in a Perfect Fluid, 2010, HAL.