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Instability and Non-uniqueness for the 2D Euler Equations, after M. Vishik - (AMS-219): Camillo De Lellis, Elia Brué, Dallas... Instability and Non-uniqueness for the 2D Euler Equations, after M. Vishik - (AMS-219)
Camillo De Lellis, Elia Brué, Dallas Albritton, Maria Colombo, Vikram Giri, …
R1,429 Discovery Miles 14 290 Ships in 12 - 17 working days

An essential companion to M. Vishik’s groundbreaking work in fluid mechanics The incompressible Euler equations are a system of partial differential equations introduced by Leonhard Euler more than 250 years ago to describe the motion of an inviscid incompressible fluid. These equations can be derived from the classical conservations laws of mass and momentum under some very idealized assumptions. While they look simple compared to many other equations of mathematical physics, several fundamental mathematical questions about them are still unanswered. One is under which assumptions it can be rigorously proved that they determine the evolution of the fluid once we know its initial state and the forces acting on it. This book addresses a well-known case of this question in two space dimensions. Following the pioneering ideas of M. Vishik, the authors explain in detail the optimality of a celebrated theorem of V. Yudovich in the sixties, which states that, in the vorticity formulation, the solution is unique if the initial vorticity and the acting force are bounded. In particular, the authors show that Yudovich’s theorem cannot be generalized to the L^p setting.

Transport Equations and Multi-D Hyperbolic Conservation Laws (Paperback, 2008 ed.): Luigi Ambrosio Transport Equations and Multi-D Hyperbolic Conservation Laws (Paperback, 2008 ed.)
Luigi Ambrosio; Edited by Fabio Ancona; Gianluca Crippa; Edited by Stefano Bianchini; Camillo De Lellis; Edited by …
R1,305 Discovery Miles 13 050 Ships in 10 - 15 working days

The theory of nonlinear hyperbolic equations in several space dimensions has recently obtained remarkable achievements. This volume provides an up-to-date overview of the status and perspectives of two areas of research in PDEs, related to hyperbolic conservation laws. The captivating volume contains surveys of recent deep results and provides an overview of further developments and related open problems. Readers should have basic knowledge of PDE and measure theory.

Instability and Non-uniqueness for the 2D Euler Equations, after M. Vishik - (AMS-219): Camillo De Lellis, Elia Brué, Dallas... Instability and Non-uniqueness for the 2D Euler Equations, after M. Vishik - (AMS-219)
Camillo De Lellis, Elia Brué, Dallas Albritton, Maria Colombo, Vikram Giri, …
R4,290 Discovery Miles 42 900 Ships in 10 - 15 working days

An essential companion to M. Vishik’s groundbreaking work in fluid mechanics The incompressible Euler equations are a system of partial differential equations introduced by Leonhard Euler more than 250 years ago to describe the motion of an inviscid incompressible fluid. These equations can be derived from the classical conservations laws of mass and momentum under some very idealized assumptions. While they look simple compared to many other equations of mathematical physics, several fundamental mathematical questions about them are still unanswered. One is under which assumptions it can be rigorously proved that they determine the evolution of the fluid once we know its initial state and the forces acting on it. This book addresses a well-known case of this question in two space dimensions. Following the pioneering ideas of M. Vishik, the authors explain in detail the optimality of a celebrated theorem of V. Yudovich in the sixties, which states that, in the vorticity formulation, the solution is unique if the initial vorticity and the acting force are bounded. In particular, the authors show that Yudovich’s theorem cannot be generalized to the L^p setting.

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