We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the construction of its solution as a power series in time. We point out some general facts on this subject, from convergence issues for the power series to the role of symmetries of the initial datum. We then turn the attention to a paper by Behr, Nečas and Wu, ESAIM: M2AN 35 (2001) 229–238; here, the authors chose a very simple Fourier polynomial as an initial datum for the Euler equation and analyzed the power series in time for the solution, determining the first 35 terms by computer algebra. Their calculations suggested for the series a finite convergence radius τ...
We report the results of a computational investigation of two blow-up criteria for the 3D incompress...
The open question of regularity of the fluid dynamical equations is considered one of the most funda...
Whether the three-dimensional (3D) incompressible Euler equations can develop a finite-time singular...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
In this talk, we will discuss the interaction between the stability, and the propagation of regulari...
In this talk, we will discuss the interaction between the stability, and the propagation of regulari...
The first two sections of this work review the framework of [Morosi and Pizzocchero, Nonlinear Analy...
Abstract. The Cauchy problem of the Euler equations is considered with initial data with possibly le...
We report the results of a computational investigation of two blow-up criteria for the 3D incompress...
The open question of regularity of the fluid dynamical equations is considered one of the most funda...
Whether the three-dimensional (3D) incompressible Euler equations can develop a finite-time singular...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
We consider the Euler equation for an incompressible fluid on a three dimensional torus, and the con...
In this talk, we will discuss the interaction between the stability, and the propagation of regulari...
In this talk, we will discuss the interaction between the stability, and the propagation of regulari...
The first two sections of this work review the framework of [Morosi and Pizzocchero, Nonlinear Analy...
Abstract. The Cauchy problem of the Euler equations is considered with initial data with possibly le...
We report the results of a computational investigation of two blow-up criteria for the 3D incompress...
The open question of regularity of the fluid dynamical equations is considered one of the most funda...
Whether the three-dimensional (3D) incompressible Euler equations can develop a finite-time singular...