AbstractA new rescaling of the vorticity moments and their growth terms is used to characterise the evolution of anti-parallel vortices governed by the 3D Euler equations. To suppress unphysical instabilities, the initial condition uses a balanced profile for the initial magnitude of vorticity along with a new algorithm for the initial vorticity direction. The new analysis uses a new adaptation to the Euler equations of a rescaling of the vorticity moments developed for Navier-Stokes analysis. All rescaled moments grow in time, with the lower-order moments bounding the higher-order moments from above, consistent with new results from several Navier-Stokes calculations. Furthermore, if, as an inviscid flow evolves, this ordering is assumed t...
We study the interplay between the local geometric properties and the non-blowup of the 3D incompres...
New analysis of the scaling structure of a numerical solution of the Euler equations finds that init...
In this article we describe the system of point vortices, derived by Helmholtz from the Euler equati...
A new rescaling of the vorticity moments and their growth terms is used to characterise the evolutio...
AbstractA new rescaling of the vorticity moments and their growth terms is used to characterise the ...
The inviscid growth of a range of vorticity moments is compared using Euler calculations of anti-pa...
We study the interplay between the local geometric properties and the non-blowup of the 3D incompres...
AbstractA series of numerical experiments is suggested for the three-dimensional Navier-Stokes and E...
By performing estimates on the integral of the absolute value of vorticity along a local vortex line...
By exploring a local geometric property of the vorticity field along a vortex filament, we establish...
AbstractWe present a numerical method of analyzing possibly singular incompressible 3D Euler flows u...
Whether the 3D incompressible Euler and Navier–Stokes equations can develop a finite-time singularit...
New analysis of the scaling structure of a numerical solution of the Euler equations finds that init...
In this paper, we perform a careful numerical study of nearly singular solutions of the 3D incompres...
By performing estimates on the integral of the absolute value of vorticity along a local vortex line...
We study the interplay between the local geometric properties and the non-blowup of the 3D incompres...
New analysis of the scaling structure of a numerical solution of the Euler equations finds that init...
In this article we describe the system of point vortices, derived by Helmholtz from the Euler equati...
A new rescaling of the vorticity moments and their growth terms is used to characterise the evolutio...
AbstractA new rescaling of the vorticity moments and their growth terms is used to characterise the ...
The inviscid growth of a range of vorticity moments is compared using Euler calculations of anti-pa...
We study the interplay between the local geometric properties and the non-blowup of the 3D incompres...
AbstractA series of numerical experiments is suggested for the three-dimensional Navier-Stokes and E...
By performing estimates on the integral of the absolute value of vorticity along a local vortex line...
By exploring a local geometric property of the vorticity field along a vortex filament, we establish...
AbstractWe present a numerical method of analyzing possibly singular incompressible 3D Euler flows u...
Whether the 3D incompressible Euler and Navier–Stokes equations can develop a finite-time singularit...
New analysis of the scaling structure of a numerical solution of the Euler equations finds that init...
In this paper, we perform a careful numerical study of nearly singular solutions of the 3D incompres...
By performing estimates on the integral of the absolute value of vorticity along a local vortex line...
We study the interplay between the local geometric properties and the non-blowup of the 3D incompres...
New analysis of the scaling structure of a numerical solution of the Euler equations finds that init...
In this article we describe the system of point vortices, derived by Helmholtz from the Euler equati...