Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7381683 | Physica A: Statistical Mechanics and its Applications | 2014 | 10 Pages |
Abstract
With the aim of gaining insight into the notoriously difficult problem of energy and vorticity cascades in high dimensional incompressible flows, we take a simpler and very well understood low dimensional analog and approach it from a new perspective, using the Fourier transform. Specifically, we study, numerically and analytically, how kinetic energy moves from one scale to another in solutions of the hyperbolic or inviscid Burgers equation in one spatial dimension (1D). We restrict our attention to initial conditions which go to zero as xâ±â. The main result we report here is a Fourier analytic way of describing the cascade process. We find that the cascade proceeds by rapid growth of a crossover scale below which there is asymptotic power law decay of the magnitude of the Fourier transform.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Adam Smith N. Costa, J.M. de Araújo, Nir Cohen, Liacir S. Lucena, G.M. Viswanathan,