Published September 9, 2016 | Version v1
Publication

Absence of splash singularities for surface quasi-geostrophic sharp fronts and the Muskat problem

Description

In this paper, for both the sharp front surface quasi-geostrophic equation and the Muskat problem, we rule out the "splash singularity" blow-up scenario; in other words, we prove that the contours evolving from either of these systems cannot intersect at a single point while the free boundary remains smooth. Splash singularities have been shown to hold for the free boundary incompressible Euler equation in the form of the water waves contour evolution problem. Our result confirms the numerical simulations in earlier work, in which it was shown that the curvature blows up because the contours collapse at a point. Here, we prove that maintaining control of the curvature will remove the possibility of pointwise interphase collapse. Another conclusion that we provide is a better understanding of earlier work in which squirt singularities are ruled out; in this case, a positive volume of fluid between the contours cannot be ejected in finite time.

Abstract

Ministerio de Ciencia e Innovación

Abstract

National Science Foundation

Abstract

Alfred P. Sloan Foundation

Additional details

Created:
March 27, 2023
Modified:
November 30, 2023