2001/06/30 by Stephen Montgomery-Smith, Milan Pokorny
Mathematics · #math.AP #math.AT #math.PR #msc:35Q35 #msc:76D05 #msc:55M25 #msc:60H30
published as Commentationes Mathematicae Universitatis Carolinae, 43, 1, (2002), 61-75 · Also available at http://www.math.missouri.edu/~stephen/preprints/ - This version has small corrections
arxiv created 2002/01/08 · arxiv updated 2009/11/30
We analyze the equation coming from the Eulerian-Lagrangian description of fluids. We discuss a couple of ways to extend this notion to viscous fluids. The main focus of this paper is to discuss the first way, due to Constantin. We show that this description can only work for short times, after which the ``back to coordinates map'' may have no smooth inverse. Then we briefly discuss a second way that uses Brownian motion. We use this to provide a plausibility argument for the global regularity for the Navier-Stokes equation.