On the role of sharp chains in the transport theorem
Abstract
A generalized transport theorem for convecting irregular domains is presented in the setting of Federer's geometric measure theory. A prototypical -dimensional domain is viewed as a flat -chain of finite mass in an open set of an -dimensional Euclidean space. The evolution of such a generalized domain in time is assumed to be in accordance to a bi-Lipschitz type map. The induced curve is shown to be continuous with respect to the flat norm and differential with respect to the sharp norm on currents in . A time dependent property is naturally assigned to the evolving region via the action of an -cochain on the current associated with the domain. Applying a representation theorem for cochains the properties are shown to be locally represented by an -form. Using these notions a generalized transport theorem is presented.
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Cite
@article{arxiv.1502.00168,
title = {On the role of sharp chains in the transport theorem},
author = {Lior Falach and Reuven Segev},
journal= {arXiv preprint arXiv:1502.00168},
year = {2016}
}
Comments
27 pages