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A One-Phase Space-Fractional Stefan Problem With No Liquid Initial Domain

Sabrina D. Roscani, Katarzyna Ryszewska, Lucas Venturato

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Source: Crossref

Published: Sep 29, 2022

DOI: 10.1137/21m1461599

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Source abstract

We consider a phase-change problem for a one-dimensional material with a nonlocal flux, expressed in terms of the Caputo derivative, which derives in a space-fractional Stefan problem. We prove existence of a unique solution to a phase-change problem with the fractional Neumann boundary condition at the fixed face x=0x=0, where the domain, at the initial time, consists of liquid and solid. Then we use this result to prove the existence of a solution to an analogous problem with solid initial domain, when it is not possible to transform the domain into a cylinder.

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