Advanced materials modelling via fractional calculus: challenges and perspectives

Author:

Failla Giuseppe1ORCID,Zingales Massimiliano2ORCID

Affiliation:

1. Department of Civil, Environmental, Energy and Materials Engineering (DICEAM), University of Reggio Calabria, Via Graziella, Località Feo di Vito, 89124 Reggio Calabria, Italy

2. Department of Engineering, University of Palermo, Viale delle Scienze ed. 8, 90128, Palermo, Italy

Abstract

Fractional calculus is now a well-established tool in engineering science, with very promising applications in materials modelling. Indeed, several studies have shown that fractional operators can successfully describe complex long-memory and multiscale phenomena in materials, which can hardly be captured by standard mathematical approaches as, for instance, classical differential calculus. Furthermore, fractional calculus has recently proved to be an excellent framework for modelling non-conventional fractal and non-local media, opening valuable prospects on future engineered materials. The theme issue gathers cutting-edge theoretical, computational and experimental studies on advanced materials modelling via fractional calculus, with a focus on complex phenomena and non-conventional media. This article is part of the theme issue ‘Advanced materials modelling via fractional calculus: challenges and perspectives’.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference120 articles.

1. A new definition of fractional derivative without singular kernel;Caputo M;Prog. Fract. Differ. Appl.,2015

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