Parareal in Time Simulation of Morphological Transformation in Cubic Alloys with Spatially Dependent Composition

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Abstract

In this paper, a reduced morphological transformation model with spatially dependent composition and elastic modulus is considered. The parareal in time algorithm introduced by Lions et al. is developed for longer-time simulation. The fine solver is based on a second-order scheme in reciprocal space, and the coarse solver is based on a multi-model backward Euler scheme, which is fast and less expensive. Numerical simulations concerning the composition with a random noise and a discontinuous curve are performed. Some microstructure characteristics at very low temperature are obtained by a variable temperature technique. 

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DOI

10.4208/cicp.110310.090911a

How to Cite

Parareal in Time Simulation of Morphological Transformation in Cubic Alloys with Spatially Dependent Composition. (2012). Communications in Computational Physics, 11(5), 1697-1717. https://doi.org/10.4208/cicp.110310.090911a