Stochastic dynamics for inextensible fibers in a spatially semi-discrete setting
Lindner F, Marheineke N, Stroot H, Vibe A, Wegener R (2016)
Publication Type: Journal article, Original article
Publication year: 2016
Journal
Publisher: World Scientific Publishing
DOI: 10.1142/S0219493717500162
Abstract
We investigate a spatially discrete surrogate model for the dynamics of a slender, elastic, inextensible fiber in turbulent flows. Deduced from a continuous space-time beam model for which no solution theory is available, it consists of a high-dimensional second order stochastic differential equation in time with a nonlinear algebraic constraint and an associated Lagrange multiplier term. We establish a suitable framework for the rigorous formulation and analysis of the semi-discrete model and prove existence and uniqueness of a global strong solution. The proof is based on an explicit representation of the Lagrange multiplier and on the observation that the obtained explicit drift term in the equation satisfies a one-sided linear growth condition on the constraint manifold. The theoretical analysis is complemented by numerical studies concerning the time discretization of our model. The performance of implicit Euler-type methods can be improved when using the explicit representation of the Lagrange multiplier to compute refined initial estimates for the Newton method applied in each time step.
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APA:
Lindner, F., Marheineke, N., Stroot, H., Vibe, A., & Wegener, R. (2016). Stochastic dynamics for inextensible fibers in a spatially semi-discrete setting. Stochastics and Dynamics. https://doi.org/10.1142/S0219493717500162
MLA:
Lindner, Felix, et al. "Stochastic dynamics for inextensible fibers in a spatially semi-discrete setting." Stochastics and Dynamics (2016).
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