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Titel:

Generalized Maxwell viscoelasticity for geometrically exact strings: Nonlinear port-Hamiltonian formulation and structure-preserving discretization

Dokumenttyp:
Zeitschriftenaufsatz
Autor(en):
Kinon, P.L.; Thoma, T.; Betsch, P.; Kotyczka, P.
Abstract:
This contribution proposes a nonlinear and dissipative infinite-dimensional port-Hamiltonian (PH) model for the dynamics of geometrically exact strings. The mechanical model provides a description of large deformations including finite elastic and inelastic strains in a generalized Maxwell model. It is shown that the overall system results from a power-preserving interconnection of PH subsystems. By using a structure-preserving mixed finite element approach, a finite-dimensional PH model is deri...     »
Stichworte:
Nonlinear port-Hamiltonian systems; generalized Maxwell model; structure-preserving discretization; mixed finite elements; discrete gradients
Dewey Dezimalklassifikation:
620 Ingenieurwissenschaften
Kongresstitel:
IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control LHMNC [8´th, 2024]
Zeitschriftentitel:
IFAC-PapersOnLine
Jahr:
2024
Jahr / Monat:
2024-09
Heft / Issue:
Vol. 58, Issue 6
Seitenangaben Beitrag:
pp. 101-106
Volltext / DOI:
doi:10.1016/j.ifacol.2024.08.264
WWW:
https://www.sciencedirect.com/science/article/pii/S2405896324010061
Verlag / Institution:
Elsevier B.V.
E-ISSN:
2405-8963
Publikationsdatum:
25.09.2024
TUM Einrichtung:
Lehrstuhl für Regelungstechnik
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