On the modal analysis of nonlinear beam and shell structures with singular mass and stiffness matrices

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OriginalspracheEnglisch
Aufsatznummer106310
FachzeitschriftThin-walled structures
Jahrgang144
Frühes Online-Datum23 Juli 2019
PublikationsstatusVeröffentlicht - Nov. 2019

Abstract

A complex structural system can be described by a collection of individual rigid and/or flexible components in combination with a set of kinematic constraints. Moreover, their configuration can be described by redundant coordinates yielding to singular system matrices. Therefore, the calculation of frequencies and modes using a classical modal analysis is not longer applicable. In this work, we propose a variational-consistent framework, which is able to deal with structural systems with singular matrices and relies on a null-space projection. Finally, the effectivity of the proposed framework is tested succesfully by complex examples (single- and multibody systems) containing rigid bodies, geometrically exact beams and solid-degenerate shells.

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On the modal analysis of nonlinear beam and shell structures with singular mass and stiffness matrices. / Hente, Christian; Gebhardt, Cristian Guillermo; Pache, Dorian et al.
in: Thin-walled structures, Jahrgang 144, 106310, 11.2019.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Hente C, Gebhardt CG, Pache D, Rolfes R. On the modal analysis of nonlinear beam and shell structures with singular mass and stiffness matrices. Thin-walled structures. 2019 Nov;144:106310. Epub 2019 Jul 23. doi: 10.1016/j.tws.2019.106310
Hente, Christian ; Gebhardt, Cristian Guillermo ; Pache, Dorian et al. / On the modal analysis of nonlinear beam and shell structures with singular mass and stiffness matrices. in: Thin-walled structures. 2019 ; Jahrgang 144.
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note = "Funding information: This study has been carried out within the ForWind joint research project “ventus efficiens - joint research for the efficiency of wind energy converters within the energy supply system” ( FKZ ZN3024 ), financially supported by the Ministry for Science and Culture of Lower Saxony, Germany.",
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AU - Hente, Christian

AU - Gebhardt, Cristian Guillermo

AU - Pache, Dorian

AU - Rolfes, Raimund

N1 - Funding information: This study has been carried out within the ForWind joint research project “ventus efficiens - joint research for the efficiency of wind energy converters within the energy supply system” ( FKZ ZN3024 ), financially supported by the Ministry for Science and Culture of Lower Saxony, Germany.

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KW - Efficient implementation

KW - Modal analysis

KW - Null space projection

KW - Rigid bodies

KW - Singular matrices

KW - Variational consistency

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