Berthold, Christian und Gross, Johann und Frey, Christian und Krack, Malte (2024) Fully coupled forced response analysis of nonlinear turbine blade vibrations in the frequency domain. Journal of Fluids and Structures, 127, Seite 104112. Elsevier. doi: 10.1016/j.jfluidstructs.2024.104112. ISSN 0889-9746.
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Offizielle URL: https://www.sciencedirect.com/science/article/pii/S0889974624000471
Kurzfassung
For the first time, a fully-coupled Harmonic Balance method is developed for the forced response of turbomachinery blades. The method is applied to a state-of-the-art model of a turbine bladed disk with interlocked shrouds subjected to wake-induced loading. The recurrent partial opening and closing of the pre-loaded shroud contact causes a softening effect, leading to turning points in the amplitude–frequency curve near resonance. Therefore, the coupled solver is embedded into a numerical path continuation framework. Two variants are developed: the coupled continuation of the solution path, and the coupled re-iteration of selected solution points. While the re-iteration variant is slightly more costly per solution point, it has the important advantage that it can be run completely in parallel, which substantially reduces the wall clock time. It is shown that wake- and vibration-induced flow fields do not linearly superimpose, leading to a severe under-/overestimation of the resonant vibration level by the influence-coefficient-based state-of-the-art methods (which rely on this linearity assumption).
elib-URL des Eintrags: | https://elib.dlr.de/210098/ | ||||||||||||||||||||
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Dokumentart: | Zeitschriftenbeitrag | ||||||||||||||||||||
Titel: | Fully coupled forced response analysis of nonlinear turbine blade vibrations in the frequency domain | ||||||||||||||||||||
Autoren: |
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Datum: | Juni 2024 | ||||||||||||||||||||
Erschienen in: | Journal of Fluids and Structures | ||||||||||||||||||||
Referierte Publikation: | Ja | ||||||||||||||||||||
Open Access: | Ja | ||||||||||||||||||||
Gold Open Access: | Nein | ||||||||||||||||||||
In SCOPUS: | Ja | ||||||||||||||||||||
In ISI Web of Science: | Ja | ||||||||||||||||||||
Band: | 127 | ||||||||||||||||||||
DOI: | 10.1016/j.jfluidstructs.2024.104112 | ||||||||||||||||||||
Seitenbereich: | Seite 104112 | ||||||||||||||||||||
Verlag: | Elsevier | ||||||||||||||||||||
ISSN: | 0889-9746 | ||||||||||||||||||||
Status: | veröffentlicht | ||||||||||||||||||||
Stichwörter: | Aeroelasticity Forced response Nonlinear blade vibration Turbomachinery Harmonic balance Fluid Structure interaction Friction | ||||||||||||||||||||
HGF - Forschungsbereich: | Luftfahrt, Raumfahrt und Verkehr | ||||||||||||||||||||
HGF - Programm: | Luftfahrt | ||||||||||||||||||||
HGF - Programmthema: | Umweltschonender Antrieb | ||||||||||||||||||||
DLR - Schwerpunkt: | Luftfahrt | ||||||||||||||||||||
DLR - Forschungsgebiet: | L CP - Umweltschonender Antrieb | ||||||||||||||||||||
DLR - Teilgebiet (Projekt, Vorhaben): | L - Virtuelles Triebwerk | ||||||||||||||||||||
Standort: | Köln-Porz | ||||||||||||||||||||
Institute & Einrichtungen: | Institut für Antriebstechnik | ||||||||||||||||||||
Hinterlegt von: | Berthold, Christian | ||||||||||||||||||||
Hinterlegt am: | 10 Dez 2024 21:02 | ||||||||||||||||||||
Letzte Änderung: | 10 Dez 2024 21:02 |
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