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Direct numerical simulation of interaction between transient flow and blade structure in a modern low-pressure turbine

Win Naung, Shine; Rahmati, Mohammad; Farokhi, Hamed

Direct numerical simulation of interaction between transient flow and blade structure in a modern low-pressure turbine Thumbnail


Authors

Mohammad Rahmati

Hamed Farokhi



Abstract

A feature of a modern aeronautical Low-Pressure Turbine (LPT) is the high blade loadings with complex, transient and separated flow regimes. Most existing research have focused only on analysing the transient flow and flow separation in such turbines. The aerodynamics of a modern LPT, however, can be significantly influenced by the interaction between the unsteady flow field and the blade structure motion in a complex non-linear fashion which could lead to aeroelastic instabilities such as flutter. Therefore, the understanding of the mechanism of the interaction between the flow field unsteadiness and the blade structure in a modern LPT is essential to examine the vibration stress levels to ensure the blade mechanical integrity. The novelty of this paper, first and foremost, is using a high-fidelity direct numerical simulation method to explore the mechanism of flutter and forced response in a modern LPT, T106A turbine, and to study the effects of various sources of unsteadiness on the aeroelastic instabilities of the blade. Secondly, this paper investigates and identifies the adequate working ranges of the harmonic balance method, which has been widely used for the aeromechanical analysis of turbomachines, on predicting the behaviour of the highly unsteady flow due to fluid-structure interaction in an LPT. Another emphasis of this paper is the determination of the capability of the Unsteady Reynolds Averaged Navier–Stokes (URANS) model for the aeroelasticity analysis of an LPT involving the highly unsteady flow. This paper will bridge a key gap in the knowledge of aeroelasticity modelling and analysis of modern LPTs.

Citation

Win Naung, S., Rahmati, M., & Farokhi, H. (2021). Direct numerical simulation of interaction between transient flow and blade structure in a modern low-pressure turbine. International Journal of Mechanical Sciences, 192, Article 106104. https://doi.org/10.1016/j.ijmecsci.2020.106104

Journal Article Type Article
Acceptance Date Sep 18, 2020
Online Publication Date Nov 1, 2020
Publication Date Feb 15, 2021
Deposit Date Oct 15, 2023
Publicly Available Date Oct 17, 2023
Journal International Journal of Mechanical Sciences
Print ISSN 0020-7403
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 192
Article Number 106104
DOI https://doi.org/10.1016/j.ijmecsci.2020.106104
Public URL https://uwe-repository.worktribe.com/output/11177107

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