Model Updating and Aeroelastic Correlation of a Scaled Wind Tunnel Model for Active Flutter Suppression Test

Di Leone, Domenico and Lo Balbo, Francesco and De Gaspari, Alessandro and Ricci, Sergio (2021) Model Updating and Aeroelastic Correlation of a Scaled Wind Tunnel Model for Active Flutter Suppression Test. Aerospace, 8 (11). p. 334. ISSN 2226-4310

[thumbnail of aerospace-08-00334-v3.pdf] Text
aerospace-08-00334-v3.pdf - Published Version

Download (9MB)

Abstract

This article presents a modal correlation and update carried out on an aeroelastic wind tunnel demonstrator representing a conventional passenger transport aircraft. The aim of this work is the setup of a corresponding numerical model that is able to capture the flutter characteristics of a scaled aeroelastic model designed to investigate and experimentally validate active flutter suppression technologies. The work described in this paper includes different finite element modeling strategies, the results of the ground vibration test, and finally the strategies adopted for modal updating. The result of the activities is a three-dimensional hybrid finite element model that is well representative of the actual aeroelastic behavior identified during the wind tunnel test campaign and that is capable of predicting the flutter boundary with an error of 1.2%. This model will be used to develop active flutter suppression controllers, as well as to perform the sensitivity analyses necessary to investigate their robustness.

Item Type: Article
Subjects: Open Digi Academic > Engineering
Depositing User: Unnamed user with email support@opendigiacademic.com
Date Deposited: 18 Mar 2023 09:21
Last Modified: 17 Jun 2024 06:54
URI: http://publications.journalstm.com/id/eprint/360

Actions (login required)

View Item
View Item