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CORDIS

Composite fan Aerodynamic, Aeroelastic, and Aeroacoustic VAlidation Rig

Rezultaty

Plan for the Exploitation and Dissemination of Results

Plan for dissemination and exploitation of project results

LTF Mechanical Design and instrumentation setup

Mechanical design of the LSF test article and its instrumentation for aerodynamic aeroelastic and aeroacoustic tests in PTF

Test Matrix and Procedures

Report describing procedures, operating points and campaign timeline (Report, PU)

Literature review and LTF aero design requirements

Report describing the literature study

Prediction of manufacturing process distortion and effect on mould design

Results of FE analysis to predict the effect of curing process in terms of distortion and impact on mould design

Rig modification, instrumentation and acceptance tests

Report on final rig setup, Data acquisition system and calibration (Report, PU)

Aerodynamic model calibration and validation report

Final Report containing processed data and describing collected results (Report, PU)

Aeroelastic and aeroacoustic models' calibration and validation report

Final Report containing processed data and describing collected results (Report, PU)

LTF performance and instability analysis, LTF mechanical design requirements

Report describing the outputs of tasks 2.2, 2.3 and 2.4, and summarizing the resulting requirements for the mechanical design of LTF to be performed in WP 3 (Report, PU).

Data Management Plan

This report addresses the relevant aspects of making data findable, accessible, interoperable and re-usable, including what data the project will generate, whether and how it will be made accessible for verification and re-use, and how it will be curated and preserved

Publikacje

Uncertainty and validation of unsteady pressure-sensitive paint measurements of acoustic fields under aero engine-like conditions

Autorzy: Goessling, Jan; Fischer, Felix; Seume, Joerg R.; Hilfer, Michael
Opublikowane w: Experiments in Fluids (Springer), Numer (2023) 64:22, 2023, ISSN 1432-1114
Wydawca: Springer
DOI: 10.1007/s00348-022-03558-8

Aerodynamic Analysis of a scaled UHBR Fan

Autorzy: Natale N., Egger T., Friedrichs J., Russo S.
Opublikowane w: IOP Conf. Series: Materials Science and Engineering, Numer Mater. Sci. Eng. 1226 012007, 2022
Wydawca: IOP Publishing
DOI: 10.1088/1757-899x/1226/1/012007

Aerodynamic Damping of Composite UHBR Fans Under the Consideration of Acoustic Intake Reflections

Autorzy: Goessling, Jan; Seume, Joerg R.; Flüh, Jan Peter; Paletta, Nicola; Eggers, Torben; Friedrichs, Jens; Nunzio, Natale
Opublikowane w: ASME 2022 Proceedings of ASME Turbo Expo 2022 Turbomachinery Technical Conference and Exposition GT2022, Numer GT2022-81777, June 13-17, 2022, 2022
Wydawca: ASME
DOI: 10.1115/gt2022-81777

The preliminary design of a scaled Composite UHBR Fan for a wind tunnel test campaign

Autorzy: Paletta N., Flüh J., Lindemann J., Seume J., Goessling J., Friedrichs J., Eggers T., Russo S., Natale N., Vlachos D., Mazarakos D., Baltopoulos A., Vavouliotis A.
Opublikowane w: IOP Conf. Series: Materials Science and Engineering, Numer 1226 (2022) 012041, 2022
Wydawca: IOP Publishing
DOI: 10.1088/1757-899x/1226/1/012041

Composite UHBR Fan for Forced Response and Flutter Investigations

Autorzy: T. Eggers, J. Friedrichs, J. Gößling, J. Seume, N. Natale, J. P. Flüh, N. Paletta
Opublikowane w: ASME 2021 Turbomachinery Technical Conference & Exposition TURBO EXPO 2021, Numer GT2021-58941, June 07-11, 2021, 2021, ISBN 978-0-7918-8490-4
Wydawca: ASME
DOI: 10.1115/gt2021-58941

CA3ViAR: a step forward towards modelling and testing aerodynamic and aeroelastic instabilities experienced by Low Transonic Fans made of composite material

Autorzy: N. Paletta, E. Vecchio (IBK), J. Gößling, M. Amer, J. R. Seume (LUH), J. Friedrichs, T. Eggers (TUBS), S. Russo, N. Natale (DREAM)
Opublikowane w: "10th EASN International Conference on ""Innovation in Aviation & Space to the Satisfaction of the European Citizens""", Numer Annual Conference, 2020
Wydawca: IOP Publishing Ltd

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