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Aerodynamic and structural performances of a single-stage transonic axial compressor with blade fillet radius

Hoang-Quan Chu (Faculty of Aerospace Engineering, Le Quy Don Technical University, Hanoi, Vietnam)
Cong-Truong Dinh (School of Mechanical Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam)

International Journal of Intelligent Unmanned Systems

ISSN: 2049-6427

Article publication date: 2 February 2022

Issue publication date: 29 June 2023

179

Abstract

Purpose

This study’s investigation aims to clarify the effect of an additional geometry, i.e. a fillet radius, to the blades of a single-stage transonic axial compressor, NASA Stage 37, on its aerodynamic and structural performances.

Design/methodology/approach

Applying the commercial simulation software and the one-way fluid–structure interaction (FSI) approach, this study first evaluated the simulation results with the experimental data for the aerodynamic performances. Second, this paper compared the structural performances between the models with and without fillets.

Findings

This research analyses the aerodynamic results (i.e. total pressure ratio, adiabatic efficiency, stall margin) and the structural outcomes (i.e. equivalent von Mises stress, total deformation) of the single-stage transonic axial compressor NASA Stage 37.

Originality/value

This paper mentions the influence of blade fillets (i.e. both rotor hub fillet and stator shroud fillet) on the compressor performances (i.e. the aerodynamic and structural performances).

Keywords

Acknowledgements

The authors are also grateful to the cooperation between Viettel Aerospace Institute (Vietnam), Hanoi University of Science and Technology, and Le Quy Don Technical University for the support during this research.

Funding: This study was funded by the Foundation for Science and Technology of Le Quy Don Technical University under the grant number 20.1.048.

Citation

Chu, H.-Q. and Dinh, C.-T. (2023), "Aerodynamic and structural performances of a single-stage transonic axial compressor with blade fillet radius", International Journal of Intelligent Unmanned Systems, Vol. 11 No. 3, pp. 407-424. https://doi.org/10.1108/IJIUS-07-2021-0069

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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