CFD-CSD method for rotor aeroelastic analysis with free wake model
Aircraft Engineering and Aerospace Technology
ISSN: 0002-2667
Article publication date: 25 October 2022
Issue publication date: 2 January 2023
Abstract
Purpose
Computational fluid dynamics (CFD)/computational structural dynamics (CSD) coupling analysis is an important method in the research of helicopter aeroelasticity due to its high precision. However, this method still suffers from some problems, such as wake dissipation and large computational cost. In this study, a new coupling method and a new air load correction method that combine the free wake model with the CFD/CSD method are proposed to maintain computational efficiency whilst solving the wake dissipation problem of the prior coupling methods.
Design/methodology/approach
A new coupling method and a new air load correction method that combine the free wake model with the CFD/CSD method are proposed. With the introduction of the free wake model, the CFD solver can adopt two-order accuracy schemes and fewer aerodynamic grids, thus maintaining computational efficiency whilst solving the wake dissipation problem of the prior coupling methods.
Findings
Compared with the predictions of the prior methods and flight test data, those of the proposed method are more accurate and closer to the test data. The difference between the two methods in high-speed forward flight is minimal.
Research limitations/implications
Because of the chosen research approach, the research results may lack generalisability. Therefore, researchers are encouraged to test the proposed method further.
Originality/value
In this paper, a CFD/CSD/free wake coupling method is proposed to improve the computational accuracy of the traditional CFD/CSD coupled method and ensure the computational efficiency.
Keywords
Citation
Wang, S. and Cheng, Q. (2023), "CFD-CSD method for rotor aeroelastic analysis with free wake model", Aircraft Engineering and Aerospace Technology, Vol. 95 No. 1, pp. 132-144. https://doi.org/10.1108/AEAT-01-2022-0012
Publisher
:Emerald Publishing Limited
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