Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics

The unsteady vortex-lattice method (UVLM) provides a high-efficient, medium-fidelity way to capture large deformations and free wake effects of flexible wings. It has been favored in research on the stability analysis of flexible wings. It is possible to construct linearized aeroelastic equations an...

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Main Authors: Jin-chi CHEN, Yan-xin HUANG
Format: Article
Language:zho
Published: China Astronautic Publishing CO., LTD. ; Editorial Office of Physics of Gases 2023-11-01
Series:气体物理
Subjects:
Online Access:http://qtwl.xml-journal.net/cn/article/doi/10.19527/j.cnki.2096-1642.1060
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author Jin-chi CHEN
Yan-xin HUANG
author_facet Jin-chi CHEN
Yan-xin HUANG
author_sort Jin-chi CHEN
collection DOAJ
description The unsteady vortex-lattice method (UVLM) provides a high-efficient, medium-fidelity way to capture large deformations and free wake effects of flexible wings. It has been favored in research on the stability analysis of flexible wings. It is possible to construct linearized aeroelastic equations and improve the efficiency of dynamic stability analysis, by applying linearized governing equations based on the assumption of small disturbances and analytical aerodynamic sensitivities based on the chain rule. The linearized governing equations and analytical sensitivities of UVLM can also be applied to aeroelastic control and optimization design. Numerical simulations show that aerodynamic loads are more sensitive to the normal component of node displacement. Analytical sensitivities are validated to be accurate and more efficient than finite difference methods.
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spelling doaj.art-e45807ae2b5e4f6cbf215dd1ca21b2fc2024-01-13T01:09:37ZzhoChina Astronautic Publishing CO., LTD. ; Editorial Office of Physics of Gases气体物理2096-16422023-11-0186556410.19527/j.cnki.2096-1642.1060qtwl-8-6-55Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice AerodynamicsJin-chi CHEN0Yan-xin HUANG1High-Speed High-Reynold Laboratory, AVIC Aerodynamic Research Institute, Shenyang 110034, ChinaHigh-Speed High-Reynold Laboratory, AVIC Aerodynamic Research Institute, Shenyang 110034, ChinaThe unsteady vortex-lattice method (UVLM) provides a high-efficient, medium-fidelity way to capture large deformations and free wake effects of flexible wings. It has been favored in research on the stability analysis of flexible wings. It is possible to construct linearized aeroelastic equations and improve the efficiency of dynamic stability analysis, by applying linearized governing equations based on the assumption of small disturbances and analytical aerodynamic sensitivities based on the chain rule. The linearized governing equations and analytical sensitivities of UVLM can also be applied to aeroelastic control and optimization design. Numerical simulations show that aerodynamic loads are more sensitive to the normal component of node displacement. Analytical sensitivities are validated to be accurate and more efficient than finite difference methods.http://qtwl.xml-journal.net/cn/article/doi/10.19527/j.cnki.2096-1642.1060uvlmaerodynamic sensitivityanalytical sensitivityflexible wingstability analysis
spellingShingle Jin-chi CHEN
Yan-xin HUANG
Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
气体物理
uvlm
aerodynamic sensitivity
analytical sensitivity
flexible wing
stability analysis
title Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
title_full Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
title_fullStr Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
title_full_unstemmed Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
title_short Linearization and Analytical Sensitivity of Unsteady Vortex-Lattice Aerodynamics
title_sort linearization and analytical sensitivity of unsteady vortex lattice aerodynamics
topic uvlm
aerodynamic sensitivity
analytical sensitivity
flexible wing
stability analysis
url http://qtwl.xml-journal.net/cn/article/doi/10.19527/j.cnki.2096-1642.1060
work_keys_str_mv AT jinchichen linearizationandanalyticalsensitivityofunsteadyvortexlatticeaerodynamics
AT yanxinhuang linearizationandanalyticalsensitivityofunsteadyvortexlatticeaerodynamics