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High-Fidelity Multidisciplinary Design Optimization Methodology with Application to Rotor BladesA multidisciplinary design optimization procedure has been developed and applied to rotorcraft simulations involving tightly-coupled, high-fidelity computational fluid dynamics and comprehensive analysis. A discretely-consistent, adjoint-based sensitivity analysis available in the fluid dynamics solver provides sensitivities arising from unsteady turbulent flows on unstructured, dynamic, overset meshes, while a complex-variable approach is used to compute structural sensitivities with respect to aerodynamic loads. The multidisciplinary sensitivity analysis is conducted through integrating the sensitivity components from each discipline of the coupled system. Accuracy of the coupled system for high-fidelity rotorcraft analysis is verified; simulation results exhibit good agreement with established solutions. A constrained gradient-based design optimization for a HART-II rotorcraft configuration is demonstrated. The computational cost for individual components of the multidisciplinary sensitivity analysis is assessed and improved.
Document ID
20180006284
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Wang, Li
(National Inst. of Aerospace Hampton, VA, United States)
Diskin, Boris
(National Inst. of Aerospace Hampton, VA, United States)
Biedron, Robert T.
(NASA Langley Research Center Hampton, VA, United States)
Neilsen, Eric J.
(NASA Langley Research Center Hampton, VA, United States)
Sonneville, Valentin
(Maryland Univ. College Park, MD, United States)
Bauchau, Olivier A.
(Maryland Univ. College Park, MD, United States)
Date Acquired
October 16, 2018
Publication Date
January 16, 2018
Subject Category
Aeronautics (General)
Report/Patent Number
NF1676L-27742
Report Number: NF1676L-27742
Meeting Information
Meeting: Aeromechanics Design for Transformative Vertical Flight
Location: San Francisco, CA
Country: United States
Start Date: January 16, 2018
End Date: January 18, 2018
Sponsors: American Helicopter Society International (Bay Area Chapter)
Distribution Limits
Public
Copyright
Public Use Permitted.
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