Literature DB >> 29348697

Optimum Wing Shape Determination of Highly Flexible Morphing Aircraft for Improved Flight Performance.

Weihua Su1, Sean Shan-Min Swei2, Guoming G Zhu3.   

Abstract

In this paper, optimum wing bending and torsion deformations are explored for a mission adaptive, highly flexible morphing aircraft. The complete highly flexible aircraft is modeled using a strain-based geometrically nonlinear beam formulation, coupled with unsteady aerodynamics and 6-dof rigid-body motions. Since there are no conventional discrete control surfaces for trimming the flexible aircraft, the design space for searching the optimum wing geometries is enlarged. To achieve high performance flight, the wing geometry is best tailored according to the specific flight mission needs. In this study, the steady level flight and the coordinated turn flight are considered, and the optimum wing deformations with the minimum drag at these flight conditions are searched by utilizing a modal-based optimization procedure, subject to the trim and other constraints. The numerical study verifies the feasibility of the modal-based optimization approach, and shows the resulting optimum wing configuration and its sensitivity under different flight profiles.

Entities:  

Year:  2016        PMID: 29348697      PMCID: PMC5770154          DOI: 10.2514/1.C033490

Source DB:  PubMed          Journal:  J Aircr        ISSN: 0021-8669            Impact factor:   1.249


  2 in total

1.  Comparison of carbon fibre and titanium intramedullary nails in orthopaedic oncology.

Authors:  Caleb M Yeung; Abhiram R Bhashyam; Olivier Q Groot; Nelson Merchan; Erik T Newman; Kevin A Raskin; Santiago A Lozano-Calderón
Journal:  Bone Jt Open       Date:  2022-08

Review 2.  Carbon Fiber Implants in Orthopaedic Oncology.

Authors:  Caleb M Yeung; Abhiram R Bhashyam; Shalin S Patel; Eduardo Ortiz-Cruz; Santiago A Lozano-Calderón
Journal:  J Clin Med       Date:  2022-08-24       Impact factor: 4.964

  2 in total

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