Biomimetic flight and propulsion mechanisms Peer reviewed

The Effect of Mechanism-Driven Spanwise Folding Kinematics on the Aerodynamic Performance of Flapping Wings

Hyeon-Ho Yang, Sang-Gil Lee, Jae-Hung Han

Bioinspiration & Biomimetics | Jul 14, 2026

Abstract

Abstract

Abstract This study presents a mechanism-driven analysis of spanwise folding kinematics in bird-inspired ornithopters, in which the folding motion is generated by a planar crank-rocker mechanism augmented with a folding loop. A closed-form position analysis of the linkage yields an analytical expression for the folding phase angle ϕ f as a function of the flapping-loop link lengths alone, and a two-stage genetic-algorithm optimization identifies the linkage geometry that minimizes ϕ f for prescribed inner-wing kinematic targets. An in-house integrated simulation framework, which couples a modified unsteady vortex-lattice method with a multi-flexible-body dynamics model, is then applied to a parametric study spanning the wing length ratio, the folding amplitude, and the mean folding angle within the resulting feasible design space. The framework is validated against wind-tunnel force measurements for flexible flapping wings and against forward-flight test data for a single-joint ornithopter. The minimum-phase configuration produces a marginally positive mean thrust at the baseline operating point, whereas the maximum-phase configuration produces negative mean thrust. Varying the wing length ratio from 1.0 to 2.2 produces an explicit lift–thrust trade-off, with the lift efficiency rising by 27% as the outer-wing fraction grows. The mean folding angle is identified as the primary lever for tuning the lift–thrust balance of the mechanism-driven folding wing, while the folding amplitude provides a secondary adjustment around each operating point. The proposed mechanism-driven framework connects linkage geometry, kinematic constraints, and aerodynamic performance within a single analytical-numerical pipeline, supporting the systematic design of bird-inspired ornithopters with spanwise folding wings.

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Authors

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Hyeon-Ho Yang

first | Korea Advanced Institute of Science and Technology | ORCID 0000-0001-6341-660X

Sang-Gil Lee

middle | Korea Advanced Institute of Science and Technology | ORCID 0000-0002-1470-416X

Jae-Hung Han

last | Korea Advanced Institute of Science and Technology | ORCID 0000-0001-5311-9855

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Citation

BibTeX

@article{Yang2026Effect,
  title = {The Effect of Mechanism-Driven Spanwise Folding Kinematics on the Aerodynamic Performance of Flapping Wings},
  author = {Hyeon-Ho Yang and Sang-Gil Lee and Jae-Hung Han},
  journal = {Bioinspiration & Biomimetics},
  year = {2026},
  doi = {10.1088/1748-3190/ae8a9d},
  url = {https://doi.org/10.1088/1748-3190/ae8a9d}
}

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