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Scaling Bioinspired Mars Flight Vehicles for Hover

Jeremy A. Pohly, Chang-Kwon Kang, Madhu Sridhar, D. Landrum, Farbod Fahimi, Bryan Mesmer, James E. Bluman, Hikaru Aono, Taeyoung Lee

Year
2019
Citations
9

Abstract

) g, which are verified using a 3D Navier-Stokes solver. Our results show that unsteady lift enhancement mechanisms, such as delayed stall and rotational lift, are present in the bioinspired solution for a 5 g flapping wing vehicle hovering in Mars conditions, verifying that the zeroth-order method is a useful design tool. As a result, it is possible to design a family of bioinspired flapping wing robots for Mars by augmenting the adverse effects of the ultra-low density with large wings that exploit the advantages of unsteady lift enhancement mechanisms used by insects on Earth.

Keywords

Mars Exploration ProgramAerospace engineeringFlappingMartianExploration of MarsLift (data mining)Computer scienceAerodynamicsWingPlanet

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