CFD simulations of three patagium and three tail/uropatagium configurations inspired by gliding mammals show distinct trade-offs in lift, drag, stall behavior, and control authority rather than a single optimal design.
Sex differences in the locomotor ecology of a gliding mammal, the malayan colugo (galeopterus variegatus)
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Patagium and tail morphology shape aerodynamic performance and control authority in gliding-mammal-inspired wings
CFD simulations of three patagium and three tail/uropatagium configurations inspired by gliding mammals show distinct trade-offs in lift, drag, stall behavior, and control authority rather than a single optimal design.