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PMID: 35098995 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Revisiting the flight dynamics of take-off of a butterfly: experiments and CFD simulations for a cabbage white butterfly.

Biology open ·Vol. 11 ·No. 3 ·2022-00-15

Suzuki K, Nakamura M, Kouji M, Yoshino M

Abstract

We conducted measurements of the taking-off motion of a butterfly (Pieris rapae) and numerical simulations using a computational model reflecting its motion. The computational butterfly model is composed of a thorax, an abdomen, and four wings (left and right wings with fore and hind parts), i.e. a six-link, rigid-body system. The present model is more sophisticated than any models that have ever been constructed in existing studies. In the butterfly model, the body trajectory and thoracic pitching angle can be calculated from the equations of motion, whereas the abdominal angle and wings' joint angles are prescribed by the measured data. We calculated the flow field, aerodynamic force and torque generated by the butterfly model using the immersed boundary-lattice Boltzmann method. As a result, the butterfly generates the horizontal vortex ring and aerodynamic lift force during the downstroke, while it generates the vertical vortex ring and aerodynamic thrust force during the upstroke. The leg impulsion is essential in the upward motion of the taking-off butterfly rather than the aerodynamic lift force by the flapping wings. The inertial forces of the abdomen and wings are comparable in magnitude with the aerodynamic forces, but the net influence of the inertial forces on the position of the butterfly is not significant due to the offsetting of the body and wing inertia. The net aerodynamic and gravitational torques raise the thorax of the butterfly, and the net inertial torques suppress the rise of the thorax.

Keywords
Butterfly Computational fluid dynamics Flapping flight Take-off
MeSH 主题词
Animals Biomechanical Phenomena Brassica Butterflies Flight, Animal Wings, Animal
作者与单位
共 4 位作者,点击展开单位 / ORCID
Suzuki Kosuke ORCID
Institute of Engineering, Academic Assembly, Shinshu University, Nagano 380-8553, Japan.
Nakamura Masashi ORCID
Department of Mechanical Systems Engineering, Faculty of Engineering, Shinshu University, Nagano 380-8553, Japan.
Kouji Masaya
Department of Mechanical Systems Engineering, Faculty of Engineering, Shinshu University, Nagano 380-8553, Japan.
Yoshino Masato ORCID
Institute of Engineering, Academic Assembly, Shinshu University, Nagano 380-8553, Japan.
Article Info
Journal
Biology open
Abbr.
Biol Open
ISSN
2046-6390
Published
2022-00-15
电子出版
2022-00-24
Language
English
Country/Region
England
NLM ID
101578018
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