流体工学部門講演会講演論文集
Online ISSN : 2424-2896
セッションID: 1208
会議情報
1208 昆虫羽ばたき飛行のdownwashに関する数値解析(2)(OS12-2 飛ぶもの・泳ぐものとそのメカニズム・流体力学,OS12飛ぶもの・泳ぐものとそのメカニズム・流体力学)
青野 光劉 浩
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会議録・要旨集 フリー

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A multi-block-and overset grid-based computational fluid dynamic (CFD) study was implemented for the unsteady flows surrounding a hovering hawkmoth with the realistic body-wing geometrical and kinematic models. The computed results show that downwash produced by a flapping hawkmoth has time dependency fairly. In particular, weak downwash is detected during downstroke, in contrast; strong downwash is predicted during upstroke. The reason the strong downwash is produced is that the combination of leading-edge vortex, shedding trailing-edge vortex and wing tip vortex forms a ring-shaped vortex characterized by strong downward-flows in the center of it during downstroke. The remarkable downward-flows travel to bottom area of a flapping insect during upstroke when the ring-shaped vortex is shed by wing rotation and flapping wings push it downward. Moreover downwash distribution does not exhibit a circle shape that has been explained by the Rankin-Fluid momentum theory.
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© 2006 一般社団法人 日本機械学会
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