Experimental Study of Beating Motion of Mosquito by Using an Enlarged Model of Wing Symmetry of leading edge vortex on a plate wing during heaving motion

The purpose of this study is to investigate flow pattern around mosquito's wing while it is beating. We constructed on experimental apparatus to simulate beating motion of mosquito. An enlarged scale model experiment was carried out using a very low speed wind tunnel under the condition that Re...

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Published inJournal of the Visualization Society of Japan Vol. 24; no. Supplement1; pp. 357 - 358
Main Authors OHBA, Kenkichi, KONDO, Daisuke, SAKURAI, Atsushi, TAJIKAWA, Tsutomu
Format Journal Article
LanguageJapanese
Published The Visualization Society of Japan 01.07.2004
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ISSN0916-4731
1884-037X
DOI10.3154/jvs.24.Supplement1_357

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Abstract The purpose of this study is to investigate flow pattern around mosquito's wing while it is beating. We constructed on experimental apparatus to simulate beating motion of mosquito. An enlarged scale model experiment was carried out using a very low speed wind tunnel under the condition that Reynolds number and Strouhal number were made equal to those of real mosquito. The flow around the wing model moving up and down was visualized using smoke and laser light sheet and it was analyzed by a PIV system. Unsteady vortices were observed to be generated on the upper surface of the model wing in the period of downstroke. We compared the vortices each other on three different kinds of enlarged scale models (8, 10, 12.5 times). As a result of Reynolds number and Strohal number are corresponded and attached wing symmetry, the flow around the wing corresponded indeoendently of the enlarged scale.
AbstractList The purpose of this study is to investigate flow pattern around mosquito's wing while it is beating. We constructed on experimental apparatus to simulate beating motion of mosquito. An enlarged scale model experiment was carried out using a very low speed wind tunnel under the condition that Reynolds number and Strouhal number were made equal to those of real mosquito. The flow around the wing model moving up and down was visualized using smoke and laser light sheet and it was analyzed by a PIV system. Unsteady vortices were observed to be generated on the upper surface of the model wing in the period of downstroke. We compared the vortices each other on three different kinds of enlarged scale models (8, 10, 12.5 times). As a result of Reynolds number and Strohal number are corresponded and attached wing symmetry, the flow around the wing corresponded indeoendently of the enlarged scale.
Author OHBA, Kenkichi
KONDO, Daisuke
SAKURAI, Atsushi
TAJIKAWA, Tsutomu
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References 2) 三宅,大場,日本機械学会流工部門講論集('03), p197
1) 東昭:生物の動きの事典, 朝倉書店, pp117-134
References_xml – reference: 2) 三宅,大場,日本機械学会流工部門講論集('03), p197
– reference: 1) 東昭:生物の動きの事典, 朝倉書店, pp117-134
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Snippet The purpose of this study is to investigate flow pattern around mosquito's wing while it is beating. We constructed on experimental apparatus to simulate...
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StartPage 357
SubjectTerms Beating motion
Enlarged scale model experiment
Leading edge vortex
Mosquito
Subtitle Symmetry of leading edge vortex on a plate wing during heaving motion
Title Experimental Study of Beating Motion of Mosquito by Using an Enlarged Model of Wing
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Volume 24
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