土木学会論文集A2(応用力学)
Online ISSN : 2185-4661
ISSN-L : 2185-4661
応用力学論文集Vol.14(特集)
平坦河床から植生群落への乱流構造の遷移・発達過程に関する研究
前川 卓耶禰津 家久片山 愛来
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2011 年 67 巻 2 号 p. I_559-I_568

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A lot of aquatic plants are observed in actual rivers, and they are responsible for water quality, nutrient and particle removal, and can reduce turbidity and sediment transport. Recently, the importance of flow and turbulence to the ecology of aquatic benthic organism has been widely reported. For submerged vegetation, a shear-layer is generated near the vegetation edge, and it generates coherent vortices by Kelvin-Helmholtz (KH) instability. These large-scale eddies control mass and momentum exchange between the vegetated and non-vegetated zone, influencing the mean velocity profile, as well as the turbulent diffusivity. Therefore, it is very important to reveal the coherent eddies in vegetated flows.
However, the transition from boundary-layer flow upstream of the vegetation canopy region to a mixing-layer-type flow within the vegetation canopy has not been fully investigated. So, in this study, turbulence measurements were conducted intensively in vegetated open-channel flows by using PIV. The present data provide insight into spatial growth of coherent structure.
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© 2011 公益社団法人 土木学会
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