Title of article :
Aqueous Surface Layer Flows Induced By Microscale Breaking Wind Waves
Author/Authors :
Peirson، William L. نويسنده , , Banner، Michael L. نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2003
Pages :
0
From page :
1
To page :
0
Abstract :
Microscale breaking wind waves cover much of the surface of open waters exposed to moderate wind forcing. Recent studies indicate that understanding the nature and key features of the surface skin flows associated with these small waves is fundamental to explaining the dramatic enhancement of constituent exchange that occurs in their presence. We describe a laboratory study in which velocity measurements were made within a few hundred micrometres of the surface of microscale breaking wind waves without bubble entrainment, using flow visualization and particle image velocimetry (PIV) techniques for a range of wind speed and fetch conditions. Our measurements show that for each experiment, the mean surface drift directly induced by the wind on the upwind faces and crests of these waves is (0.23+-0.02)u^a_star in the trough increasing to (0.33+\0.07)u^a_str at the crest, where u^a_star is the wind friction velocity. About these mean values, there is substantial variability in the instantaneous surface velocity up to approximately +-0.17u^a_star in the trough and +-0.37u^a_star at the crest. This variability can be attributed primarily to the modulation of the wave field, with additional contributions arising from fluctuations in wind forcing and near-surface turbulence generated by shear in the drift layer Aor by the influence of transient microscale breaking
Keywords :
groundwater , heterogeneity , conditional temporal moments , multirate sorption , reactive transport
Journal title :
Journal of Fluid Mechanics
Serial Year :
2003
Journal title :
Journal of Fluid Mechanics
Record number :
79787
Link To Document :
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