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The structure of the near-neutral atmospheric surface layer
- Source :
- Journal of the Atmospheric Sciences. March 15, 2004, Vol. 61 Issue 6, p699, 16 p.
- Publication Year :
- 2004
-
Abstract
- Recent observational data (turbulence variables by sonic anemometers and three-dimensional flow pattern by Doppler lidar), obtained during the Cooperative Atmosphere Surface Exchange Study field campaign in October 1999 (CASES-99), show evidence of a layered structure of the near-neutral surface layer: (i) the eddy surface layer (ESL), which is the lower sublayer where blocking of impinging eddies is the dominating mechanism; and (ii) the shear surface layer (SSL), which is an intermediate sublayer, where shear affects the isotropy of turbulence. The origin of the eddies impinging from aloft (probably from the SSL) down to the ESL is preliminarily addressed in this study, since the Doppler lidar data show evidence of linearly organized eddies embedded in the surface layer (i.e., about 100-m vertical extent) and horizontally spaced by about 300 m. This is consistent with theories predicting that the primary mechanism of eddy motion in high Reynolds number wall layers is 'top-down.' The layered structure of the surface layer also has a visible effect on vertical profiles of vertical velocity variance (bar.[w.sup.2]) and momentum transport. In the ESL, (bar.[w.sup.2]) scales as [z.sup.2/3] while it is constant or slightly decreases within the SSL. Concerning momentum transport, ejections contribute identically to the momentum flux as do sweeps in the ESL, whereas in the SSL, ejections give about 50% higher relative contribution.
- Subjects :
- Earth sciences
Science and technology
Subjects
Details
- Language :
- English
- ISSN :
- 00224928
- Volume :
- 61
- Issue :
- 6
- Database :
- Gale General OneFile
- Journal :
- Journal of the Atmospheric Sciences
- Publication Type :
- Academic Journal
- Accession number :
- edsgcl.114785203