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Turbulence in a convective marine atmospheric boundary layerThe structure and kinetic energy budget of turbulence in the convective marine atmospheric boundary layer as observed by aircraft during a cold air outbreak have been studied using mixed layer scaling. The results are significantly different from those of previous studies under conditions closer to free convection. The normalized turbulent kinetic energy and turbulent transport are about twice those found during the Air Mass Transformation Experiment (AMTEX). This implies that for a given surface heating the present case is dynamically more active. The difference is mainly due to the greater importance of wind shear in the present case. This case is closer to the roll vortex regime, whereas AMTEX observed mesoscale cellular convection which is closer to free convection. Shear generation is found to provide a significant energy source, in addition to buoyancy production, to maintain a larger normalized turbulent kinetic energy and to balance a larger normalized dissipation. The interaction between turbulent pressure and divergence (i.e., pressure scrambling) is also found to transfer energy from the vertical to the horizontal components, and is expected to be stronger in roll vortices than in m esoscale cells. The sensible heat flux is found to fit well with a linear vertical profile in a clear or subcloud planetary boundary layer (PBL), in good agreement with the results of Lenschow et al., (1980). The heat flux ratio between the PBL top and the surface, derived from the linear fitted curve, is approximately -0.14, in good agreement with that derived from the lidar data for the same case. Near the PBL top, the heat flux profiles are consistent with those of Deardoff (1979) and Deardorff et al. (1980).
Document ID
19860052580
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Chou, S.-H.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Atlas, D.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Yeh, E.-N.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
August 12, 2013
Publication Date
March 15, 1986
Publication Information
Publication: Journal of the Atmospheric Sciences
Volume: 43
ISSN: 0022-4928
Subject Category
Oceanography
Accession Number
86A37318
Funding Number(s)
CONTRACT_GRANT: NSF ATM-84-14199
Distribution Limits
Public
Copyright
Other

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