Observations of Near-Surface Heat-Flux and Temperature Profiles Through the Early Evening Transition over Contrasting Surfaces
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s10546-015-0067-z.pdf
Reference44 articles.
1. Acevedo OC, Fitzjarrald DR (2001) The early evening surface-layer transition: temporal and spatial variability. J Atmos Sci 58:2650–2667
2. Acevedo OC, Fitzjarrald DR (2003) In the core of the night—effects of intermittent mixing on a horizontally heterogeneous surface. Boundary-Layer Meteorol 106:1–33
3. Angevine WM (2007) Transitional, entraining, cloudy, and coastal boundary layers. Acta Geophys 56:2–20
4. Aubinet M, Vesala T, Papale D (2012) Eddy covariance—a practical guide to measurement and data analysis. Springer, Dordrecht, 438 pp
5. Blay-Carreras E, Pardyjak ER, Pino D, Alexander DC, Lohou F, Lothon M (2014) Countergradient heat flux observations during the evening transition period. Atmos Chem Phys 14:9077–9085
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