Propagation and Effects of a Mesoscale Gravity Wave Over a Weakly-Stratified Nocturnal Boundary Layer During the SABLES2006 Field Campaign
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s10546-009-9420-4.pdf
Reference52 articles.
1. Andrén A, Brown AR, Graf J, Mason PJ, Moeng C-H, Nieuwstadt FTM, Schumann U (1994) Large-eddy simulation of a neutrally stratifie boundary layer: a comparison of four computed ccodes. Q J Roy Meteorol Soc 120: 1457–1484
2. Beare RJ, MacVean MK, Holtslag AAM, Cuxart J, Esau I, Golaz JC, Jiménez MA, Khairoutdinov M, Kosovic B, Lewellen D, Lund TS, Lundquist JK, McCabe A, Moene AF, Noh Y, Raasch S, Sullivan P (2006) An intercomparison of large-eddy simulations of the stable boundary layer. Boundary-Layer Meteorol 118: 247–272
3. Böhme T, Hauf T, Lehmann V (2004) Investigation of short-period gravity waves with the Lindenberg 482 MHz tropospheric wind profiler. Q J Roy Meterol Soc 130: 2933–2952
4. Bosart LF, Cussen JP Jr (1973) Gravity wave phenomena accompanying East Coast cyclogenesis. Mon Weather Rev 101: 446–454
5. Cheng Y, Parlange MB, Brutsaert W (2005) Pathology of Monin-Obukhov similarity in the stable boundary layer. J Geophys Res 110: D06101
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