An Evaluation of Boundary-Layer Depth, Inversion and Entrainment Parameters by Large-Eddy Simulation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s10546-011-9668-3.pdf
Reference43 articles.
1. Angevine WM (2007) Transitional, entraining, cloudy, and coastal boundary layers. Acta Geophys 56: 2–20. doi: 10.2478/s11600-007-0035-1
2. Angevine WM, White AB, Avery SK (1994) Boundary-layer depth and entrainment zone characterization with a boundary-layer profiler. Boundary-Layer Meteorol 68: 375–385
3. Ayotte KW, Sullivan PP, Andrén A, Doney SC, Holtslag AAM, Large WG, McWilliams JC, Moeng C-H, Otte MJ, Tribbia JJ, Wyngaard JC (1996) An evaluation of neutral and convective planetary boundary layer parameterizations relative to large-eddy simulations. Boundary-Layer Meteorol 79: 131–175
4. Beyrich F (1997) Mixing height estimation from sodar data—a critical discussion. Atmos Environ 31: 3941–3953
5. Beyrich F, Gryning S-E (1998) Estimation of the entrainment zone depth in a shallow convective boundary layer from sodar data. J Appl Meteorol 37: 225–268
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