The Role of Wind Speed and Wind Shear for Banner Cloud Formation
Autor: | Rainer Erbes, Tobias Kremer, Elmar Schömer, Volkmar Wirth, Isabelle Prestel, Sebastian Schappert, Pascal Bubel, Joachim Eichhorn |
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Rok vydání: | 2019 |
Předmět: |
Atmospheric Science
010504 meteorology & atmospheric sciences Meteorology business.industry Cloud computing 010501 environmental sciences 01 natural sciences Vertical motion Wind speed Physics::Fluid Dynamics Atmosphere Boundary layer Wind shear Banner business Physics::Atmospheric and Oceanic Physics Geology 0105 earth and related environmental sciences |
Zdroj: | Journal of the Atmospheric Sciences. 77:1199-1212 |
ISSN: | 1520-0469 0022-4928 |
Popis: | Banner clouds are clouds that appear to be attached to the leeward face of a steep mountain. This paper investigates the role of wind speed and wind shear for the formation of banner clouds. Large-eddy simulations are performed to simulate the flow of dry air past an idealized pyramid-shaped mountain. The potential for cloud formation is diagnosed through the Lagrangian vertical parcel displacement, which in the case of a banner cloud shows a plume of large values in the lee of the mountain. In addition, vortical structures are visualized through streamlines and their curvature. A series of sensitivity experiments indicates that both the flow and the banner cloud occurrence are largely independent of the ambient wind speed U. On the other hand, the shear of the ambient wind has a profound impact on the location of the stagnation point on the windward face as well as on the flow geometry in the lee of the mountain. The relevant measure for shear is H/Hs, where H denotes the height of the mountain and Hs = U/Uz is the scale height of the shear (with Uz denoting the scale of the shear). The simulations are also used to compute the line-of-sight velocity component seen by a hypothetical Doppler wind lidar positioned in the lee of the mountain; the analysis suggests that such sensitivities can potentially be detected using modern wind lidar technology. |
Databáze: | OpenAIRE |
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