GSTDTAP  > 地球科学
DOI10.1175/JAS-D-19-0345.1
New Insights into Wind Shear Effects on Entrainment in Convective Boundary Layers Using Conditional Analysis
Fodor, Katherine; Mellado, Juan Pedro
2020-09-01
发表期刊Journal of the Atmospheric Sciences
出版年2020
英文摘要

Conventional analysis has shown that strong wind shear enhances the entrainment buoyancy flux in the convective boundary layer. By conditioning the entrainment zone into regions of turbulent (i.e., strongly vortical) and nonturbulent (i.e., weakly vortical) flow, some unexpected aspects of this process are revealed. It is found that turbulent regions contribute the most to the entrainment buoyancy flux, but that as wind shear increases, the magnitude of the buoyancy flux in turbulent regions remains approximately constant, or even decreases, despite substantially stronger buoyancy fluctuations. The reason is that the correlation between buoyancy and vertical velocity fluctuations decreases with increasing wind shear, to the extent that it compensates the stronger buoyancy fluctuations. In free convection, this correlation is high because the vertical velocity is mainly determined by the buoyancy force acting in the same direction. Under strong shear conditions, buoyancy is no longer the only external source of vertical velocity fluctuations and their correlation consequently decreases. Hence, shear enhancement of the buoyancy flux in the entrainment zone is primarily due to an increase of the turbulent area fraction, rather than a change of flux inside the turbulent regions.

领域地球科学 ; 气候变化
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/293967
专题地球科学
气候变化
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Fodor, Katherine,Mellado, Juan Pedro. New Insights into Wind Shear Effects on Entrainment in Convective Boundary Layers Using Conditional Analysis[J]. Journal of the Atmospheric Sciences,2020.
APA Fodor, Katherine,&Mellado, Juan Pedro.(2020).New Insights into Wind Shear Effects on Entrainment in Convective Boundary Layers Using Conditional Analysis.Journal of the Atmospheric Sciences.
MLA Fodor, Katherine,et al."New Insights into Wind Shear Effects on Entrainment in Convective Boundary Layers Using Conditional Analysis".Journal of the Atmospheric Sciences (2020).
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