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DOI10.1175/JAS-D-17-0246.1
Scaling and Similarity of the Anisotropic Coherent Eddies in Near-Surface Atmospheric Turbulence
Ghannam, Khaled1,2; Katul, Gabriel G.1; Bou-Zeid, Elie2; Gerken, Tobias3; Chamecki, Marcelo4
2018-03-01
发表期刊JOURNAL OF THE ATMOSPHERIC SCIENCES
ISSN0022-4928
EISSN1520-0469
出版年2018
卷号75期号:3页码:943-964
文章类型Article
语种英语
国家USA
英文摘要

The low-wavenumber regime of the spectrum of turbulence commensurate with Townsend's "attached'' eddies is investigated here for the near-neutral atmospheric surface layer (ASL) and the roughness sublayer (RSL) above vegetation canopies. The central thesis corroborates the significance of the imbalance between local production and dissipation of turbulence kinetic energy (TKE) and canopy shear in challenging the classical distance-from-the-wall scaling of canonical turbulent boundary layers. Using five experimental datasets (two vegetation canopy RSL flows, two ASL flows, and one open-channel experiment), this paper explores (i) the existence of a low-wavenumber k(-1) scaling law in the (wind) velocity spectra or, equivalently, a logarithmic scaling ln(r) in the velocity structure functions; (ii) phenomeno-logical aspects of these anisotropic scales as a departure from homogeneous and isotropic scales; and (iii) the collapse of experimental data when plotted with different similarity coordinates. The results show that the extent of the k(-1) and/or ln(r) scaling for the longitudinal velocity is shorter in the RSL above canopies than in the ASL because of smaller scale separation in the former. Conversely, these scaling laws are absent in the vertical velocity spectra except at large distances from the wall. The analysis reveals that the statistics of the velocity differences Delta u and Delta w approach a Gaussian-like behavior at large scales and that these eddies are responsible for momentum/energy production corroborated by large positive (negative) excursions in Delta u accompanied by negative (positive) ones in Delta w. A length scale based on TKE dissipation collapses the velocity structure functions at different heights better than the inertial length scale.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000429576900014
WOS关键词HIGH-REYNOLDS-NUMBER ; ORDER STRUCTURE FUNCTIONS ; BOUNDARY-LAYER-FLOWS ; WALL TURBULENCE ; TAYLORS HYPOTHESIS ; SPECTRA ; ENERGY ; LAW ; VELOCITY ; TEMPERATURE
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
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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/29288
专题地球科学
作者单位1.Duke Univ, Nicholas Sch Environm, Durham, NC 27708 USA;
2.Princeton Univ, Dept Civil & Environm Engn, Princeton, NJ 08544 USA;
3.Montana State Univ, Dept Land Resources & Environm Sci, Bozeman, MT 59717 USA;
4.Univ Calif Los Angeles, Dept Atmospher & Ocean Sci, Los Angeles, CA USA
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GB/T 7714
Ghannam, Khaled,Katul, Gabriel G.,Bou-Zeid, Elie,et al. Scaling and Similarity of the Anisotropic Coherent Eddies in Near-Surface Atmospheric Turbulence[J]. JOURNAL OF THE ATMOSPHERIC SCIENCES,2018,75(3):943-964.
APA Ghannam, Khaled,Katul, Gabriel G.,Bou-Zeid, Elie,Gerken, Tobias,&Chamecki, Marcelo.(2018).Scaling and Similarity of the Anisotropic Coherent Eddies in Near-Surface Atmospheric Turbulence.JOURNAL OF THE ATMOSPHERIC SCIENCES,75(3),943-964.
MLA Ghannam, Khaled,et al."Scaling and Similarity of the Anisotropic Coherent Eddies in Near-Surface Atmospheric Turbulence".JOURNAL OF THE ATMOSPHERIC SCIENCES 75.3(2018):943-964.
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