Multi-site observation of large-scale eddies in the surface layer of the Loess Plateau

被引:0
作者
Jinbei CHEN [1 ,2 ]
Xiaowen CHEN [3 ]
Wei JIA [1 ]
Ye YU [1 ]
Suping ZHAO [1 ]
机构
[1] Key Laboratory of Land Surface Process and Climate Change in Cold and Arid Regions Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences
[2] Key Laboratory of Middle Atmosphere and Global Environment Observation (LAGEO), Institute of Atmospheric Physics, Chinese Academy of Sciences
[3] Mechanical Engineering Department, Pennsylvania State University
关键词
D O I
暂无
中图分类号
P412 [探测技术与方法];
学科分类号
0706 ; 070601 ;
摘要
This article aims to build a theory of atmospheric boundary layer turbulence under complex conditions. To achieve this goal, we constructed a multi-site observation and analysis method of atmospheric turbulence based on related principles.This method first requires verification for the ergodicity of the full-scale observation of surface-layer turbulence, which proves that eddies within a scale of 60 min during a four-site observation can easily meet ergodicity. Meanwhile, by applying the second-order structure function for the horizontal wind speed turbulence of a single site and upstream and downstream points, we verified the ergodicity of the turbulence observation. Comparing the turbulence spectrum to the second-order structure function for the horizontal wind speed from the four-site observation, a relatively high accordance was observed, proving the reasonability of the multi-site observation. Moreover, compared to the single-site observation, the four-site observation can improve the estimation accuracy of the surface-layer turbulence spectrum and vertical turbulent flux. As a result, we can describe the threedimensional structure of turbulence more accurately and comprehensively by combining analytical data from single-site and four-site observations. In summary, the multi-site turbulence observation method shows that the horizontal and vertical wind turbulence of the Baimiao plateau has a typical structure of a turbulence spectrum with clear spectral gaps. The result is in accordance with the scale of the turbulence spectral gaps obtained from the 6 h data. The horizontal wind speed is under the influence of the terrain, so its spectrum of large-scale eddies has higher fluctuations, but its spectral gaps can still be clearly distinguished. Although the spectral gaps of the temperature spectrum are not distinguishable, they still have the same scale as the spectral gap of the vertical and horizontal turbulence spectrum. Moreover, the temperature spectrum possesses typical structure characteristics of the boundary-layer turbulence spectrum.
引用
收藏
页码:871 / 881
页数:11
相关论文
共 19 条
[1]  
Ergodicity of turbulence measurements upon complex terrain in Loess Plateau[J]. Jinbei CHEN,Xiaowen CHEN,Xiaojun JING,Wei JIA,Ye YU,Suping ZHAO.Science China(Earth Sciences). 2021(01)
[2]  
On the atmospheric movement and the imbalance of observed and calculated energy in the surface layer[J]. ZUO HongChao *,XIAO Xia,YANG QiDong,DONG LongXiang,CHEN JiWei & WANG ShuJin Key Laboratory for Semiarid Climate Change of the Ministry of Education,College of Atmospheric Sciences,Lanzhou University,Lanzhou 730000,China.Science China(Earth Sciences). 2012(09)
[3]  
Modification of the land surface energy balance relationship by introducing vertical sensible heat advection and soil heat storage over the Loess Plateau[J]. ZHANG Qiang1,2,3*,LI HongYu3,1 & ZHAO JianHua1,3 1 Key laboratory of Arid Climatic Change and Reducing Disaster of Gansu Province,Key Open Laboratory of Arid Climatic Change and Disaster Reduction,Institute of Arid Meteorology,China Meteorological Administration,Lanzhou 730020,China;2 Gansu Provincial Meteorological Bureau,Lanzhou 730020,Ch
[4]   Scaling and Similarity of the Anisotropic Coherent Eddies in Near-Surface Atmospheric Turbulence [J].
Ghannam, Khaled ;
Katul, Gabriel G. ;
Bou-Zeid, Elie ;
Gerken, Tobias ;
Chamecki, Marcelo .
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2018, 75 (03) :943-964
[5]  
Upscaling evapotranspiration measurements from multi-site to the satellite pixel scale over heterogeneous land surfaces[J] . Shaomin Liu,Ziwei Xu,Lisheng Song,Qianyi Zhao,Yong Ge,Tongren Xu,Yanfei Ma,Zhongli Zhu,Zhenzhen Jia,Fen Zhang.Agricultural and Forest Meteorology . 2016
[6]   Full-Scale Spectrum of Boundary-Layer Winds [J].
Larsen, Xiaoli G. ;
Larsen, Soren E. ;
Petersen, Erik L. .
BOUNDARY-LAYER METEOROLOGY, 2016, 159 (02) :349-371
[7]   Ergodicity test of the eddy-covariance technique [J].
Chen, J. ;
Hu, Y. ;
Yu, Y. ;
Lu, S. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2015, 15 (17) :9929-9944
[8]  
Theorem of turbulent intensity and macroscopic mechanism of the turbulence development[J] . YinQiao Hu,JinBei Chen,HongChao Zuo.Science in China Series D: Earth Sciences . 2007 (5)
[9]  
Anisotropy in turbulent flows and in turbulent transport[J] . Luca Biferale,Itamar Procaccia.Physics Reports . 2005 (2)
[10]   The structure of the near-neutral atmospheric surface layer [J].
Drobinski, P ;
Carlotti, P ;
Newson, RK ;
Banta, RM ;
Foster, RC ;
Redelsperger, JL .
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2004, 61 (06) :699-714