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Eddy Covariance Tilt Corrections over a Coastal Mountain Area in South-east China:Significance for Near-Surface Turbulence Characteristics

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【作者】 刘丽王体健孙振海王勤耕庄炳亮韩永李树

【Author】 LIU Li1,2,WANG Tijian 1,SUN Zhenhai3,WANG Qingeng4,ZHUANG Bingliang1,HAN Yong1,and LI Shu1 1School of Atmospheric Sciences,Nanjing University,Nanjing 210093 2Guizhou Key Laboratory of Mountainous Climate and Resources,Guiyang 550002 3Institute of Microorganism Epidemic,Academy of Military Medical Sciences,Beijing 100071 4School of Environment,Nanjing University,Nanjing 210093

【机构】 School of Atmospheric Sciences,Nanjing UniversityGuizhou Key Laboratory of Mountainous Climate and ResourcesInstitute of Microorganism Epidemic,Academy of Military Medical SciencesSchool of Environment,Nanjing University

【摘要】 Turbulence characteristics of an atmospheric surface layer over a coastal mountain area were investigated under different coordinate frames.Performances of three methods of coordinate rotation:double rotation(DR),triple rotation(TR),and classic planar-fit rotation(PF) were examined in terms of correction of eddy covariance flux.Using the commonly used DR and TR methods,unreasonable rotation angles are encountered at low wind speeds and cause significant run-to-run errors of some turbulence characteristics.The PF method rotates the coordinate system to an ensemble-averaged plane,and shows large tilt error due to an inaccurate fit plane over variable terrain slopes.In this paper,we propose another coordinate rotation scheme.The observational data were separated into two groups according to wind direction.The PF method was adapted to find an ensemble-averaged streamline plane for each group of hourly runs with wind speed exceeding 1.0 m s 1.Then,the coordinate systems were rotated to their respective bestfit planes for all available hourly observations.We call this the PF10 method.The implications of tilt corrections for the turbulence characteristics are discussed with a focus on integral turbulence characteristics,the spectra of wind-velocity components,and sensible heat and momentum fluxes under various atmospheric stabilities.Our results show that the adapted application of PF provides greatly improved estimates of integral turbulence characteristics in complex terrain and maintains data quality.The comparisons of the sensible heat fluxes for four coordinate rotation methods to fluxes before correction indicate that the PF10 scheme is the best to preserve consistency between fluxes.

【Abstract】 Turbulence characteristics of an atmospheric surface layer over a coastal mountain area were investigated under different coordinate frames.Performances of three methods of coordinate rotation:double rotation(DR),triple rotation(TR),and classic planar-fit rotation(PF) were examined in terms of correction of eddy covariance flux.Using the commonly used DR and TR methods,unreasonable rotation angles are encountered at low wind speeds and cause significant run-to-run errors of some turbulence characteristics.The PF method rotates the coordinate system to an ensemble-averaged plane,and shows large tilt error due to an inaccurate fit plane over variable terrain slopes.In this paper,we propose another coordinate rotation scheme.The observational data were separated into two groups according to wind direction.The PF method was adapted to find an ensemble-averaged streamline plane for each group of hourly runs with wind speed exceeding 1.0 m s 1.Then,the coordinate systems were rotated to their respective bestfit planes for all available hourly observations.We call this the PF10 method.The implications of tilt corrections for the turbulence characteristics are discussed with a focus on integral turbulence characteristics,the spectra of wind-velocity components,and sensible heat and momentum fluxes under various atmospheric stabilities.Our results show that the adapted application of PF provides greatly improved estimates of integral turbulence characteristics in complex terrain and maintains data quality.The comparisons of the sensible heat fluxes for four coordinate rotation methods to fluxes before correction indicate that the PF10 scheme is the best to preserve consistency between fluxes.

【基金】 supported by the National High Technology Research and Development Program of China(Grant No.2007AA022201);the National Special Fund for Water(Grant No.2008ZX07103007);the National Basic Research Program of China (Grant Nos.2010CB428503 and 2011CB403406);the National Natural Science Foundation of China(Grant Nos. 40805006 and 41075012)
  • 【文献出处】 Advances in Atmospheric Sciences ,大气科学进展(英文版) , 编辑部邮箱 ,2012年06期
  • 【分类号】P425.2
  • 【被引频次】5
  • 【下载频次】43
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