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Evaluating multi-year, multi-site data on the energy balance closure of eddy-covariance flux measurements at cropland sites in southwestern Germany

机译:评估多年的多站点数据关于德国西南部田地田地田庄园庄园田径队的能量平衡闭合

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摘要

The energy balance of eddy-covariance (EC) measurements is typically not closed, resulting in one of the main challenges in evaluating and interpreting EC flux data. Energy balance closure (EBC) is crucial for validating and improving regional and global climate models. To investigate the nature of the gap in EBC for agroecosystems, we analyzed EC measurements from two climatically contrasting regions (Kraichgau - KR - and Swabian Jura - SJ) in southwestern Germany. Data were taken at six fully equipped EC sites from 2010 to 2017. The gap in EBC was quantified by ordinary linear regression, relating the energy balance ratio (EBR), calculated as the quotient of turbulent fluxes and available energy, to the residual energy term. In order to examine potential reasons for differences in EBC, we compared the EBC under varying environmental conditions and investigated a wide range of possible controls. Overall, the variation in EBC was found to be higher during winter than summer. Moreover, we determined that the site had a statistically significant effect on EBC but no significant effect on either crop or region (KR vs SJ). The time-variable footprints of all EC stations were estimated based on data measured in 2015, complimented by micro-topographic analyses along the pre-vailing wind direction. The smallest mean annual energy balance gap was 17% in KR and 13% in SJ. Highest EBRs were mostly found for winds from the prevailing wind direction. The spread of EBRs distinctly narrowed under unstable atmospheric conditions, strong buoyancy, and high friction velocities. Smaller footprint areas led to better EBC due to increasing homogeneity. Flow distortions caused by the back head of the anemometer negatively affected EBC during corresponding wind conditions.
机译:涡涡流(EC)测量的能量平衡通常不会关闭,导致评估和解释EC通量数据中的主要挑战之一。能量平衡关闭(EBC)对于验证和改善区域和全球气候模型至关重要。为了研究EBC对农业生物系统的差距的性质,我们在德国西南部的两个气候造影区域(Kraichgau - KR - 和Swabian Jura-SJ)分析了EC测量。从2010年到2017年以六种完全配备的EC站点拍摄数据。通过普通线性回归量化EBC的间隙,与湍流助熔剂和可用能量的商,以湍流势率和可用能量的商计算。 。为了检查EBC差异的潜在原因,我们将EBC与各种环境条件进行比较,并调查了广泛的可能对照。总体而言,在冬季,EBC的变化比夏天更高。此外,我们确定该网站对EBC具有统计学显着的影响,但对作物或地区没有显着影响(KR VS SJ)。基于2015年测量的数据估计了所有EC站的时间可变脚印,通过沿着预vailing风向的微观地形分析赞美。最小的平均能量平衡缺口为kr的17%和13%的SJ。最高的EBRS主要被发现为来自普遍风向的风。在不稳定的大气条件下,强烈的浮力和高摩擦速度明显地缩小了EBRS明显缩小。由于均匀性增加,较小的足迹区域导致更好的EBC。风速计的后头引起的流动扭曲在相应的风能期间受到抗抗凸度的负面影响。

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  • 来源
    《Biogeosciences》 |2019年第2期|共20页
  • 作者单位

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Phys &

    Meteorol Phys &

    Meteorol Garben Str 30 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

    Univ Hohenheim Inst Landscape &

    Plant Ecol Plant Ecol &

    Ecotoxicol August von Hartmann Str 3 D-70593 Stuttgart Germany;

    Tashkent Inst Irrigat &

    Agr Mechanizat Engineers EcoGIS Ctr Kary Niyoziy Str 39 Tashkent 100000 Uzbekistan;

    Univ Hohenheim Inst Soil Sci &

    Land Evaluat Biogeophys Emil Wolff Str 27 D-70593 Stuttgart Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物地球化学、气体地球化学;
  • 关键词

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