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A Diagnostic Approach towards the Causes of Energy Balance Closure Problem

机译:能量平衡关闭问题成因的诊断方法

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Hydrometeorological models are often evaluated and optimized on the basis of micrometeorological measurements. However, it has been known for more than three decades that surface measurements of sensible and latent heat energy (LE) are systematically underestimated. We studied this problem using six years of eddy-correlation measurements for four fields (corn, soybean, and prairie) in central Iowa, USA. We recorded major components of the energy equation (i.e. net radiation, sensible heat flux, LE, and soil heat flux, photosynthesis), and indirectly estimated most of the minor components of energy balance (namely storage in the soil, canopy and air). Storage in the canopy was related to leaf area index (LAI) acquired from Moderate Resolution Imaging Spectrometer (MODIS). In this paper, a diagnostic approach is investigated where systematic error is identified first. Three dimensional (3D) plots of the residual of energy equation vs. potential variables indicated the imbalance was largest mainly during the cold non-growing season when the soil was dry. Correlations between energy balance residual (EBR) and energy components showed that soil storage was not precisely estimated. Finally, an a-posteriori analysis (constrained linear multiple regression (CMLR)) was conducted to quantify the contribution of major/minor components of the energy equation towards EBR. The result highlights that the contribution of pertinent components of energy to EBR is mainly controlled by prevailing monthly hydrometeorological conditions; however, precise quantification of causes of imbalance is site-specific. A comparison between the a-posteriori analysis technique and the Bowen-ratio method demonstrates that the Bowen-ratio basically presumes a higher level of underestimation in LE. The results obtained in this study suggest that a-posteriori analysis may offer a superior methodology to correct measured eddy-correlation measurements. Furthermore, the overall trends in the correction of LE measurements suggest that there is a potential for rough monthly corrections of LE, irrespective of the type of crop.
机译:水文气象模型经常根据微气象测量进行评估和优化。但是,三十多年来,人们已经明显地低估了显热和潜热能(LE)的表面测量值。我们对美国爱荷华州中部的四个油田(玉米,大豆和草原)使用了六年的涡旋相关测量研究了这个问题。我们记录了能量方程式的主要成分(即净辐射,显热通量,LE和土壤热通量,光合作用),并间接估计了能量平衡的大部分次要成分(即储存在土壤,冠层和空气中)。冠层中的存储与从中等分辨率成像光谱仪(MODIS)获得的叶面积指数(LAI)有关。在本文中,研究了一种诊断方法,该方法首先确定系统错误。能量方程残差与势变量的三维(3D)曲线图表明,失衡主要在土壤干燥的寒冷非生长季节最大。能量平衡残留量(EBR)与能量成分之间的相关性表明,土壤储量没有得到精确估算。最后,进行了后验分析(约束线性多元回归(CMLR))以量化能量方程中主要/次要成分对EBR的贡献。结果表明,能源相关成分对EBR的贡献主要受当前每月水文气象条件的控制;但是,不平衡原因的精确量化是针对特定地点的。后验分析技术与Bowen-ratio方法的比较表明,Bowen-ratio基本上假定LE中的低估水平较高。在这项研究中获得的结果表明,后验分析可能会提供一种更好的方法来校正测得的涡相关度。此外,对LE值校正的总体趋势表明,不管作物的类型如何,都有可能每月对LE进行粗略的校正。

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