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Energy Imbalance and Evapotranspiration Hysteresis Under an Advective Environment: Evidence From Lysimeter, Eddy Covariance, and Energy Balance Modeling

机译:方向性环境下的能量不平衡和蒸发渗透滞后:来自Lysimeter,Eddy Covariance和能量平衡建模的证据

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摘要

Surface energy imbalance problems have been underexplored especially under advective environments. Here, we present a novel analysis of surface energy fluxes from three distinct approaches-weighing lysimeter, eddy covariance (EC), and surface energy balance modeling for the 2014 sorghum and 2016 corn crop seasons in Bushland, Texas. Our results suggest that energy imbalance problems in the EC system were evidently associated with two opposite evapotranspiration (ET) hysteresis patterns with respect to net radiation and water vapor pressure deficit (VPD). The lysimeter ET had the smallest ET hysteresis while the eddy covariance ET results indicated the strongest hysteresis with respect to net radiation. Conversely, the lysimeter ET hysteresis related to water VPD was stronger than that of the eddy covariance method. This study provides understanding of ET hysteresis patterns, energy imbalance, and advective conditions associated with turbulent flux dynamics for both diel and crop growing seasonal timescales in Bushland, Texas.
机译:地表能量不平衡问题一直没有得到充分的研究,尤其是在平流环境下。在这里,我们从三种不同的方法对德克萨斯州布什兰市2014年高粱和2016年玉米种植季节的表面能通量进行了新的分析,即蒸渗计、涡流协方差(EC)和表面能平衡建模。我们的结果表明,EC系统中的能量不平衡问题明显与净辐射和水汽压亏损(VPD)的两种相反的蒸散(ET)滞后模式有关。蒸渗仪ET具有最小的ET滞后,而涡流协方差ET结果表明,相对于净辐射而言,滞后最强。相反,与水VPD相关的蒸渗仪ET滞后比涡流协方差法更强。这项研究提供了对德克萨斯州布什兰地区昼夜和作物生长季节尺度的ET滞后模式、能量不平衡以及与湍流通量动力学相关的平流条件的理解。

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