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ADVANCES IN A TWO-SOURCE ENERGY BALANCE MODEL: PARTITIONING OF EVAPORATION AND TRANSPIRATION FOR COTTON

机译:两种能源平衡模型的研究进展:棉花蒸发和蒸腾的分配

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Accurate partitioning of the evaporation (E) and transpiration (T) components of evapotranspiration (ET) in remote sensing models is important for evaluating strategies aimed at increasing crop water productivity. A two-source energy balance (TSEB) model designed for row crops solves the energy balance of the soil-canopy-atmosphere continuum using surface brightness temperature. By solving the energy balance of the soil and plant canopy separately, the TSEB model can calculate E and T, which cannot be done with single-source models. However, few studies have tested the TSEB model where E or T measurements were available, which until recently has impeded its advance. This article reviews recent physically based advances of the TSEB model. The advances were tested using measurements of E, T, and ET by microlysimeters, sap flow gauges, and weighing lysimeters, respectively, at Bushland, Texas, for irrigated cotton having a wide range of canopy cover. Root mean square error (RMSE) and mean bias error (MBE) were 0.54 and -0.19 mm d(-1), respectively, between measured and calculated E. RMSE and MBE were 0.87 and 0.31 mm d(-1), respectively, between measured and calculated T. This was deemed an improvement over previous TSEB model versions, which overestimated E and underestimate T, resulting in RMSE and MBE of up to 3.8 and -3.5 mm d(-1), respectively. Ongoing research includes testing the TSEB model using different remote sensing platforms, from ground-based to satellite scales.
机译:遥感模型中蒸发蒸腾量(ET)的蒸发(E)和蒸腾(T)成分的准确分配对于评估旨在提高作物水分生产率的策略非常重要。专为大田作物设计的两源能量平衡(TSEB)模型使用表面亮度温度解决了土壤-冠层-大气连续体的能量平衡。通过分别解决土壤和植物冠层的能量平衡,TSEB模型可以计算E和T,而单源模型则无法做到。但是,很少有研究测试可用于E或T测量的TSEB模型,直到最近才阻碍了它的发展。本文回顾了基于物理的TSEB模型的最新进展。在得克萨斯州布什兰市,分别使用微量测微仪,树液流量计和称重测湿仪对E,T和ET进行了测试,以测定覆盖范围广泛的灌溉棉的效果。测量和计算的E之间的均方根误差(RMSE)和平均偏差误差(MBE)分别为0.54和-0.19 mm d(-1)。RMSE和MBE分别为0.87和0.31 mm d(-1),这被认为是对先前的TSEB模型版本的改进,后者版本高估了E并低估了T,导致RMSE和MBE分别高达3.8和-3.5 mm d(-1)。正在进行的研究包括使用从地面到卫星尺度的不同遥感平台测试TSEB模型。

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