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Estimation of Evapotranspiration and Water Budget Components Using Concurrent Soil Moisture and Water Table Monitoring

机译:利用土壤水分和水位监测的同时估算蒸散量和水量收支

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Simultaneous measurements of soil moisture profiles and water table heads, along a flow path, were used to determine evapotranspiration (ET) along with other components of the water budget. The study was conducted at a small-scale (~0.8?Km2) hydrologic monitoring field site in Hillsborough County, Florida, from January 2002 to June 2004. Frequency Domain Reflectometry soil moisture probes, installed in close proximity to water table monitoring wells were used to derive changes in the soil water storage. A one-dimensional transect model was developed; changes in the soil water storage and water table observations served as input to determine all vertical and lateral boundary fluxes along the shallow water table flow plane. Two distinct land cover environments, grassland and an alluvial wetland forest, were investigated in this particular study. The analysis provided temporally variable ET estimates for the two land covers with annual totals averaging 850?mm for grassland, to 1100?mm for the alluvial wetland forest. Quantitative estimates of other components of a water budget, for example, infiltration, interception capture, total rainfall excess, and runoff were also made on a quarterly and annual basis. Novelty of this approach includes ability to resolve ET components and other water budget fluxes that provide useful parameterization and calibration potential for predictive simulation models.
机译:沿着流径同时测量土壤湿度剖面和地下水位,用于确定蒸散量(ET)以及水预算的其他组成部分。该研究于2002年1月至2004年6月在佛罗里达州希尔斯伯勒县的一个小型(〜0.8?Km2)水文监测现场进行。使用频域反射法土壤湿度探头,该探头安装在靠近地下水位监测井的位置得出土壤储水量的变化。建立了一维横断面模型;土壤水储量的变化和地下水位观测值可作为输入,确定沿浅水位流平面的所有垂直和横向边界通量。在此特定研究中,研究了两种不同的土地覆盖环境,即草地和冲积湿地森林。该分析提供了这两个土地覆盖物的时变ET估计值,草地的年平均总量为850?mm,冲积湿地森林的年平均总量为1100?mm。还按季度和年度对水预算的其他组成部分(例如,入渗,截留捕获,总降雨过量和径流)进行定量估计。这种方法的新颖性包括解决ET成分和其他水预算通量的能力,这些能力为预测性仿真模型提供有用的参数化和校准潜力。

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