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Estimating evapotranspiration and groundwater flow from water-table fluctuations for a general wetland scenario

机译:估算蒸发蒸腾量和地下水流量 一般湿地情景的水位波动

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摘要

The use of diurnal water-table fluctuation methods to calculate evapotranspiration (ET) and groundwater flow is of increasing interest in ecohydrological studies. Most studies of this type, however, have been located in riparian wetlands of semi-arid regions where groundwater levels are consistently below topographic surface elevations and precipitation events are infrequent. Current methodologies preclude application to a wider variety of wetland systems. In this study, we extended a method for estimating sub-daily ET and groundwater flow rates from water-level fluctuations to fit highly dynamic, non-riparian wetland scenarios. Modifications included (1) varying the specific yield to account for periodic flooded conditions and (2) relating empirically derived ET to estimated potential ET for days when precipitation events masked the diurnal signal. To demonstrate the utility of this method, we estimated ET and groundwater fluxes over two growing seasons (2006–2007) in 15 wetlands within a ridge-and-swale wetland complex of the Laurentian Great Lakes under flooded and non-flooded conditions.Mean daily ET rates for the sites ranged from 4.0mmd-1 to 6.6mmd-1. Shallow groundwater discharge rates resulting from evaporative demand ranged from2.5mmd-1 to 4.3mmd-1. This study helps to expand our understanding of the evapotranspirative demand of plants under various hydrologic and climate conditions.
机译:在生态水文学研究中,使用昼夜水位波动法来计算蒸散量和地下水流量越来越受到关注。但是,大多数这类研究都位于半干旱地区的河岸湿地,那里的地下水水位始终低于地形地表海拔,而且很少发生降雨事件。当前的方法无法将其应用于更广泛的湿地系统。在这项研究中,我们扩展了一种从水位波动估算次日ET和地下水流量的方法,以适应高度动态的非河岸湿地情景。修改包括(1)改变特定产量以解决周期性淹水情况,以及(2)当降水事件掩盖了昼夜信号时,将根据经验得出的ET与估计的潜在ET相关联几天。为了证明这种方法的实用性,我们估算了在洪涝和非洪涝条件下,劳伦山脉五大湖脊-沼泽湿地综合体中15个湿地在两个生长季节(2006-2007年)内的ET和地下水通量。站点的ET速率范围为4.0mmd-1至6.6mmd-1。蒸发需求导致的浅层地下水排放速率介于2.5mmd-1至4.3mmd-1之间。这项研究有助于扩大我们对各种水文和气候条件下植物蒸散需求的了解。

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