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Estimating precipitation and actual evapotranspiration from precision lysimeter measurements

机译:从精密溶血仪测量估算沉淀和实际蒸散量

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Large weighable lysimeters allow a precise determination of the soil water balance and the quantification of both water exchange at the soil-atmosphere interface and the flux below the root zone toward the groundwater. If well embedded into an equally-vegetated environment, they reach a hitherto unprecedented accuracy in estimating precipitation (P) by rain, dew, fog, rime and snow, and evapotranspiration (ET). Lysimeters largely avoid errors made by traditional measurement systems, such as the wind error of Hellmann rain gauges, the island error of class-A pans, or errors from soil-water measurements that are subject to subsurface heterogeneity. If the amount of seepage water is added to the lysimeter mass, temporal changes of the lysimeter mass can be used to solve the water balance equation for atmospheric fluxes. Increasing mass indicates P, decreasing mass ET. The determination of the net water balance (sum of P and ET) is accurate and robust. A problem arises in the separate estimation of the underlying P and ET fluxes, because weight differences in specified time intervals are affected by stochastic fluctuations due to mechanical vibration, which may be caused by wind or other factors. The aim of this study is to evaluate algorithms that aim on eliminating the effects of these fluctuations and to estimate actual fluxes across the soil-atmosphere boundary and the soil water balance from lysimeter measurements. We use synthetic and real measured data from large lysimeters to test which strategies of data evaluation can be applied, and which degree of accuracy can be reached.
机译:大量可称量型型计允许精确测定土壤水平和土壤 - 大气界面的水交换的定量,以及根部区域向地下水下方的助焊剂。如果嵌入到同等植被的环境中,他们通过雨,露水,雾,霜和雪估计降水(p),以及蒸散(et)达到前所未有的准确性。 Lysimers在很大程度上避免了传统测量系统制造的错误,例如Hellmann Rain仪表的风误差,岛屿的岛屿误差,或受到地下异质性的土壤水测量的错误。如果将渗水量添加到尿素仪质量中,则可以使用溶血仪质量的时间变化来解决大气助熔剂的水平衡方程。增加质量表明p减少了质量等。净水平衡的确定(P和ET的总和)是准确和鲁棒的。在底层P和ET通量的单独估计中出现问题,因为指定时间间隔的重量差异受到由于机械振动引起的随机波动的影响,这可能是由风或其他因素引起的。本研究的目的是评估旨在消除这些波动的影响和估计土壤 - 大气边界上的实际助熔剂的算法,以及从溶血仪测量中的土壤水分平衡。我们使用大型型计的合成和实测数据来测试可以应用哪种数据评估的策略,并且可以达到哪种程度的准确度。

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