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Estimation of groundwater recharge from groundwater levels using nonlinear transfer function noise models and comparison to lysimeter data

机译:利用非线性传递函数噪声模型估计地下水位从地下水位补给的估计与Lysimeter数据的比较

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The estimation of groundwater recharge is of paramount importance to assess the sustainability of groundwater use in aquifers around the world. Estimation of the recharge flux, however, remains notoriously difficult. In this study the application of nonlinear transfer function noise (TFN) models using impulse response functions is explored to simulate groundwater levels and estimate groundwater recharge. A nonlinear root zone model that simulates recharge is developed and implemented in a TFN model and is compared to a more commonly used linear recharge model. An additional novel aspect of this study is the use of an autoregressive–moving-average noise model so that the remaining noise fulfills the statistical conditions to reliably estimate parameter uncertainties and compute the confidence intervals of the recharge estimates. The models are calibrated on groundwater-level data observed at the Wagna hydrological research station in the southeastern part of Austria. The nonlinear model improves the simulation of groundwater levels compared to the linear model. The annual recharge rates estimated with the nonlinear model are comparable to the average seepage rates observed with two lysimeters. The recharges estimates from the nonlinear model are also in reasonably good agreement with the lysimeter data at the smaller timescale of recharge per 10?d. This is an improvement over previous studies that used comparable methods but only reported annual recharge rates. The presented framework requires limited input data (precipitation, potential evaporation, and groundwater levels) and can easily be extended to support applications in different hydrogeological settings than those presented here.
机译:地下水充值估计至关重要,以评估世界各地含水层的地下水可持续性。然而,对充电助焊剂的估计仍然是众所周知的困难。在该研究中,探讨了使用脉冲响应函数的非线性传递函数噪声(TFN)模型来模拟地下水位和估计地下水补给。在TFN模型中开发和实现了模拟充电的非线性根区域模型,并与更常用的线性充电模型进行比较。该研究的另一个新颖方面是使用自回归移动平均噪声模型,使得剩余噪声满足统计条件,以可靠地估计参数不确定性并计算充电估计的置信区间。在奥地利东南部的WAGNA水文研究站观察到地下水位数据上校准了模型。与线性模型相比,非线性模型改善了地下水位的模拟。使用非线性模型估计的年度补给率与用两种立体计观察到的平均渗流速率相当。来自非线性模型的充电估计也与每10'D的再充电的较小时间表合理地吻合。这是对使用可比方法的先前研究的改进,但仅报告年度充值率。所提出的框架需要有限的输入数据(降水,电位蒸发和地下水位),并且可以轻松扩展到支持不同水文地理环境中的应用。

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