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A time series approach to inferring groundwater recharge using the water table fluctuation method

机译:利用地下水位波动法推断地下水补给量的时间序列方法

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摘要

The water table fluctuation method for determining recharge from precipitation and water table measurements was originally developed on an event basis. Here a new multievent time series approach is presented for inferring groundwater recharge from long-term water table and precipitation records. Additional new features are the incorporation of a variable specific yield based upon the soil moisture retention curve, proper accounting for the Lisse effect on the water table, and the incorporation of aquifer drainage so that recharge can be detected even if the water table does not rise. A methodology for filtering noise and non-rainfall-related water table fluctuations is also presented. The model has been applied to 2 years of field data collected in the Tomago sand beds near Newcastle, Australia. It is shown that gross recharge estimates are very sensitive to time step size and specific yield. Properly accounting for the Lisse effect is also important to determining recharge.
机译:用于根据降水量和地下水位测量值确定补给量的地下水位波动方法最初是基于事件开发的。这里提出了一种新的多事件时间序列方法,用于从长期地下水位和降水记录中推断地下水补给量。其他新功能包括根据土壤水分保持曲线变化可变的单产,适当考虑Lisse对地下水位的影响以及合并含水层排水,以便即使地下水位不升高也能检测到补给。还提出了一种过滤噪声和与降雨无关的地下水位波动的方法。该模型已应用于在澳大利亚纽卡斯尔附近的Tomago沙床中收集的2年现场数据。结果表明,总补给估算值对时间步长和比产量非常敏感。正确考虑Lisse效应对于确定补给也很重要。

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