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Effects of variations of river stage and hydraulic conductivity on temporal scaling of groundwater levels: numerical simulations

机译:河段和水力传导率变化对地下水位时间尺度的影响:数值模拟

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It was found in previous studies that ground-water levels may fluctuate as a temporal fractal. In this study numerical simulations of groundwater level fluctuations in an unconfined aquifer near a river were conducted to investigate the effects of aquifer heterogeneity and river stage variations on the fractal behavior of the water levels, h(t). Groundwater recharge was taken to be a white-noise process. The aquifer heterogeneity was simulated with a second-order stationary field of hydraulic conductivity (K) with an exponential variogram model. The results showed that groundwater levels fluctuate as a temporal fractal in both homogeneous and heterogeneous aquifers as long as K is less than 10 m/d. Most aquifers may indeed act as a fractal filter which takes a random non-fractal recharge inputs and produces a fractal responses of groundwater level fluctuations. A crossover in temporal scaling of h(t) may appear in more permeable aquifers. Fluctuations of the groundwater level in a homogeneous aquifer are dominated by the recharge process when the river stage is constant or by the river stage variations when the river stage varies in highly permeable aquifers. Heterogeneity plays an important role in the temporal scaling of h(t) in more permeable aquifers: the stronger the heterogeneity, the stronger the temporal scaling of h(t).
机译:在以前的研究中发现,地下水位可能会随时间的分形而波动。在这项研究中,对河流附近无限制含水层中地下水位波动进行了数值模拟,以研究含水层非均质性和河段变化对水位分形行为h(t)的影响。地下水补给被认为是白噪声过程。利用指数变异函数模型,通过水力传导率(K)的二阶平稳场模拟了含水层的非均质性。结果表明,只要K小于10 m / d,均质和非均质含水层中的地下水位都会随时间的变化而波动。大多数含水层确实可以充当分形过滤器,该过滤器采用随机的非分形补给输入,并产生地下水位波动的分形响应。 h(t)的时间尺度上的交叉可能出现在更具渗透性的含水层中。当河流水位恒定时,均质含水层中地下水位的波动主要由补给过程决定;当高渗透性含水层中的河流水位变化时,则由河流水位变化决定。在渗透性更高的含水层中,异质性在h(t)的时间尺度上起着重要作用:非均质性越强,h(t)的时间尺度就越强。

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