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首页> 外文期刊>Hydrology and Earth System Sciences >Nonlinear effects of locally heterogeneous hydraulic conductivity fields on regional stream–aquifer exchanges
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Nonlinear effects of locally heterogeneous hydraulic conductivity fields on regional stream–aquifer exchanges

机译:局部非均质水力传导率场对区域河流—含水层交换的非线性影响

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Computational experiments are performed to evaluate the effects of locally heterogeneous conductivity fields on regional exchanges of water between stream and aquifer systems in the Middle Heihe River basin (MHRB) of northwestern China. The effects are found to be nonlinear in the sense that simulated discharges from aquifers to streams are systematically lower than discharges produced by a base model parameterized with relatively coarse effective conductivity. A similar, but weaker, effect is observed for stream leakage. The study is organized around three hypotheses: (H1) small-scale spatial variations of conductivity significantly affect regional exchanges of water between streams and aquifers in river basins, (H2) aggregating small-scale heterogeneities into regional effective parameters systematically biases estimates of stream–aquifer exchanges, and (H3) the biases result from slow paths in groundwater flow that emerge due to small-scale heterogeneities. The hypotheses are evaluated by comparing stream–aquifer fluxes produced by the base model to fluxes simulated using realizations of the MHRB characterized by local (grid-scale) heterogeneity. Levels of local heterogeneity are manipulated as control variables by adjusting coefficients of variation. All models are implemented using the MODFLOW (Modular Three-dimensional Finite-difference Groundwater Flow Model) simulation environment, and the PEST (parameter estimation) tool is used to calibrate effective conductivities defined over 16 zones within the MHRB. The effective parameters are also used as expected values to develop lognormally distributed conductivity (iK/i) fields on local grid scales. Stream–aquifer exchanges are simulated with iK/i fields at both scales and then compared. Results show that the effects of small-scale heterogeneities significantly influence exchanges with simulations based on local-scale heterogeneities always producing discharges that are less than those produced by the base model. Although aquifer heterogeneities are uncorrelated at local scales, they appear to induce coherent slow paths in groundwater fluxes that in turn reduce aquifer–stream exchanges. Since surface water–groundwater exchanges are critical hydrologic processes in basin-scale water budgets, these results also have implications for water resources management.
机译:进行了计算实验,以评估局部非均质电导率场对中国西北黑河流域中部(MHRB)河流与含水层系统之间区域水交换的影响。从模拟的结果来看,从含水层到河流的模拟排放量总体上低于由参数化的,具有相对粗略有效电导率的基本模型产生的排放量,从某种意义上说,这些影响是非线性的。观察到类似的但较弱的流泄漏效果。该研究围绕以下三个假设进行组织:(H1)电导率的小范围空间变化会显着影响流域内河流与含水层之间的区域水交换,(H2)将小规模的非均质性汇总为区域有效参数,从而有系统地使河流的估算值产生偏差。 (H3)偏差是由于小规模异质性引起的地下水流缓慢路径所致。通过将基本模型产生的水-水流通量与使用以局部(网格规模)非均质性为特征的MHRB的实现模拟的通量进行比较,对假设进行了评估。通过调整变异系数,可以将局部异质性水平作为控制变量进行操作。所有模型均使用MODFLOW(模块化三维有限差分地下水流模型)模拟环境实现,PEST(参数估计)工具用于校准MHRB中16个区域上定义的有效电导率。有效参数还用作期望值,以在局部网格尺度上发展对数正态分布的电导率( K )字段。用两个尺度上的 K 字段模拟了流水交换,然后进行了比较。结果表明,小规模异质性的影响显着影响交换,而基于局部异质性的模拟总是产生的放电量小于基本模型产生的放电量。尽管含水层的非均质性在地方尺度上是不相关的,但它们似乎在地下水通量中引起连贯的缓慢路径,从而减少了含水层与河流之间的交换。由于地表水-地下水交换是流域规模水预算中的关键水文过程,因此这些结果也对水资源管理产生影响。

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