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Representation in regional models of saturated river-aquifer interaction for gaining/losing rivers

机译:河流增/减的饱和含水层相互作用的区域模型表示

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River-aquifer interaction is normally included in regional groundwater models using river coefficients (streambed conductances); this approach is necessary because the dimensions of the river are usually smaller than the mesh spacing of the regional model. River coefficients, which are proxy coefficients, are generally estimated from the properties of the streambed deposits since it is assumed that measurable head losses between the stream and the aquifer are limited to those across the streambed itself. Most studies of river-aquifer interaction relate to losses from rivers due to groundwater pumping; however another common situation is that a river gains water from the aquifer along certain reaches and loses water from other reaches, a gaining/losing river. These different forms of river-aquifer interaction are examined using fine-grid numerical models which allow the representation of a wide variety of different conditions at the river channel, in the aquifer and on the boundaries of the aquifer. The concept of the river coefficient is shown to be reliable but the numerical values of the river coefficient do not depend primarily on the dimensions and properties of the riverbed deposits; the hydraulic conductivity of the aquifer is usually a more important factor. When the river coefficients, determined from the fine-grid solutions, are included in regional groundwater models, the representation of river-aquifer interaction is acceptable. (c) 2006 Elsevier B.V. All rights reserved.
机译:通常使用河流系数(河床电导)在区域地下水模型中包括河流与含水层的相互作用。这种方法是必要的,因为河流的尺寸通常小于区域模型的网格间距。由于假定河流和含水层之间的可测量水头损失仅限于整个河床本身的水头损失,因此通常根据河床沉积物的属性估算河流系数,这是代理系数。大多数关于水-水层相互作用的研究都涉及由于抽水造成的河流损失。然而,另一种常见情况是,一条河流沿一定的河段从含水层中取水,而从其他河段的输水/失水河中取水。使用细网格数值模型检查了这些不同形式的河流-含水层相互作用,这些模型允许表示河道,含水层中以及含水层边界上的各种不同条件。河流系数的概念被证明是可靠的,但是河流系数的数值并不主要取决于河床沉积物的尺寸和性质。含水层的水力传导率通常是一个更重要的因素。当根据细网格解决方案确定的河流系数包含在区域地下水模型中时,可接受的河流-含水层相互作用表示法。 (c)2006 Elsevier B.V.保留所有权利。

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