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Hyporheic flow and residence time distributions in heterogeneous cross-bedded sediment

机译:非均质层状沉积物中的渗流和停留时间分布

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摘要

The permeability heterogeneity of cross-bedded sediment increases path lengths of river-groundwater mixing (hyporheic exchange) in riverbeds and modifies the distribution of residence times. For two case studies, we numerically simulated fluid flow and solute transport through immobile bed forms composed of heterogeneous sediment and equivalent homogeneous sediment in order to clarify how cross-bedded permeability structures impact hyporheic exchange. The two permeability fields are from the cross-bedded Massillon Sandstone and modern climbing ripple deposits of the Brazos River (Texas). In both cases, permeability heterogeneity creates long hyporheic exchange paths but only slightly increases the depth of exchange relative to equivalent homogeneous sediment. In the Massillon example, permeability heterogeneity increases the proportion of long hyporheic residence times (>3 days). In the Brazos example, permeability heterogeneity increases the proportion of short residence times (<17 h). We attribute the different responses in residence time distributions to differences in permeability patterns near the sediment-water interface. The tails of residence time distributions extend for tens of years and conform to a power law in both heterogeneous and homogeneous sediment. Current-bed form interactions are responsible for the long tails, as opposed to permeability heterogeneity.
机译:跨层沉积物的渗透性非均质性增加了河床中河水-地下水混合(亲水交换)的路径长度,并改变了停留时间的分布。在两个案例研究中,我们对由非均质沉积物和等效均质沉积物组成的固定床形式的流体流动和溶质运移进行了数值模拟,以阐明跨层渗透性结构如何影响流变交换。这两个渗透率场来自交叉层状的马西隆砂岩和布拉索斯河(得克萨斯州)的现代攀登波纹沉积。在这两种情况下,渗透性的非均质性都产生了较长的水流交换路径,但是相对于等效的均质沉积物而言,仅稍微增加了交换深度。在Massillon实例中,渗透性非均质性增加了较长的次流滞留时间(> 3天)的比例。在Brazos示例中,渗透率非均质性增加了短停留时间(<17 h)的比例。我们将停留时间分布的不同响应归因于沉积物-水界面附近渗透率模式的差异。停留时间分布的尾部延伸数十年,并且在异质和均质沉积物中均符合幂律。与渗透率非均质性相反,长流尾流与流床形式的相互作用有关。

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  • 来源
    《Water resources research》 |2009年第8期|W08406.1-W08406.12|共12页
  • 作者单位

    Department of Geological Sciences, University of Texas at Austin, 1 University Station C9000, Austin, TX 78712, USA;

    Department of Geological Sciences, University of Texas at Austin, 1 University Station C9000, Austin, TX 78712, USA;

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