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Fractal Patterns in Riverbed Morphology Produce Fractal Scaling of Water Storage Times

机译:在河床形态中的分形模式产生了储水时间的分形缩放

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摘要

River topography is famously fractal, and the fractality of the sediment bed surface can produce scaling in solute residence time distributions. Empirical evidence showing the relationship between fractal bed topography and scaling of hyporheic travel times is still lacking. We performed experiments to make high-resolution observations of streambed topography and solute transport over naturally formed sand bedforms in a large laboratory flume. We analyzed the results using both numerical and theoretical models. We found that fractal properties of the bed topography do indeed affect solute residence time distributions. Overall, our experimental, numerical, and theoretical results provide evidence for a coupling between the sand-bed topography and the anomalous transport scaling in rivers. Larger bedforms induced greater hyporheic exchange and faster pore water turnover relative to smaller bedforms, suggesting that the structure of legacy morphology may be more important to solute and contaminant transport in streams and rivers than previously recognized.
机译:河流地貌是著名的分形,而沉积物床面的分形可以在溶质停留时间分布中产生水垢。仍缺乏表明分形床形貌与水流下旅行时间的比例之间关系的经验证据。我们进行了实验,以高分辨率观察大型实验室水槽中自然形成的沙床形物上的流化床地形和溶质运移。我们使用数值模型和理论模型分析了结果。我们发现床形的分形特性确实会影响溶质的停留时间分布。总体而言,我们的实验,数值和理论结果为沙床地形与河流异常输水规模之间的耦合提供了证据。相对于较小的床形,较大的床形引起更大的水交换和较快的孔隙水周转,这表明,与以前公认的相比,传统形态的结构对于溪流和河流中的溶质和污染物运输可能更为重要。

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