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Incision due to gravel mining: Modeling a case study from the Gallego River, Spain

机译:砾石开采造成的切口:以西班牙加勒戈河为例的案例研究

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Historical information on river degradation was used in a case study on the Gallego River, a tributary of the Ebro River, in northeastern Spain. The Gallego drains about 4000 km~2 of the southern slopes of the Pyrenees. Good channel surveys since the 1940s allowed a comparison of longitudinal bed profiles over time. Over this period about 1 million m~3 of gravel was mined according to the archival records. The volume of alluvium lost due to incision in the same period was 2 million m~3. This imbalance is tentatively explained by a budget model based on a bedload equation and an algorithm to determine whether the effective bedload transport is controlled by the transport capacity or by the supply of sediment. It appears that the incision process has changed the magnitude of the shear stresses on channel bed. As the river became deeper, the channel could accommodate higher discharges without overbank flooding. The results obtained from a second model based on diffusion equation for the bed elevation compared well with the field data. This model is based on the hypotheses of steady uniform flow regarding water and sediment conservation.
机译:在西班牙东北部的埃布罗河支流加勒戈河的案例研究中,使用了有关河流退化的历史信息。 Gallego排水了比利牛斯山脉南坡约4000 km〜2。自1940年代以来,良好的航道调查允许对纵向河床剖面随时间进行比较。根据档案记录,在此期间开采了约100万立方米的砾石。同期因切口丢失的冲积物量为200万立方米3。暂时用基于床荷方程的预算模型和确定有效床荷运输是由运输能力还是由沉积物供应控制的算法来暂时解释这种失衡。似乎切口过程已经改变了通道床上的剪应力的大小。随着河水变深,河道可以容纳更高的流量,而不会造成河床泛滥。从基于扩散方程的床高的第二个模型获得的结果与现场数据进行了很好的比较。该模型基于关于水和泥沙养护的稳定均匀流动的假设。

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