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Stability of backwater-influenced river bifurcations: A study of the Mississippi-Atchafalaya system

机译:受回水影响的河道分岔的稳定性:密西西比-阿查法拉雅系统的研究

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In this paper I use numerical modeling to show that the hydraulic backwater profile creates a feedback that may stabilize river bifurcations. The numerical model simulates flow and sediment transport in the Mississippi-Atchafalaya River system without the Old River Control Structure. The results show that bifurcation evolution strongly depends on the discharge upstream of the bifurcation. At upstream discharges greater than 12600 m ~3s ~(-1) the Atchafalaya River discharge increases through time at the expense of the Mississippi River. Interestingly, at upstream discharges lower than 12600 m ~3s ~(-1) the opposite occurs and the Mississippi River discharge increases at the expense of the Atchafalaya River. The capture direction changes because the backwater profile of each river varies enough at high and low discharge to invert the water surface slope ratio. These results suggest that the capture direction would change at high and low flow, which would have a stabilizing effect by preventing the runaway growth of one channel. Accounting for this, I calculate that in the absence of the Old River Control Structure capture would not happen catastrophically, but rather the Atchafalaya River would capture the Mississippi River in ~300 years from present day.
机译:在本文中,我使用数值模型来表明,水力回水剖面会产生可稳定河流分岔的反馈。数值模型模拟了没有旧河控制结构的密西西比河-阿恰法拉亚河系统中的水和泥沙输送。结果表明,分叉的演变在很大程度上取决于分叉上游的放电。在上游流量大于12600 m〜3s〜(-1)的情况下,阿查法拉亚河流量随时间增加而以密西西比河为代价。有趣的是,在上游流量小于12600 m〜3s〜(-1)的情况下,情况恰恰相反,密西西比河流量增加,而阿恰法拉亚河却为此付出了代价。捕获方向的变化是因为每条河流的回水剖面在高排水和低排水时变化很大,从而使水面的坡度比值反转。这些结果表明,捕获方向将在高流量和低流量下发生变化,这将通过防止一个通道的失控增长而具有稳定作用。考虑到这一点,我计算出在没有旧河控制结构的情况下不会发生灾难性的捕获,而从现在起大约300年内,阿恰法拉亚河将捕获密西西比河。

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