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One-dimensional numerical modeling of the long-term morphodynamic evolution of a tidally-dominated estuary: The Lower Fly River (Papua New Guinea)

机译:以潮汐为主的河口:下飞河(巴布亚新几内亚)的长期形态动力学演化的一维数值模型

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We use a one-dimensional morphodynamic model to analyze the long-term evolution of the lower reaches of the Fly River, Papua New Guinea, from the Everill Junction to the delta mouth. The model shows how the break in the exponential trend of river width triggers deposition, thus producing a tidal region characterized by a higher bed elevation with respect to the river-dominated one. Numerical simulations indicate that the river attains a dynamic equilibrium configuration in which the amount of sediment entering upstream is flushed seaward. A sensitivity analysis is performed, in which the effect of varying solid discharge, tidal harmonics, and initial conditions is discussed. The model shows that an equilibrium configuration results from a delicate balance between the aggrading effect associated with channel divergence (acting mainly during neap tide and at slack water) and the opposite effect of tidal flushing driven by residual water discharge. A physically meaningful morphodynamic equilibrium occurs only for a small range of values of sediment discharge prescribed at the upstream boundary. In particular, an increase in sediment discharge leads to aggradation, while a decrease triggers extensive scour and a deepening of the estuary.
机译:我们使用一维形态动力学模型来分析从埃弗里尔交界处到三角洲口的飞河(巴布亚新几内亚)下游的长期演变。该模型显示了河流宽度指数趋势的中断如何触发沉积,从而形成了一个以河床为主的潮汐区为特征的潮汐区。数值模拟表明,河流达到了动态平衡状态,其中进入上游的沉积物量被向海冲刷。进行了灵敏度分析,其中讨论了变化的固体放电,潮汐谐波和初始条件的影响。该模型表明,平衡构型是由与河道发散有关的凝结作用(主要作用于潮汐时和水松弛时)与剩余水排放驱动的潮汐冲刷的相反作用之间的微妙平衡产生的。物理意义上的形态动力学平衡仅在上游边界规定的沉积物排放量的较小范围内发生。特别是,沉积物排放量的增加会导致凝结,而减少的量会触发大量冲刷和河口的加深。

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