三角洲分岔区水沙分配的控制因素

IF 3.5 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Gabriele Barile, Paola Passalacqua, Siyoon Kwon, Marco Tubino
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引用次数: 0

摘要

河流主导的三角洲的分岔是整个河流网络中水和沉积物路线的主要参与者。尽管以前承认它们的重要性,但我们仍然缺乏一个关于分岔几何如何影响水和沉积物分配的全面框架。为了研究这一问题,我们首先将先前校准的蜡湖三角洲二维水动力模拟与拉格朗日粒子跟踪模型结合起来,量化了五个分叉处不同浮力的水和沉积物的分配,以及它们与下游分支之间通道宽度、分支角度和入口床高程差异的相关性。我们将分岔处的沉积物分配与现有的现场数据进行比较,以验证我们的方法。然后,我们在简化的几何体上使用相同的建模工具,其几何和水力特征与蜡湖三角洲的分岔相似。模型结果表明,分支角度对水和沉积物的分配没有影响。通过一个简单的线性公式,可以捕捉到通道宽度和入口床高度不对称的综合影响,该公式可以准确地估计由二维校准的水动力模拟返回的分岔处的水分配。我们的研究结果还强调了横向梯度在上游通道测深中决定沉积物分配的关键作用,表明上游通道横截面的较深部分可以导致较大比例的具有较大劳斯数的沉积物向相应的分叉方向移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Controlling Factors on Water and Sediment Partitioning at Deltaic Bifurcations

Controlling Factors on Water and Sediment Partitioning at Deltaic Bifurcations

Bifurcations in river-dominated deltas are the main actors in the routing of water and sediments throughout the fluvial network. In spite of previous acknowledgments of their importance, we still lack a comprehensive framework on how bifurcation geometry affects water and sediment partitioning. To investigate this issue, we first combine previously calibrated 2D hydrodynamic simulations on the Wax Lake Delta with a Lagrangian particle-tracking model, quantifying the partitioning of water and sediments with different buoyancy at five bifurcations and their correlations with differences in channel width, branching angle and inlet bed elevation between the downstream branches. We compare the sediment partitioning at bifurcations with available field data to validate our methodology. We then employ the same modeling tools on a simplified geometry, whose geometrical and hydraulic features resemble those of the bifurcations in the Wax Lake Delta. Model results show that the branching angle does not affect the partitioning of water and sediments. The combined effect of asymmetries in the channel width and inlet bed elevation is captured by a simple linear formula that accurately estimates the partitioning of water at bifurcations returned by the 2D calibrated hydrodynamic simulations. Our results also highlight the key role played by transverse gradients in the bathymetry of the upstream channel in determining the partitioning of sediments, suggesting that deeper portions of the cross-section of the upstream channel can cause a proportionately larger fraction of sediments with a larger Rouse number to be routed toward the corresponding bifurcate.

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来源期刊
Journal of Geophysical Research: Earth Surface
Journal of Geophysical Research: Earth Surface Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
6.30
自引率
10.30%
发文量
162
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