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A reduced-complexity model for river delta formation – Part 1: Modeling deltas with channel dynamics

机译:河流三角洲形成的复杂度降低模型-第1部分:使用渠道动态建模增量

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In this work we develop a reduced-complexity model (RCM) for river delta formation (referred to as DeltaRCM in the following). It is a rule-based cellular morphodynamic model, in contrast to reductionist models based on detailed computational fluid dynamics. The basic framework of this model (DeltaRCM) consists of stochastic parcel-based cellular routing schemes for water and sediment and a set of phenomenological rules for sediment deposition and erosion. The outputs of the model include a depth-averaged flow field, water surface elevation and bed topography that evolve in time. Results show that DeltaRCM is able (1) to resolve a wide range of channel dynamics – including elongation, bifurcation, avulsion and migration – and (2) to produce a variety of deltas such as alluvial fan deltas and deltas with multiple orders of bifurcations. We also demonstrate a simple stratigraphy recording component which tracks the distribution of coarse and fine materials and the age of the deposits. Essential processes that must be included in reduced-complexity delta models include a depth-averaged flow field that guides sediment transport a nontrivial water surface profile that accounts for backwater effects at least in the main channels, both bedload and suspended sediment transport, and topographic steering of sediment transport.
机译:在这项工作中,我们为河三角洲(以下简称DeltaRCM)开发了复杂度降低的模型(RCM)。与基于详细计算流体动力学的还原论模型相反,它是基于规则的细胞形态动力学模型。该模型的基本框架(DeltaRCM)包括基于随机包裹的水和沉积物的细胞路由方案,以及一组用于沉积物沉积和侵蚀的现象学规则。该模型的输出包括随时间变化的深度平均流场,水面高程和床形。结果表明,DeltaRCM能够(1)解决各种通道动力学问题,包括伸长,分叉,撕脱和迁移,以及(2)产生各种三角洲,例如冲积扇三角洲和具有多个分叉阶数的三角洲。我们还演示了一个简单的地层记录组件,该组件可跟踪粗,细物料的分布以及矿床的年龄。降低复杂性三角洲模型中必须包括的基本过程包括深度平均流场,该流场指导沉积物的非平凡水面剖面,至少考虑了主要通道中的回水影响,包括底泥和悬浮泥沙的输送,以及地形转向沉积物的运输。

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