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Research Article Aeolian Sediment Transport Integration in General Stratigraphic Forward Modeling

机译:一般地层正演模拟中的风沙沉积物运移整合研究

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A large number of numerical models have been developed to simulate the physical processes involved in saltation, and, recently to investigate the interaction between soil vegetation cover and aeolian transport. These models are generally constrained to saltation of monodisperse particles while natural saltation occurs over mixed soils. We present a three-dimensional numerical model of steady-state saltation that can simulate aeolian erosion, transport and deposition for unvegetated mixed soils. Our model simulates the motion of saltating particles using a cellular automata algorithm. A simple set of rules is used and takes into account an erosion formula, a transport model, a wind exposition function, and an avalanching process. The model is coupled to the stratigraphic forward model Sedsim that accounts for a larger number of geological processes. The numerical model predicts a wide range of typical dune shapes, which have qualitative correspondence to real systems. The model reproduces the internal structure and composition of the resulting aeolian deposits. It shows the complex formation of dune systems with cross-bedding strata development, bounding surfaces overlaid by fine sediment and inverse grading deposits. We aim to use it to simulate the complex interactions between different sediment transport processes and their resulting geological morphologies.
机译:已经开发了许多数值模型来模拟盐分涉及的物理过程,并且最近研究了土壤植被覆盖和风沙运输之间的相互作用。这些模型通常仅限于单分散颗粒的盐化,而天然盐分会在混合土壤上发生。我们提出了稳态盐分的三维数值模型,该模型可以模拟无植被混合土壤的风蚀,输运和沉积。我们的模型使用元胞自动机算法模拟盐化颗粒的运动。使用了一组简单的规则,并考虑了侵蚀公式,运输模型,风向函数和雪崩过程。该模型与解释大量地质过程的地层正向模型Sedsim耦合。数值模型可预测各种典型的沙丘形状,这些形状与真实系统具有定性对应。该模型再现了所得风成矿床的内部结构和组成。它显示了沙丘系统的复杂形成,其层理带跨层发育,边界面覆盖有细小沉积物和逆梯度沉积物。我们旨在使用它来模拟不同沉积物输送过程及其产生的地质形态之间的复杂相互作用。

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