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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Modelling sediment dynamics due to hillslope-river interactions: Incorporating fluvial behaviour in landscape evolution model LAPSUS
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Modelling sediment dynamics due to hillslope-river interactions: Incorporating fluvial behaviour in landscape evolution model LAPSUS

机译:建模由于山坡-河流相互作用而产生的沉积物动力学:将河流行为纳入景观演化模型LAPSUS中

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摘要

Landscape evolution models (LEMs) simulate the three-dimensional development of landscapes over time. Different LEMs have different foci, e.g. erosional behaviour, river dynamics, the fluvial domain, hillslopes or a combination. LEM LAPSUS is a relatively simple cellular model operating on timescales of centuries to millennia and using annual timesteps that has had a hillslope focus. Our objective was to incorporate fluvial behaviour in LAPSUS without changing the existing model equations. The model should be able to reproduce alternating aggradation and incision in the floodplains of catchments, depending on simulated conditions. Testing was done using an artificial digital elevation model (DEM) and a demonstration of the ability for fluvial simulation was performed for a real landscape (Torrealvilla catchment, southeast Spain). Model equations to calculate sediment dynamics and water routing were similar for both hillslope and fluvial conditions, but different parameter values were used for these domains, defined based on annual discharge. Parameters changing between the domains are convergence factor p, which is used in the multiple flow algorithm to route water, and discharge and gradient exponents m and n, used in transport capacity calculations. Erodibility and 'sedimentability' factors K and P were changed between cold (little vegetation, high erodibility) and warm conditions (more vegetation, lower erodibility). Results show that the adapted parameters reproduced alternating aggradation - due to divergent flow in the floodplain and sediment supply under cold conditions - and incision due to reduced sediment supply and resulting clean water erosion during simulated warm conditions. The simulated results are due to interactions between hillslopes and floodplains, as the former provide the sediments that are deposited in the latter. Similar behaviour was demonstrated when using the real DEM. Sensitivity and resolution analysis showed that the model is sensitive to changes in m, n and p and that model behaviour is influenced by DEM resolution.
机译:景观演化模型(LEM)可模拟景观随时间的三维发展。不同的LEM具有不同的焦点,例如侵蚀行为,河流动力学,河流域,山坡或两者结合。 LEM LAPSUS是一个相对简单的蜂窝模型,其运行时间跨度为几百年到几千年,并且使用的年度时间步长都集中在山坡上。我们的目标是在不更改现有模型方程式的情况下将河流行为纳入LAPSUS。该模型应能够根据模拟条件在集水区的洪泛平原中产生交替的积聚和切口。使用人工数字高程模型(DEM)进行了测试,并针对真实景观(西班牙东南部的特雷维拉维拉流域)进行了河流模拟能力的演示。在坡度和河流条件下,用于计算沉积物动力学和水流路径的模型方程式都相似,但是在这些域中使用了不同的参数值(基于年流量)。域之间变化的参数是收敛因子p(在多流算法中用于路由水)以及流量和流量指数(用于计算流量)中的流量指数m和n。可蚀性和“沉降性”因子K和P在寒冷(植被少,易蚀性)和温暖条件(植被多,易蚀性低)之间变化。结果表明,在寒冷条件下,由于洪泛区中的水流和沉积物供应不同,适应的参数会产生交替的凝结,而在模拟的温暖条件下,由于沉积物供应的减少和清洁水的侵蚀,切口会发生变化。模拟结果是由于山坡和洪泛区之间的相互作用,因为前者提供了沉积在后者中的沉积物。使用真实的DEM时,也表现出类似的行为。敏感性和分辨率分析表明,该模型对m,n和p的变化敏感,并且模型行为受DEM分辨率影响。

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