首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Modeling of Hillslope Runoff and Soil Erosion at Rainfall Events Using Cellular Automata Approach
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Modeling of Hillslope Runoff and Soil Erosion at Rainfall Events Using Cellular Automata Approach

机译:基于元胞自动机的降雨事件山坡径流与土壤侵蚀模型

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摘要

A novel quantitative cellular automata (CA) model that simulates and predicts hillslope runoff and soil erosion caused by rainfall events was developed by integrating the local interaction rules and the hillslope surface hydraulic processes. In this CA model, the hillslope surface was subdivided into a series of discrete spatial cells with the same geometric features. At each time step, water and sediment were transported between two adjacent spatial cells. The flow direction was determined by a combination of water surface slope and stochastic assignment. The amounts of interchanged water and sediment were computed using the Chezy-Manning formula and the empirical sediment transport equation. The water and sediment discharged from the open boundary cells were considered as the runoff and the sediment yields over the entire hillslope surface. Two hillslope soil erosion experiments under simulated rainfall events were carried out. Cumulative runoff and sediment yields were measured, respectively. Then, the CA model was applied to simulate the water and soil erosion for these two experiments. Analysis of simulation results indicated that the size of the spatial cell, hydraulic parameters, and the setting of time step and iteration times had a large impact on the model accuracy. The comparison of the simulated and measured data suggested that the CA model was an applicable alternate for simulating the hillslope water flow and soil erosion.
机译:通过结合局部相互作用规律和山坡地表水力过程,建立了一种新型的定量细胞自动机(CA)模型,模拟并预测了降雨引起的山坡地表径流和土壤侵蚀。在此CA模型中,将坡面细分为一系列具有相同几何特征的离散空间单元。在每个时间步长,水和沉积物都在两个相邻的空间单元之间传输。流动方向由水面坡度和随机分配共同决定。使用Chezy-Manning公式和经验性沉积物迁移方程计算水和沉积物的交换量。从开放边界单元排出的水和沉积物被认为是径流,并且整个山坡表面的沉积物产量。在模拟降雨事件下进行了两次山坡水土流失试验。分别测量了累积径流量和沉积物产量。然后,将CA模型应用于这两个实验的水土流失模拟。对仿真结果的分析表明,空间单元的大小,水力参数以及时间步长和迭代时间的设置对模型精度有很大影响。模拟和实测数据的比较表明,CA模型是模拟山坡水流和土壤侵蚀的适用替代方法。

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