基于元胞自动机的黄土坡面细沟侵蚀模型研究
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Study on loess hillslopes rill erosion model based on cellular automata
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    摘要:

    细沟侵蚀作为坡面侵蚀的主要形式,是坡面水蚀物理过程的重要组成部分。由于细沟侵蚀过程具有动态性、随机性和时空变异性三大非线性动力学特征,因此,对细沟侵蚀发育及演化过程进行模拟和预测是十分困难的。现有的大多数侵蚀产沙模型也只注重一般的土壤侵蚀预报目的,而缺乏模拟细沟形态演化时空动态过程的能力。结合土壤侵蚀学和水力学知识,将元胞自动机的理论和方法引入到坡面细沟侵蚀过程模拟中,建立了基于CA的黄土坡面细沟侵蚀模型;利用三维激光扫描仪支持下的人工模拟降雨实验和CA模型模拟来对比分析坡面细沟发育过程。研究表明:CA模型能够有效地模拟次降雨作用下黄土坡面细沟的形成、发展及演化过程,并实现坡面径流与侵蚀的定量计算,从而证明模型设计的合理性。

    Abstract:

    Rill erosion is the main form of water erosion, and is an important link on the transition from sheet erosion to gully erosion, and is an important component of water erosion physical process on hillslope. As the rill erosion process with dynamic, random and temporal variation of the three major characteristics of nonlinear dynamics, therefore, traditional erosion model is difficult to accurately dynamic simulate and reproduce rill initiation and development process on slope. Most of the existing erosion and sediment yield models focus only on the general purpose of soil erosion prediction, while the lack of space-time simulation of dynamic rill morphology evolution processes. Combination of soil erosion and hydraulics knowledge, the cellular automata theory and methods into the process simulation of rill erosion, the establishment of a loess slope CA model rill erosion, rill slope during the development of a numerical simulation, and simulation results and experimental results are compared and analyzed, the model simulation results and experimental rill produce similar patterns, to verify reasonableness of the model design; In addition, by comparing the parameters of the rill erosion model to simulate the error analysis.

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原立峰,吴淑芳,刘星飞,张青峰,霍云云.基于元胞自动机的黄土坡面细沟侵蚀模型研究[J].土壤学报,2012,49(5):1043-1049. DOI:10.11766/trxb201111080429 Yuan Lifeng, Wu Shufang, Liu Xingfei, Zhang Qingfeng, Huo Yunyun. Study on loess hillslopes rill erosion model based on cellular automata[J]. Acta Pedologica Sinica,2012,49(5):1043-1049.

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  • 收稿日期:2011-11-08
  • 最后修改日期:2012-05-06
  • 录用日期:2012-06-07
  • 在线发布日期: 2012-07-02
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