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Prioritizing the Effective Factors on Surface Erosion Using USLE-M Integrated Model and System Dynamic (A Case Study: Sanganeh Research Center, Khorasan Razavi)

机译:使用USLE-M集成模型和系统动力学来优先确定表面侵蚀的有效因素(案例研究:霍加桑·拉扎维(Shoranan Razavi)Sanganeh研究中心)

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This research was aimed to simulate and prioritize the effective factors on water erosion using USLE-M in the system dynamic model. In this integrated model, by using the system dynamic simulation software (Vensim), all variables and factors involved in erosion and soil loss were considered according to the USLE-M model. After model implementation, the estimated values and observations were compared and then sensitivity analysis was done to determine the sensitive parameters. Then, calibration was performed on the sensitive parameters. This study found that that the results of the model were acceptable for soil erosion simulation due to considering all the effective factors in soil erosion. The results of the sensitivity analysis also indicated high model sensitivity to the slope and vegetation cover in high and low slopes, respectively. By investigating the changes in various parameters such as vegetation cover and slope on erosion, the optimal vegetation cover with 67 and 40% slope, was estimated to be 20 and 60%, respectively.
机译:这项研究的目的是在系统动力学模型中使用USLE-M模拟和优先考虑水蚀的影响因素。在此集成模型中,通过使用系统动态仿真软件(Vensim),根据USLE-M模型考虑了侵蚀和土壤流失的所有变量和因素。模型实施后,将估计值和观测值进行比较,然后进行敏感性分析以确定敏感参数。然后,对敏感参数进行校准。这项研究发现,考虑到所有影响土壤侵蚀的有效因素,该模型的结果对于土壤侵蚀模拟是可以接受的。敏感性分析的结果还表明,模型对高和低坡度的坡度和植被覆盖度分别具有较高的敏感性。通过调查各种参数(如植被覆盖和坡度对侵蚀的影响)的变化,最佳植被覆盖率分别为67%和40%,估计分别为20%和60%。

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