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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Modeling soil loss at plot scale with EUROSEM and RUSLE2 at stony soils of Khamesan watershed, Iran
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Modeling soil loss at plot scale with EUROSEM and RUSLE2 at stony soils of Khamesan watershed, Iran

机译:伊朗考兰水石石土的欧欧姆与欧元群土壤造型土壤损失

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摘要

The present study was carried out to evaluate the EUROSEM and RUSLE2 models for predicting soil loss on stony steep lands in Khamesan watershed using single event data obtained from natural rainfall. For this purpose, eighteen plots of 24 m long by 1.8 m wide were used to measure runoff and soil loss on six rangeland hillslopes (3 replicates) over three years. Twenty-four rainfall events occurred during the study period. The input data were continuously monitored for both models including rainfall, surface runoff, soil loss and soil properties. Sensitivity analysis and calibration results showed that saturated hydraulic conductivity had a large effect on EUROSEM simulation results, especially on runoff estimation. Validation of EUROSEM model showed that this model is applicable for predicting both runoff and soil loss for studied hillslopes (R-2 = 0.7, R-2 = 0.85, respectively). Efficiency tests indicated that the EUROSEM model outputs were affected by rock fragment cover in the study area. RUSLE2 model was able to predict soil loss in individual storms somewhat well (R-2 = 0.53), but under the higher Ea) index, the over or under-prediction was higher. Including direct consideration of runoff in the event rainfall runoff factor (average annual Kum associated with the Q(R)EI(30) index) increased RUSLE2 efficiency in estimating event soil loss (R-2 = 0.69). Calibration of the K-factor in RUSLE2 led to considerable improvement of model efficiency (R-2 = 0.82). Comparison of the two models showed that EUROSEM revealed better model efficiency in estimation of event soil loss than calibrated RUSLE2, although in some hillslopes, performance of calibrated RUSLE2 model was more than EUROSEM model. With respect to spatially non-uniform canopy cover and ground cover as well as the stoniness of soils and direct and indirect impacts of surface and subsurface rock fragments on runoff and sediment yield, also existence of lime at low to high levels in the study area, more research is needed to examine the effect of these parameters on input and output of the models, especially for the RUSLE2. In addition to characteristics of studied hillslopes, it seems that storm pattern had a significant effect on estimations of two models. The results showed that effects of intra-storm variations in rainfall intensity on runoff and soil loss production have not been sufficiently considered in equations of two models, especially RUSLE2 model. (C) 2016 Elsevier B.V. All rights reserved.
机译:本研究进行了评估欧元纪和Rusle2模型,用于使用从自然降雨中获得的单一事件数据来预测Khamesan流域的石块陡峭土地的土壤损失。为此目的,使用了24米长的18个宽度,宽度为1.8米宽,以衡量六年距离六岭山坡(3次重复)的径流和土壤损失。学习期间发生了二十四场降雨事件。对于包括降雨,表面径流,土壤流失和土壤性质的两种型号,连续监测输入数据。敏感性分析和校准结果表明,饱和液压导电性对欧元纪模拟结果具有很大影响,特别是在径流估计上。欧元纪模型的验证表明,该模型适用于预测研究的山坡(R-2 = 0.7,R-2 = 0.85)的径流和土壤损失。效率测试表明,欧元纪模型输出受研究区岩石碎片覆盖的影响。 Rusle2模型能够在稍微良好(R-2 = 0.53),但在较高的EA)指数下,在稍微很好(R-2 = 0.53)中预测土壤损失,过度或欠预测更高。包括直接审议日期降雨径流因子中的径流(与Q(R)EI(30)指数相关的平均年度KUM),估计事件土壤损失(R-2 = 0.69)增加Rusle2效率。 Rusle2中K因子的校准导致模型效率的显着提高(R-2 = 0.82)。两种模型的比较显示,欧元纪透露了估计事件土壤损失的更好的模型效率,而不是校准的Rusle2,尽管在一些山坡上,校准的Rusle2模型的性能超过Eurosem模型。关于空间不均匀的冠层覆盖和地面覆盖以及土壤的储土和表面和地下岩石碎片对径流和沉积物产量的直接和间接影响,也存在于研究区低至高水平的石灰,需要更多的研究来检查这些参数对模型的输入和输出的影响,特别是对于Rusle2。除了研究山坡的特点外,风暴模式似乎对两种模型的估计产生了显着影响。结果表明,在两种模型的方程中,尤其是Rusle2模型的方程,在径流和土壤损失生产上的风暴血液变化对径流和土壤损失产生的影响没有得到充分考虑。 (c)2016年Elsevier B.v.保留所有权利。

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