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Scale effect in USLE and WEPP application for soil erosion computation from three Sicilian basins

机译:USLE和WEPP在三个西西里盆地的土壤侵蚀计算中的尺度效应

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Accurate estimation of soil erosion due to water is very important in several environmental contexts, such as the assessment of potential soil loss from cultivated lands and the evaluation of the loss of water storage capacity in reservoirs due to sediment deposition. Several studies have been carried out to build models suitable to quantify the results of erosion processes. These models, calibrated from experimental studies on plots or fields, have been applied at quite different scales. The aim of this paper was to present the results of the application of two soil erosion models, both spatially distributed, to three large Sicilian basins upstream of reservoirs. Each basin was subdivided into hillslopes, using three different classes of average area, in order to estimate the scale effect on the sediment yield evaluation. The first model was the empirical Universal Soil Loss Equation (USLE), and the other one was the physically based model of the Water Erosion Prediction Project (WEPP). A Geographical Information System was used as a tool to handle and manage data for application of the models. Computed sediment yields were compared with each other and with measurements of deposited sediment in the reservoir, and for these cases the WEPP estimates better approximated the measured volumes than did the USLE. Neither model appeared to be particularly sensitive to the size area of the hillslopes, at least within the range of values considered. This suggests that a finer subdivision, although it may better define the experimental conditions (plot or field areas) for calibration of models, may not result in a better estimate of erosion. (C) 2004 Elsevier B.V. All rights reserved.
机译:在几种环境中,准确估算因水引起的土壤侵蚀非常重要,例如评估耕地可能造成的土壤流失以及评估由于沉积物沉积而导致的水库储水能力丧失。已经进行了一些研究来建立适合于量化腐蚀过程结果的模型。这些模型是通过对地块或田野进行实验研究而得到校准的,已在相当不同的比例下应用。本文的目的是介绍将两个空间分布的土壤侵蚀模型应用于水库上游的三个大型西西里盆地的结果。为了估计规模对沉积物产量评估的规模效应,使用三个不同类别的平均面积将每个盆地细分为山坡。第一个模型是经验性的通用土壤流失方程(USLE),另一个模型是水蚀预测项目(WEPP)的基于物理的模型。地理信息系统被用作处理和管理模型应用数据的工具。将计算出的沉积物产量相互比较,并与储层中沉积的沉积物测量结果进行比较,对于这些情况,WEPP估计比USLE更好地估计了测量体积。至少在所考虑的值范围内,这两个模型似乎都不对山坡的大小区域特别敏感。这表明,尽管细分可能会更好地定义模型校准的实验条件(曲线图或野外区域),但细分可能无法更好地估计侵蚀。 (C)2004 Elsevier B.V.保留所有权利。

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