首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effects of vegetation cover and road-concentrated flow on hillslope erosion in rainfall and scouring simulation tests in the Three Gorges Reservoir Area, China
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Effects of vegetation cover and road-concentrated flow on hillslope erosion in rainfall and scouring simulation tests in the Three Gorges Reservoir Area, China

机译:三峡库区降雨和冲刷模拟试验中植被覆盖和公路集中流量对山坡侵蚀的影响。

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Roads play a significant role in altering hydrological processes. Roads cause more erosion to be generated from the hillslope for both road-concentrated flow and rainfall. In this study, six treatments (Natural Restoration, Grass, Grass & Shrub, Sodded Strip, Grass & Farmland, and Farmland) were used to recolonize hillslope plants on a newly built unpaved road. Rainfall simulation (rainfall intensity of 90 mm h(-1) and 120 mm h(-1)) and scouring simulation (scouring flow rate 15 L min(-1) and 20 L min(-1)) tests were conducted to identify the effects of plants on soil erosion. In the rainfall simulation test, Grass & Shrub was more effective at reducing hillslope erosion than the other treatments, and Grass & Shrub also had a lower runoff coefficient, soil detachment rate, and higher efficiency in trapping runoff and sediment. The hydrological responses of all of the tested plots in the scouring test were much faster than in the rainfall simulation, as indicated by the lower lag time to runoff generation. The hillslope erosion in the scouring test was significantly higher than in the rainfall simulation. The water-stable aggregate, saturated hydraulic conductivity, vegetation cover, root length density, and root weight density were important factors that conditioned the runoff generation and sediment yield from the hillslope in both experimental tests. In the scouring test, in infiltration improvement and flow erosivity reduction, Grass was more effective at trapping runoff and sediment because of its dense well-developed system of fine roots. Therefore, except for an immediate surface cover, in the areas where the hillslope has a risk of road-concentrated flow scouring, the enhancement of topsoil roughness was also very important in weakening the impact of road-concentrated flow on the hillslope. (C) 2015 Elsevier B.V. All rights reserved.
机译:道路在改变水文过程中起着重要作用。对于公路集中的流量和降雨,道路会导致山坡产生更多的侵蚀。在这项研究中,使用了六种处理方法(自然恢复,草皮,草皮和灌木,湿地带,草皮和农田和农田)来重新定殖在新建的未铺砌道路上的山坡植物。进行了降雨模拟(降雨强度为90 mm h(-1)和120 mm h(-1))和冲刷模拟(冲刷流速为15 L min(-1)和20 L min(-1))测试以识别植物对土壤侵蚀的影响。在降雨模拟测试中,“草与灌木”在减少山坡侵蚀方面比其他方法更有效,“草与灌木”的径流系数,土壤脱离率也较低,并且截留径流和沉积物的效率更高。冲刷试验中所有试验样地的水文响应都比降雨模拟中的要快得多,这表明径流产生的滞后时间较短。冲刷试验中的山坡侵蚀明显高于降雨模拟中的侵蚀。在两个试验中,水稳定的骨料,饱和的水力传导率,植被覆盖度,根长密度和根重密度是调节山坡径流产生和沉积物产量的重要因素。在冲刷试验中,草的渗透力得到改善,流动侵蚀力降低,草由于其密集而发达的细根系统而更有效地捕获径流和沉积物。因此,除了立即进行地表覆盖外,在山坡有可能集中道路冲刷的风险的地区,增加表土粗糙度对于减弱公路集中流动对山坡的影响也非常重要。 (C)2015 Elsevier B.V.保留所有权利。

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