Andréa Cristina Thoma, D. Tassinari, B. Prat, Lauana Lopes dos Santos, Bárbara Pereira Christofaro Silva, A. C. Silva
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引用次数: 0
摘要
已经开发了几种设备来评估水侵蚀造成的土壤损失。然而,他们很少评估雨滴冲击和地表径流以及不同斜坡上植被覆盖的综合影响。本研究旨在设计和验证实验室规模的设备,以评估有植物覆盖和没有植物覆盖的原状土壤样品的水侵蚀影响,并评估模拟降雨的动能和不同径流强度下产生的剪应力。该设备由一个降雨模拟器、一个可调节的不同坡度和下降高度的支架和一个径流坡道组成,用于测试15 x 20 x 40 cm(高、宽、长)的未受干扰的土壤样品。在本研究中,该设备模拟和评估了降水和径流对土壤流失的影响,从而获得了降水和径流的不同动能值。当流量为12 L min-1,坡度为35%时,剪切应力可达8 Pa。此外,该设备还显示了植被覆盖和坡度对不同粒度(< 0.106 mm, 0.106至0.25 mm, 0.25至0.5 mm, 0.5至1.0 mm, 1.0至2.0 mm和> 2.0 mm)土壤流失的影响,揭示了其在实验室规模的几种侵蚀研究中的应用潜力。
Modified inderbitzen equipment for simulation of water erosion in undeformed soil samples
Several devices have been developed to assess soil losses by water erosion. However, they rarely assess the combined effects of raindrop impact and surface runoff together with vegetation cover on varying slopes. This study aimed to design and validate an equipment, on laboratory scale, to evaluate the effect of water erosion on undisturbed soil samples with and without plant cover, as well as to assess the kinetic energy of simulated rain and the resultant shear stress at varying runoff intensities. The equipment is composed of a rainfall simulator, an adjustable stand for different slopes and falling heights, and a runoff ramp for testing undisturbed soil samples measuring 15 x 20 x 40 cm (height, width, and length). In this study, the equipment simulated and evaluated the effect of precipitation and runoff on soil losses, allowing to obtain different values of the kinetic energy of precipitation and runoff. For a f low rate of 12 L min-1 and slope of 35%, the shear stress could reach up to 8 Pa. Furthermore, the equipment showed the effect of vegetation cover and slope on soil losses in different granulometric fractions (< 0.106 mm, 0.106 to 0.25 mm, 0.25 to 0.5 mm, 0.5 to 1.0 mm, 1.0 to 2.0 mm, and > 2.0 mm), revealing the potential of its use in several erosion studies on a laboratory scale.