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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Effects of rainfall, overland flow and their interactions on peatland interrill erosion processes
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Effects of rainfall, overland flow and their interactions on peatland interrill erosion processes

机译:降雨,陆地流动及其对泥炭地内腐蚀过程的影响

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Interrill erosion processes on gentle slopes are affected by mechanisms of raindrop impact, overland flow and their interaction. However, limited experimental work has been conducted to understand how important each of the mechanisms are and how they interact, in particular for peat soil. Laboratory simulation experiments were conducted on peat blocks under two slopes (2.5 degrees and 7.5 degrees) and three treatments: Rainfall, where rainfall with an intensity of 12mm h(-1) was simulated; Inflow, where upslope overland flow at a rate of 12mm h(-1) was applied; and Rainfall + Inflow which combined both Rainfall and Inflow. Overland flow, sediment loss and overland flow velocity data were collected and splash cups were used to measure the mass of sediment detached by raindrops. Raindrop impact was found to reduce overland flow by 10 to 13%, due to increased infiltration, and reduce erosion by 47% on average for both slope gradients. Raindrop impact also reduced flow velocity (80-92%) and increased roughness (72-78%). The interaction between rainfall and flow was found to significantly reduce sediment concentrations (73-85%). Slope gradient had only a minor effect on overland flow and sediment yield. Significantly higher flow velocities and sediment yields were observed under the Rainfall + Inflow treatment compared to the Rainfall treatment. On average, upslope inflow was found to increase erosion by 36%. These results indicate that overland flow and erosion processes on peat hillslopes are affected by upslope inflow. There was no significant relationship between interrill erosion and overland flow, whereas stream power had a strong relationship with erosion. These findings help improve our understanding of the importance of interrill erosion processes on peat. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:轻微斜坡上的内部侵蚀过程受到雨滴影响,陆地流动及其互动的机制的影响。然而,已经进行了有限的实验工作,以了解每个机制的重要性以及它们如何相互作用,特别是用于泥炭土壤。在两个斜坡(2.5度和7.5度)下的泥炭块上进行实验室模拟实验和三种治疗:降雨,其中模拟了12mm H(-1)强度的降雨量;施用速率为12mm H(-1)率的上升陆上流动的流入;和降雨+流入,既有降雨量和流入。收集陆地流动,沉积物损失和陆上流速数据,采用飞溅杯来测量雨滴脱落的沉积物质量。由于渗透增加,发现雨滴撞击将陆上流量减少10%至13%,平均坡度梯度平均减少47%的侵蚀。雨滴撞击也降低了流速(80-92%)和增加的粗糙度(72-78%)。发现降雨和流动之间的相互作用显着降低了沉积物浓度(73-85%)。坡梯度仅对陆地流动和沉积物产量进行了轻微影响。与降雨处理相比,在降雨+流入处理下观察到显着较高的流速和沉积物产量。平均而言,发现上坡流入增加了36%的侵蚀。这些结果表明,泥炭山坡上的陆地流动和侵蚀过程受到上坡流入的影响。 Interian侵蚀和陆上流动之间没有显着的关系,而流功率与侵蚀有很强的关系。这些发现有助于提高我们对泥炭侵蚀过程的重要性的理解。版权所有(C)2017 John Wiley&Sons,Ltd。

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