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Experimental study of the impact of rainfall characteristics on runoff generation and soil erosion

机译:降雨特征对径流产生和土壤侵蚀影响的试验研究

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The impact of rainfall characteristics on runoff generation and soil erosion are not fully understood despite their importance. In this study, a series of laboratory experiments, systematically considering different rainfall intensities, durations, moving directions, rainfall positions, and no-rainfall intervals, were conducted to investigate the impacts of rainfall characteristics on runoff generation and soil erosion. Significant differences, including hydrograph, sediment graph, soil water content, and infiltration depth (depth of wetting front), were observed. The following conclusions are drawn for the studied rainfall characteristics and soil from this study: (1) when compared with moving upstream rainfall scenarios (MURSs), moving downstream rainfall scenarios (MDRSs) can generally be characterized by hydrographs with a later rise and higher runoff peak for most of the rainfall events; (2) surface sealing changes the infiltration pattern so that MURS generally produce more total runoff than MDRS, and for some rainfall events MDRS generate lower runoff peak than MURS, which is different from what has been widely reported; (3) with the increase in the runoff peak, the erosion peak increases first and then decreases, indicating a switch from transport-limited erosion to detachment-limited erosion; (4) the increase ratio of underground water content for MURS is lower than MDRS; (5) rainfall duration is an important factor in soil crack occurrence. Not only does this study expand the understanding of hydrologic response and erosion, it also provides an important database for the hydrology community.
机译:尽管降雨特性很重要,但仍未完全了解降雨特性对径流生成和土壤侵蚀的影响。在这项研究中,进行了一系列实验室实验,系统地考虑了不同的降雨强度,持续时间,运动方向,降雨位置和无降雨间隔,以研究降雨特征对径流产生和土壤侵蚀的影响。观察到显着差异,包括水文图,泥沙图,土壤含水量和入渗深度(湿润前沿深度)。对于该研究中所研究的降雨特征和土壤,得出以下结论:(1)与上游移动的降雨情景(MURSs)相比,下游移动的降雨情景(MDRSs)通常可以通过水位图来表征,其上升趋势和径流量较高。大多数降雨事件达到峰值; (2)表面封闭改变了入渗模式,因此MURS通常产生的总径流比MDRS多,并且在某些降雨事件中,MDRS产生的径流峰值比MURS低,这与广泛报道的有所不同; (3)随着径流峰值的增加,侵蚀峰值先增大然后减小,表明从输运限制的侵蚀向脱离限制的侵蚀转变; (4)MURS的地下水含量增加率低于MDRS; (5)降雨持续时间是影响土壤裂缝发生的重要因素。这项研究不仅扩大了对水文响应和侵蚀的理解,还为水文界提供了重要的数据库。

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