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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Rainfall intensity and slope gradient effects on sediment losses and splash from a saline-sodic soil under coastal reclamation
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Rainfall intensity and slope gradient effects on sediment losses and splash from a saline-sodic soil under coastal reclamation

机译:沿海复垦中降雨强度和坡度梯度对盐碱土壤泥沙流失的影响

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Rainfall intensity and slope gradient play important roles in soil erosion processes. This study was conducted to investigate the effects of rainfall intensity and slope gradient, as well as of their interactions, on splash and overland flow transport on saline-sodic soil slopes. Rainfall intensities of 85, 95,110 and 125 mm h(-1) were applied to slope gradients of 6 degrees, 11 degrees, 22 degrees and 35 degrees. Splash was partitioned into four directional components. Runoff, sediment and splash samples were collected throughout the rainstorms and infiltration was calculated. The final infiltrations under the lower rainfall intensities of 85 mm h(-1) were the largest for every slope gradient, but they decreased by 39.3% as the slope gradient increased from 6 degrees to 35 degrees. However, the final infiltration rates exhibited an increasing-decreasing trend for rainfall intensities higher than 85 mm h(-1) as the slope gradient increased. The critical slope gradient was about 11 degrees. The influence of rainfall intensity on runoff was considerably reduced at the higher slope gradients due to increased infiltration. The influence of slope gradient on sediment loss was reduced as rainfall intensity increased, while the effect of rainfall intensity on sediment losses was greater on the gentler slopes than on the steeper slopes. The upslope splash (mean value) initially increased from 4.8 to 7.2 g m(-1) h(-1) before it decreased to 3 g m(-1) h(-1) as the slope gradient increased. The maximum measured value occurred when the slope gradient was 22 degrees. Total splash increased to maximum levels as the slope gradient increased to 11 degrees, but decreased with further increases in gradient. These results indicated that the effects of slope gradient and rainfall intensity on sediment losses, runoff and splash were interconnected. (C) 2015 Elsevier B.V. All rights reserved.
机译:降雨强度和坡度在土壤侵蚀过程中起着重要作用。进行这项研究是为了调查降雨强度和坡度梯度及其相互作用对盐碱土壤坡面飞溅和陆上水流传输的影响。降雨强度分别为85、95,110和125 mm h(-1),应用于6度,11度,22度和35度的坡度。飞溅被分为四个方向组件。在整个暴雨期间收集了径流,沉积物和飞溅样品,并计算了入渗量。在每个降雨坡度为85 mm h(-1)的较低降雨强度下,最终入渗量最大,但随着坡度从6度增加到35度,最终入渗量减少了39.3%。然而,随着坡度的增加,降雨强度高于85 mm h(-1)时,最终入渗率呈现出增加-减少的趋势。临界斜率梯度约为11度。由于增加了入渗,降雨强度对径流的影响在较高的坡度上大大降低了。坡度对沉积物流失的影响随着降雨强度的增加而减小,而坡度对平缓坡度的影响大于对陡坡的影响。上坡飞溅(平均值)最初从4.8增加到7.2 g m(-1)h(-1),然后随着坡度增加而减小到3 g m(-1)h(-1)。当斜率梯度为22度时,出现最大测量值。当斜率梯度增加到11度时,总飞溅量增加到最大水平,但随着梯度的进一步增加而减小。这些结果表明,坡度和降雨强度对泥沙流失,径流和飞溅的影响是相互联系的。 (C)2015 Elsevier B.V.保留所有权利。

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