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首页> 外文期刊>Soil & Tillage Research >Influence of ridge height, row grade, and field slope on soil erosion in contour ridging systems under seepage conditions
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Influence of ridge height, row grade, and field slope on soil erosion in contour ridging systems under seepage conditions

机译:渗流条件下等高线垄系统中垄高,行坡和田间坡度对土壤侵蚀的影响

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Seepage in contour ridge systems is a common phenomenon that can exacerbate soil erosion, however, the characteristics of soil erosion under seepage conditions in contour ridge systems are not clear. The objective of this study was to analyze the soil erosion process under seepage conditions and quantify the effects and interactions between the ridge height, row grade, and field slope on runoff and sediment yield. Twenty-three treatments for these three factors were arranged by an orthogonal rotatable central composite design. A new type of experimental plot for simultaneously changing the row grade and field slope and creating seepage conditions was used to imitate the microtopographic relief of contour ridge systems. In each run, seepage samples from the row sideslope were collected every 2 min for 60 min, and then artificial rainfall simulation was performed for 30 min during which runoff samples were collected every 1 min. The results showed that four soil erosion sub-processes were observed, including interrill erosion, headward erosion, contour failure, and rill erosion. Second-order polynomial regression models predicted the sediment yield (R-2 = 0.74) better than the runoff (R-2 = 0.56). Interactions between these factors did not significantly affect the runoff or sediment yield even at p 0.1. The row grade and field slope exerted a greater effect on the sediment yield than on the runoff, whereas the ridge height influenced the runoff more with an increasing positive effect. The effect of these three factors on sediment yield revealed a convex curve with an increasing factor value. The field slope exhibited a greater increasing effect before the maximum sediment yield occurred and a greater decreasing effect after that than the other two factors did. The maximum runoff and sediment yield occurred at similar row grades (7.5 degrees and 7.1 degrees, respectively) and field slopes (10.9 degrees and 10.8 degrees, respectively). However, the minimum runoff occurred at a ridge height of 6.7 cm, and the maximum sediment yield at a ridge height of 12 cm. The findings have important implications for assessing and modeling soil erosion in contour ridge systems. (C) 2014 Elsevier B.V. All rights reserved.
机译:等高线脊系统中的渗水是一种可以加剧土壤侵蚀的常见现象,但是,等高线脊系统中渗流条件下的土壤侵蚀特征尚不清楚。这项研究的目的是分析渗流条件下的土壤侵蚀过程,并量化脊高,行坡度和田间坡度对径流和沉积物产量的影响和相互作用。通过正交可旋转的中央复合材料设计,对这三个因素进行了23种处理。一种用于同时更改行坡度和场坡度并创建渗流条件的新型实验图,用于模拟等高线脊线系统的微地形起伏。在每次运行中,每2分钟收集一次行边坡的渗流样本,持续60分钟,然后进行30分钟的人工降雨模拟,其间每1分钟收集一次径流样本。结果表明,观察到了四个土壤侵蚀子过程,包括层间侵蚀,前向侵蚀,轮廓破坏和小溪侵蚀。二阶多项式回归模型预测的泥沙产量(R-2 = 0.74)优于径流(R-2 = 0.56)。即使在p <0.1时,这些因素之间的相互作用也不会显着影响径流或泥沙产量。行坡度和田间坡度对产沙量的影响大于对径流的影响,而垄高对径流的影响更大,并具有更大的正效应。这三个因素对沉积物产量的影响显示出凸曲线,其因子值增加。与其他两个因素相比,在最大泥沙产量出现之前,场斜率表现出更大的增加作用,而在此之后,表现出更大的减少作用。最大径流和沉积物产量发生在相似的行坡度(分别为7.5度和7.1度)和田间坡度(分别为10.9度和10.8度)处。但是,最小径流发生在6.7 cm的脊高处,最大的沉积物产量发生在12 cm的脊高处。这些发现对轮廓脊系统中土壤侵蚀的评估和建模具有重要意义。 (C)2014 Elsevier B.V.保留所有权利。

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