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首页> 外文期刊>Soil & Tillage Research >Assessment of tillage erosion by mouldboard plough in Tuscany (Italy).
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Assessment of tillage erosion by mouldboard plough in Tuscany (Italy).

机译:通过托斯卡纳(意大利)的模板犁对耕作侵蚀的评估。

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摘要

This study was designed to characterise the soil translocation effect induced by mouldboard ploughing with an implement traditionally used in the Tuscany region (Central Italy). We discuss the results of a set of field experiments performed to measure soil displacement along slopes of varying gradient in different directions and at several depths of tillage. Using the Soil Erosion by Tillage (SETi) model, soil translocation patterns for different tillage scenarios were analysed, with special attention paid to the effects of the direction and depth of tillage on the extent and spatial pattern of soil movement. The lateral slope gradient SP and tillage depth D were found to be the dominant controlling factors for total soil displacement. The effect of the slope gradient in a direction parallel to tillage ST was much less pronounced. These findings reveal the importance of the asymmetric nature of the soil movement produced by mouldboard ploughing and the predominant effect of the lateral displacement dP on the actual trajectory of soil motion. Results demonstrate that spatial patterns of soil redistribution due to mouldboard ploughing are highly variable and depend on the particular characteristics of the implement used. This dependence is so strong that maximum downslope soil translocation can occur during both, contour tillage or up-down tillage. For this particular mouldboard plough, maximum downslope soil transport took place at a tillage direction ca. 70 degrees and not when tillage was conducted along the steepest slope direction (0 degrees ). These findings highlight the potential of the combined approach applied. The physically based SETi model can be properly calibrated using a relatively limited dataset from field experiments. Once calibrating, the SETi model can then be used to generate synthetic tillage translocation relationships, which can predict the intensity and spatial pattern of soil translocation over a much wider range of tillage scenarios than the particular experimental conditions, in terms of topography complexity (slope gradients and morphology) and the direction and depth of tillage. These synthetic relationships are useful tools for evaluating strategies designed to reduce tillage erosion..
机译:这项研究的目的是利用托斯卡纳地区(意大利中部)传统上使用的工具来表征翻板犁造成的土壤迁移效应。我们讨论了一组野外实验的结果,这些实验用于测量沿不同方向和不同耕作深度的不同坡度的土壤位移。利用耕作土壤侵蚀(SETi)模型,分析了不同耕作情景下的土壤迁移模式,并特别注意耕作方向和深度对土壤运动程度和空间格局的影响。边坡坡度SP和耕作深度D被认为是土壤总位移的主要控制因素。平行于耕作ST的方向上的坡度梯度的影响要小得多。这些发现揭示了翻板犁产生的土壤运动的非对称性的重要性,以及侧向位移dP对土壤运动的实际轨迹的主要影响。结果表明,由于犁板耕作而引起的土壤再分配的空间格局变化很大,并且取决于所使用工具的特殊特性。这种依赖性非常强,以至于在等高耕作或上下耕作期间都可能发生最大的下坡土壤移位。对于这种特定的模板犁,最大的下坡土壤运输发生在耕作方向ca上。沿最陡的倾斜方向(0度)耕作时不是70度。这些发现凸显了组合方法的应用潜力。基于物理的SETi模型可以使用来自现场实验的相对有限的数据集进行适当校准。校准后,SETi模型可用于生成合成耕作易位关系,就地形复杂性(坡度)而言,该耕作关系可比特定的实验条件预测更广泛耕作情景下土壤易位的强度和空间格局和形态)以及耕作的方向和深度。这些综合关系是评估旨在减少耕种侵蚀的策略的有用工具。

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