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SPATIAL VARIABILITY OF SOIL RESISTANCE TO PENETRATION IN NO TILLAGE SYSTEM

机译:土壤抗性与耕作系统渗透的空间屏障

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摘要

In areas of no tillage system where there is intense traffic of machines and minimal soil mobilization, the periodic monitoring allied on localized soil compaction represent important strategies aiming agricultural sustainability. Thus, the objective of this study was to evaluate the spatial variability of soil resistance to penetration (RP) in no tillage system. Data collection took place in an experimental area of 7.65 ha using a sample grid composed of 40 points. At each point the RP was determined by three replications from which was obtained the mean RP, the maximum RP, and the depth of the maximum RP in the 0-0.40m layer. Deformed samples were randomly collected in the area to determine the water content in the soil (0). Then the RP data were analyzed using descriptive and geostatistical statistics techniques for spatial variability maps. The RP presents spatial variability detected by means of spherical semivariogram in all soil layers. There was spatial variability in the area with the appearance of intermediate values for RP (2.003.00 MPa) due to no ploughing and continuous traffic of agricultural machines. There were greater reaches and critical levels of compaction on the layers 0.10-0.20 and 0.200.30 m where there is predominance of the maximum RP.
机译:在机器交通繁忙、土壤动员极少的免耕系统地区,对局部土壤压实情况的定期监测是旨在实现农业可持续性的重要战略。因此,本研究的目的是评估免耕系统中土壤抗渗透性(RP)的空间变异性。数据收集在7.65公顷的实验区进行,使用由40个点组成的样本网格。在每个点上,RP由三个重复确定,从中获得0-0.40m层中的平均RP,最大RP和最大RP的深度。在该区域随机收集变形样品以确定土壤中的含水量 (0)。然后,使用描述性和地统计技术对空间变异性地图的RP数据进行分析。RP呈现了通过球形半变异函数在所有土壤层中检测到的空间变异性。由于没有犁地和农业机械的持续运输,该地区存在空间变化,出现了RP的中间值(2.003.00 MPa)。在0.10-0.20和0.200.30 m层上,最大RP占主导地位,压实范围更大,压实程度也更高。

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