基于表观电导率映射的土壤压实特性

E. L. Bottega, Eder Luís Sari, Z. B. Oliveira, A. Knies
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引用次数: 0

摘要

基于土壤渗透阻力(PR)的测量,可以确定压实的土层,在那里根系生长可能受到损害,影响作物发育和产量。这项工作的目的是分析管理区(MZ)的使用,该管理区是在绘制土壤表观电导率(ECa)的空间变异图的基础上划定的,用于区分土壤压实水平。这项工作是在一个25.8公顷的免耕区进行的,该区在一个中心枢轴下种植。使用Terram®设备在两种土壤湿度条件下(13.7%和16.45%)测量ECa。使用SoloStar PLG5500贯入仪测量土壤渗透阻力(PR)。基于空间变异性ECa映射,划定了管理区域(2、3和4个区域)。平均PR值??通过平均值的t检验对每个MZ进行比较。可以区分平均值??渗透阻力(PR),从0.9到2.10MPa不等,来自基于ECa空间变异性产生的管理类别的特征。PR值的最高分层??当土壤含水量较低(13.7%)时,作为针对划定管理区的采样的函数获得。最高的平均PR值??获得用于将ECa图划分为至少三个类别的。研究发现,研究区域无需进行任何机械反作用操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the soil compaction based on the mapping of the apparent electrical conductivity
Based on the measurement of soil penetration resistance (PR), it is possible to identify compacted soil layers, where root growth may be harmed, affecting crop development and yield. The objective of this work was to analyze the use of management zones (MZ), delimited on the basis of mapping of the spatial variability of the soil apparent electrical conductivity (ECa), in the differentiation of soil compaction levels. The work was carried out in a 25.8-ha no-tillage area, cultivated under a center pivot. The ECa was measured under two soil moisture conditions (13.7 and 16.45%), using the Terram® equipment. Soil penetration resistance (PR) was measured using the SoloStar PLG5500 penetrograph. Based on the spatial variability ECa mapping, management zones (2, 3, and 4 zones) were delimited. The mean PR values ??of each MZ were compared by the t-test of means. It was possible to differentiate mean values ??of penetration resistance (PR), which vary from 0.9 to 2.10 MPa, from the characterization of management classes generated on the basis of the ECa spatial variability. The highest stratification of PR values ??was obtained as a function of sampling directed at delimited management zones when the soil had lower moisture content (13.7%). The highest mean PR values ??were obtained for the split of the ECa map into at least three classes. It was identified that for the study area there is no need to perform any mechanical decompaction operation.
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