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Soil Compaction Due to Tractor Traffic

机译:拖拉机交通造成的土壤压实

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摘要

Horticulture in Mediterranean areas demand frequent tractor traffic for tillage and for the application of herbicides and pesticides, resulting in soil compaction. Soil compaction is one of the most important factors responsible for soil physical degradation. This compaction by agricultural machines can have adverse effects on crop production and the environment. Different methods have been proposed to estimate soil compaction intensity as a function of vehicle and soil properties such as the soil’s water content, bulk density, and resistance to penetration. In this work the authors studied subsoil compaction based on wheel load in the terrain tillage and tillage in a region that was not previously cultivated. A small tractor (engine power 25 kW, type E-TCVS, and weight 1200 kg) was used in the tests. Results showed that the first passage of wheel traffic of the tractor, increases the soil resistance more than the second passage; for example, there is a big difference between the penetration resistance at initial state (2.22 daN/cm2) and after the first passage (5.72 daN/cm2), while the variation between the penetration resistance after first passage (5.72 daN/cm2) and after second passage (6.22 daN/cm2) is relatively small. This shows that the first passage has the most significant impact on soil compaction.
机译:地中海地区的园艺需要频繁的拖拉机运输进行耕作以及除草剂和农药的施用,从而导致土壤压实。土壤压实是造成土壤物理退化的最重要因素之一。农业机械的这种压实会对作物生产和环境产生不利影响。已经提出了不同的方法来估计土壤压实强度与媒介物和土壤特性(例如土壤的水分,堆积密度和抗渗透性)的关系。在这项工作中,作者根据地形耕作和以前未耕作过的耕作的轮荷载研究了地下土壤的压实。测试中使用了小型拖拉机(发动机功率25 kW,E-TCVS型,重量1200 kg)。结果表明,拖拉机轮流的第一个通道比第二个通道增加了土壤阻力。例如,初始状态下的穿透阻力(2.22 daN / cm2 )和第一次通过后的穿透阻力(5.72 daN / cm2 )之间存在很大差异,而第一次穿透后的穿透阻力之间的差异通过(5.72 daN / cm2 )和第二次通过(6.22 daN / cm2 )相对较小。这表明第一段通道对土壤压实影响最大。

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