Impact of Machinery Passages on Soil Compaction in Field Conditions

IF 1.3 Q2 AGRICULTURE, MULTIDISCIPLINARY Acta Technologica Agriculturae Pub Date : 2024-06-01 DOI:10.2478/ata-2024-0016
Marek Mojžiš, J. Jobbágy, Vladimír Rataj, J. Zsembeli
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Abstract

Abstract The present study compares the consequences of soil compaction due to machinery in a selected 13.7 ha plot at Hronské Kosihy (Slovak Republic). The crop was winter wheat, while the changes of selected soil properties (penetration resistance and gravimetric soil water content) were monitored. The experimental plot was divided into 11 zones with different initial status of compaction: one of them was the reference zone without compaction (P1), five zones were out of the track line, four were directly in the track lines, and one was a collection route. The number of passages in each zone was from 0 up to more than 15. The impact of the number of machinery passages on gravimetric soil water content was found significant both in and out of the track lines with an average value of 17.37%. The monitoring of the passage number showed to be important also in the monitoring of soil penetration resistance (P <0.05). The average value of penetration resistance in the P1 zone was 2.33 MPa. The dependence of soil compaction on passages (P <0.05) was identified by the assessment and comparison of individual impacts of passages in the track zones (P3, P4, P6, and P7). A similar scenario was found also in case of the dependence of soil compaction on the passages monitored off the track lines (P2, P5). Also, the change of tire pressure was statistically significant, its decrease from 0.19 to 0.15 MPa showed to be beneficial. The highest compaction was monitored in the passages in P11 with an average value of 5.36 MPa, representing 2.3 times higher values than the reference one. The creation of a collection line enables reducing the compaction of the entire plot. The collection line should cover only a very small part of the plot.
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机械通道对实地土壤压实的影响
摘要 本研究比较了在 Hronské Kosihy(斯洛伐克共和国)选定的 13.7 公顷地块中机械造成的土壤压实后果。作物为冬小麦,同时监测了选定土壤特性(渗透阻力和土壤重力含水量)的变化。实验地块被划分为 11 个不同压实初始状态的区域:其中一个为无压实参考区域(P1),五个区域位于轨道线外,四个区域直接位于轨道线内,一个区域为收集路线。每个区域的通过次数从 0 到超过 15 次不等。无论是在轨道线内还是轨道线外,机械通过次数对土壤重力含水量的影响都很大,平均值为 17.37%。通过次数的监测对土壤渗透阻力的监测也很重要(P <0.05)。P1 区的渗透阻力平均值为 2.33 兆帕。通过评估和比较轨道区(P3、P4、P6 和 P7)中各个通道的影响,确定了土壤压实对通道的依赖性(P <0.05)。在轨道线外监测到的通道对土壤压实的影响(P2、P5)中也发现了类似的情况。此外,轮胎气压的变化也具有显著的统计学意义,从 0.19 兆帕降至 0.15 兆帕显示出轮胎气压的变化是有益的。P11 路段的压实度最高,平均值为 5.36 兆帕,是参考值的 2.3 倍。建立收集线可以降低整个地块的压实度。收集线应只覆盖地块的一小部分。
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来源期刊
Acta Technologica Agriculturae
Acta Technologica Agriculturae AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
28.60%
发文量
32
审稿时长
18 weeks
期刊介绍: Acta Technologica Agriculturae is an international scientific double-blind peer reviewed journal focused on agricultural engineering. The journal is multidisciplinary and publishes original research and review papers in engineering, agricultural and biological sciences, and materials science. Aims and Scope Areas of interest include but are not limited to: agricultural and biosystems engineering; machines and mechanization of agricultural production; information and electrical technologies; agro-product and food processing engineering; physical, chemical and biological changes in the soil caused by tillage and field traffic, soil working machinery and terramechanics; renewable energy sources and bioenergy; rural buildings; related issues from applied physics and chemistry, ecology, economy and energy.
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