以实际工作条件下的土壤压实度为重点的水平渗透仪比较测量法

Marek Mojžiš, Ján Kosiba, J. Jobbágy
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摘要

土壤的潜在产量与物理和机械性能密切相关。本文旨在评估拖拉机底盘造成的不同程度土壤压实的影响。实验地块总面积为 13.22 公顷。到 2019 年为止,一直采用传统的耕作制度。测量使用了斯洛伐克尼特拉农业大学设计的创新测量设备,该设备可在驾驶过程中连续测量水平贯入度,以进行比较测量。该测量设备测量了轮胎轨道内(轨道上)和轨道外(轨道外)的土壤阻力,以及拖拉机在一次通过中的三个(50 秒)序列。选择了三条线路,每条线路都有一对组合。除图形评估外,还对结果进行了单因素方差分析。统计分析结果表明,在对单个通行点(PH1 至 PH6)进行比较时,水平阻力测量结果与重量、通行次数和轮胎充气不足有关,具有显著的统计学意义(P < 0.05)。第一遍造成的压实度最高,而拖拉机在第二遍时的重量增加所造成的影响较小。轮胎充气不足可确保压实度降低。将拖拉机轮胎气压降低到 0.015 兆帕可使土壤压实度降低 16%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Measurement of Horizontal Penetrometry with a Focus on the Degree of Soil Compaction in Real Work Conditions
Potential soil production is closely related to the physical and mechanical properties. The aim of this paper was to evaluate the effect of different levels of soil compaction created by tractor chassis. The total area of the experimental plot was 13.22 ha. Up until 2019, a conventional tillage system had been used. The measurements were carried out with an innovative measuring device that allows for the continuous measurement of the horizontal penetrometry for comparative measurements while driving, which was designed at the Slovak University of Agriculture in Nitra. The measuring device measured the soil resistance in the tire track (On-track) and out of track (Off-track) as well as in three (50 s) sequences within one tractor pass. Three lines were chosen, where in each a pair of combinations was made. The results were subjected, in addition to graphical evaluation, to single factor ANOVA analysis. When comparing individual passes (PH1 to PH6), the statistical analysis showed that the results of the horizontal resistance measurements proved to be statistically significant (p < 0.05) with respect to the weight, number of passes, and tire underinflation. The highest compaction was caused by the first pass, while the higher weight of the tractor during the next pass had a smaller effect. Underinflating the tires ensured a reduction in compaction. Reducing the tractor tire pressure to 0.015 MPa resulted in a reduction in soil compaction of up to 16%.
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