Development of an electronic profilometer to measure mobilization variables in soil harrowing

IF 0.8 4区 农林科学 Q3 AGRICULTURE, MULTIDISCIPLINARY Spanish Journal of Agricultural Research Pub Date : 2023-03-22 DOI:10.5424/sjar/2023212-19811
G. G. Zimmermann, S. P. Jasper, D. Savi, R. S. Ferraz, Eduardo A. Gracietti
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Abstract

Aim of study: This experiment's objective is to develop an automatic data acquisition system for profilometry, evaluating four harrowing speeds. Area of study: Federal University of Parana, Curitiba, Brazil. Material and methods: We experimented at the laboratory using a completely randomized design, comparing the data of modified roughness, raised and mobilized area, blistering, and thickness. These were acquired with traditional and electronic profilometers in seven replications. We executed the field test in lines, using a completely randomized design. The profilometers were in the plots and the targeted speeds in the subplots. We submitted the data for analysis of variance and when significant, to Tukey's test and regression analysis. Main results: Laboratory testing showed no significant difference in the parameters of modified roughness, elevated and mobilized area, blistering, and thickness, denoting the phase validation that indicates applicability in the field. The field testing presented superior results for the electronic profilometer in elevated and mobilized areas and soil layer thickness. That is due to the absence of interference in the measurements that occur in the conventional profilometer caused by the insertion of the rods in the soil. Research highlights: The increase in the mechanized set speed provided the reduction of the elevated area and soil blistering caused by the rise in disc rotation and consequent deviation of the soil particles.
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测量土壤耙动变量的电子轮廓仪的研制
研究目的:本实验的目的是开发一种用于轮廓术的自动数据采集系统,评估四种耙削速度。研究领域:巴西库里蒂巴巴拉那联邦大学。材料和方法:我们在实验室使用完全随机设计进行实验,比较了改性粗糙度、凸起和移动面积、起泡和厚度的数据。这些是用传统和电子轮廓仪在七次复制中获得的。我们采用完全随机的设计,在生产线上进行了现场测试。轮廓仪在绘图中,目标速度在子绘图中。我们将数据提交给Tukey检验和回归分析,用于方差分析,当数据显著时。主要结果:实验室测试显示,改性粗糙度、提升和移动面积、起泡和厚度等参数没有显著差异,这表明了该领域的适用性。现场测试表明,电子轮廓仪在高架和移动区域以及土层厚度方面取得了优异的结果。这是因为在传统的轮廓仪中,由于杆插入土壤中而导致的测量不存在干扰。研究重点:机械化设定速度的增加减少了因圆盘旋转增加和土壤颗粒偏差而引起的隆起面积和土壤起泡。
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来源期刊
Spanish Journal of Agricultural Research
Spanish Journal of Agricultural Research 农林科学-农业综合
CiteScore
2.00
自引率
0.00%
发文量
60
审稿时长
6 months
期刊介绍: The Spanish Journal of Agricultural Research (SJAR) is a quarterly international journal that accepts research articles, reviews and short communications of content related to agriculture. Research articles and short communications must report original work not previously published in any language and not under consideration for publication elsewhere. The main aim of SJAR is to publish papers that report research findings on the following topics: agricultural economics; agricultural engineering; agricultural environment and ecology; animal breeding, genetics and reproduction; animal health and welfare; animal production; plant breeding, genetics and genetic resources; plant physiology; plant production (field and horticultural crops); plant protection; soil science; and water management.
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