Next Article in Journal
Requirements and Economic Implications of Integrating a PV-Plant-Based Energy System in the Dairy Production Process
Next Article in Special Issue
Sugarcane Water Productivity for Bioethanol, Sugar and Biomass under Deficit Irrigation
Previous Article in Journal
Illuminating Solutions for Reducing Mislaid Eggs of Cage-Free Layers
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Research on a Machine–Tractor Unit for Strip-Till Technology

1
Department of Operation and Technical Service of Machines, Dmytro Motornyi Tavria State Agrotechnological University, 6 Zhukovskyi Str. 66, 69-002 Zaporizhzhia, Ukraine
2
Department of Agricultural Engineering and Safety, Agriculture Academy, Vytautas Magnus University, Studentų Str. 15A, Akademija, LT-53362 Kaunas, Lithuania
3
Department of Tractors, Automobiles and Bioenergy Resources, National University of Life and Environmental Sciences of Ukraine, Heroev Oborony Str. 15B, 03-040 Kyiv, Ukraine
4
Department of Mechanical, Energy and Biotechnology Engineering, Agriculture Academy, Vytautas Magnus University, Studentų Str. 11, Akademija, LT-53362 Kaunas, Lithuania
5
Department of Mechanics and Agroecosystems Engineering, Polissia National University, Staryi Blvd 7, 10-008 Zhytomyr, Ukraine
6
Ukrainian University in Europe - Foundation, Balicka 116, 30-149 Krakow, Poland
*
Authors to whom correspondence should be addressed.
AgriEngineering 2023, 5(4), 2184-2195; https://doi.org/10.3390/agriengineering5040134
Submission received: 6 September 2023 / Revised: 3 November 2023 / Accepted: 9 November 2023 / Published: 13 November 2023

Abstract

One of the most modern technologies for growing row crops is strip-till. Currently, it occupies an intermediate position between conventional tillage and no-till technologies. Special complex and expensive machines are used to implement strip-till technology practically. To avoid this, a combined unit is proposed, including a tractor and two simple machines: a front-disc harrow and a chisel plough mounted behind the tractor. As experimental studies have shown, this unit makes implementing the strip-till one-pass technology possible. In this case, the oscillations process in the soil-loosening depth of strips is low-frequency since at least 95% of this statistical parameter variance is concentrated in the frequency range of 0–16.8 s−1 or 0–2.7 Hz, and its maximum falls at a frequency of 0.4 Hz. The soil-loosening depth in the strips can deviate from the mean value by ±2 cm once per 7.1 m of the combined unit’s path. With a mean speed of its movement of 2.1 m·s−1, the release frequency of the mean value of the soil-loosening depth exceeding ±2 cm is only 0.29 s or 0.05 Hz. Not less than 95% of the loosened strips’ non-straightness oscillations variance is in the frequency range of 0–0.25 m−1, and the value of the variance itself is small and amounts to 1.08 cm2. Proceeding from this, the non-straightness of the loosened strips by the combined unit can be considered satisfactory since its indicators meet the requirements for the non-straightness of row crops in terms of variance and frequency oscillations.
Keywords: chisel plough; non-straightness; tillage depth; unit’s adjacent pass; correlation function; variance’s spectrum chisel plough; non-straightness; tillage depth; unit’s adjacent pass; correlation function; variance’s spectrum

Share and Cite

MDPI and ACS Style

Nadykto, V.; Domeika, R.; Golub, G.; Kukharets, S.; Chorna, T.; Čėsna, J.; Hutsol, T. Research on a Machine–Tractor Unit for Strip-Till Technology. AgriEngineering 2023, 5, 2184-2195. https://doi.org/10.3390/agriengineering5040134

AMA Style

Nadykto V, Domeika R, Golub G, Kukharets S, Chorna T, Čėsna J, Hutsol T. Research on a Machine–Tractor Unit for Strip-Till Technology. AgriEngineering. 2023; 5(4):2184-2195. https://doi.org/10.3390/agriengineering5040134

Chicago/Turabian Style

Nadykto, Volodymyr, Rolandas Domeika, Gennadii Golub, Savelii Kukharets, Tetiana Chorna, Jonas Čėsna, and Taras Hutsol. 2023. "Research on a Machine–Tractor Unit for Strip-Till Technology" AgriEngineering 5, no. 4: 2184-2195. https://doi.org/10.3390/agriengineering5040134

APA Style

Nadykto, V., Domeika, R., Golub, G., Kukharets, S., Chorna, T., Čėsna, J., & Hutsol, T. (2023). Research on a Machine–Tractor Unit for Strip-Till Technology. AgriEngineering, 5(4), 2184-2195. https://doi.org/10.3390/agriengineering5040134

Article Metrics

Back to TopTop