SOIL COMPACTION WITH WHEELS OF MANURE SPREADER AGGREGATES

Author:

Marczuk Aneta1,Kamiński Jan Radek2,Viselga Gintas3,Turla Vytautas4,Jasinskas Algirdas5,Ugnenko Evgenija6

Affiliation:

1. Institute of Technology and Life Sciences, Branch in Warsaw, Warsaw, Poland

2. Dept of Biosystems Enginnering, Warsaw University of Life Sciences, Warsaw, Poland

3. Dept of Mechanics and Materials Engineering, Vilnius Gediminas Technical University, Vilnius, Lithuania

4. Dept of Mechatronics, Robotics and Digital Manufacturing, Vilnius Gediminas Technical University, Vilnius, Lithuania

5. Dept of Agricultural Engineering and Safety, Vytautas Magnus University Agriculture Academy, Kaunas, Lithuania

6. Dept of Researches and Design of Means of Communication, Geodesy and Land Management, Ukrainian State University of Railway Transport, Kharkiv, Ukraine

Abstract

The study focused on the definition of the impact of the parameters of the applied manure spreaders (loading capacity, size of tyres, the number of driving wheels) on the numerical values of the basic exploitation indices and on soil compaction as well. Research tests were carried out on farms of different arable land areas. The scope of the study included questionnaire surveys, laboratory and exploitation tests, comparison evaluation of fertilization units, verification of the acquired results, as well as recommendation for practical use. A significant growth in productivity (from 0.38 to 1.15 ha/h) was observed together with an increase in the loading capacity of the spreaders, but the following indicators were found to have decreased: surface of soil compaction (from 44 to 15%), field loading (from 412 to 165 kN∙km) and grooves volume (from 165 to 67 m3). Four-wheel spreader of 20 t loading capacity has been characterized by two times higher values of field loading indices (357 kN∙km), groove loading (204 kN/m) and groove volume (110 m3) in comparison with a two-heel spreader with a loading capacity of 10 t.

Publisher

Vilnius Gediminas Technical University

Subject

Mechanical Engineering,Automotive Engineering

Reference30 articles.

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2. Alekseev, V. V.; Maksimov, I. I.; Maksimov, V. I.; Sjakaev, I. V. 2012. Jenergeticheskaja ocenka mehanicheskogo vozdejstvija na pochvu pochvoobrabatyvajushhih mashin i orudij, Agrarnaja Nauka Evro-Severo-Vostoka (3): 70-72 (in Russian).

3. Management Effects on Soil Carbon Dioxide Fluxes under Semiarid Mediterranean Conditions

4. ASAE S313.3:1999(R2013). Soil Cone Penetrometer. American Society of Agricultural and Biological Engineers Standard.

5. Baker, A. T. 2014. Soil compaction and agricultural production: a review, in Proceedings of the International Soil Tillage Research Organisation (ISTRO) Nigeria Symposium, 3-6 November 2014, Akure, Nigeria, 182-187.

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