DOI: https://doi.org/10.32515/2664-262X.2022.6(37).2.37-44

Body Volume of Solid Organic Fertilizer Application Machines and their Overall Dimensions

Anatoliy Limont, Zlata Limont

About the Authors

Anatoliy Limont, Associate Professor, PhD in Technics (Candidate of Technics Sciences), Zhytomyr Agrotechnical Collede, Zhytomyr, Ukraine, e-mail: andrespartak@ukr.net, ORCID ID: 0000-0003-2243-008X

Zlata Limont, Student, Dnipro National University named after Oles Honchar, the city of Dnipro, Ukraine, e-mail: zl.kitti@gmail.com, ORCID ID: 0000–0002–0011–7386

Abstract

Along with other agronomic techniques and measures to increase soil fertility, a significant role belongs to the application of solid organic fertilizers. Among the technical means used to apply such fertilizers, an important place is occupied by body machines. The purpose of the article was to study and clarify the quantitative change in the volume of the body of such machines as a productive feature depending on their dimensions, as factorial features. The change of overall length, width and height of cars depending on the volume of their body is also investigated. The volume of the body of machines and their overall height are one of the parameters of body machines, which are used to calculate the load support of the technological process of solid organic fertilizers. Investigations and elucidation of the corresponding pairwise relationships of machine parameters were performed using correlation-regression analysis methods using standard computer programs. The statistical reconciliation included 47 brands of body machines for the application of solid organic fertilizers produced by enterprises in the former Soviet Union, “KUHN” and “Strautmann”. Empirical distributions of the investigated parameters of body machines for application of solid organic fertilizers are processed. The range of variation of parameters, arithmetic mean values and standard deviations and coefficients of variation of empirical distributions of parameters of these machines are determined. Between the studied resultant and factorial traits, a positive correlation was found with correlation coefficients in the range from 0.523 to 0.893 with correlation ratios of the resultant traits to factorial ones, which took values from 0.611 to 0.899. The closest relationship was found between the volume of the body and the overall length of the cars. The change in body volume from the overall length of the car, body volume from the height of the car and vice versa overall length and height of the car depending on their volume is described by straight lines with positive body coefficients. The change in body volume depending on the overall width of the machine is also described as a straight line with a positive angular factor, and the change in the overall width of the machine depending on the body volume is better described by a slowly increasing power function. The model lines of rectilinear regression of the majority of effective signs on factorial and curvilinear regression of overall width of cars on body volume are developed. If the last change is given by the equation of increasing hyperbola (R2 = 0.311), as a partial case of slowly increasing power function, then the asymptote of the hyperbola can be determined with the estimated maximum overall width of body machines for solid organic fertilizers, which should be 2745 mm.

Keywords

body machines for solid organic fertilizers, length, width, height, body, volume, correlation

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References

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