Pre-sowing seed treatment in electric aerosol cloud

dc.contributor.authorHalko, Serhii
dc.contributor.authorГалько, Сергій Віталійович
dc.contributor.authorDiordiiev, Volodymyr
dc.contributor.authorДіордієв, Володимир Трифонович
dc.contributor.authorSuprun, Olena
dc.contributor.authorСупрун, Олена Миколаївна
dc.contributor.authorMiroshnyk, Oleksandr
dc.contributor.authorМірошник, Олександр Олександрович
dc.contributor.authorShchur, Taras
dc.contributor.authorMarczuk, Andrzej
dc.contributor.authorWyłupek, Teresa
dc.contributor.authorNazarewicz, Sybilla
dc.date.accessioned2026-05-14T19:31:02Z
dc.date.issued2025
dc.description.abstractThe efficiency of the existing technologies for pre-sowing seed treat ment, ensuring the high quality of seed material along with its proper clearing and sorting, has been analysed. One effective solution is the introduction of electrical technologies, the complexity of which lies in solutions the scientific sophistication and the variety of tasks they address. The authors propose an electrotechnological complex (ETC) for pre-sowing seed treatment, which includes a working chamber, where charged grain is fed, while aerosol is delivered through adjustable sprinklers di rected toward the seed flow, allowing for control over the spray stroke length. When the freely falling charged seeds enter the cloud of oppo sitely charged aerosol, they become intensively coated with the working solution. The degree of coverage depends on the length of the working chamber, the potential difference between the grain flow and the sprin klers, and the concentration of the aerosol cloud. Given the relative complexity of the process and the presence of multiple disturbances, optimisation can only be achieved through automation. The main ob jective of the paper is to study the stability and functional quality of the automated ETC for pre-sowing grain treatment with aerosol. To achieve this, a structural and functional algorithmic scheme has been developed, outlining the composition of its elements, signal direction, and the func tional purpose of each component. This scheme facilitated the deve lopment of a system simulation model. The paper presents calculated results for key performance indicators of the ETC, with values aligning with those typical for this class of systems. A key advantage of this research is the proposed system for optimal correlation of all element characteristics and parameters of the automated object, ensuring stabi lity and high performance.
dc.identifier.citationPre-sowing seed treatment in electric aerosol cloud / S. Halko, V. Diordiiev, O. Suprun, O. Miroshnyk, T. Shchur, A. Marczuk, T. Wyłupek, S. Nazarewicz // Agricultural Engineering. 2025.Vol. 29, No.1. Pp. 201-216. DOI: 10.2478/agriceng-2025-0012
dc.identifier.doi10.2478/agriceng-2025-0012
dc.identifier.urihttps://elar.tsatu.edu.ua/handle/123456789/20882
dc.language.isoen
dc.subjectelectrotechnological complex
dc.subjectpre-sowing seed treatment
dc.subjectcharged aerosol
dc.subjectdisinfection chamber
dc.subjectautomated control system
dc.subjectengineering
dc.subjectmodular solutions
dc.titlePre-sowing seed treatment in electric aerosol cloud
dc.typeArticle

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