ynergetics of interactive indicators of resource efficiency of sowing accuracy of main technical cultures with device with dispenser of directed direction

Authors

  • P. S. Popуk National University of Life and Environmental Sciences of Ukraine image/svg+xml

DOI:

https://doi.org/10.31548/machenergy2021.02.133

Keywords:

technology, precision sowing, pneumomechanical sowing machine, directional action dispenser, seeds, cell, resource saving, probability of omissions, probability of duplicates

Abstract

One of the most problematic places in the agro-industrial complex (AIC) is the systematic implementation of resource conservation, in particular in agricultural engineering. To overcome this problem, the author proposed a scheme for selecting a resource-saving project in order to assess the effectiveness of technologies for conserving resources.

The author aimed to analyze the effectiveness of the implementation of resource-saving measures in the complex of the first sphere of agriculture. To detail the goal, the task was to test the scheme of choosing a resource-saving project and determine the effectiveness of resource-saving measures. As a result, the model of multi-criteria justification for increasing the resource saving of agro-industrial enterprises was evaluated as one that is adequate for assessing the efficiency of production and the level of resource saving.

The economic efficiency of resource-saving technology of sowing of row crops by the sowing device with the batcher of the directed action is calculated. The average annual increase in profit from the introduction of an advanced sowing machine for the main technical row crops (corn, sunflower, soybeans, beets) is 1216,45 c.u. on sowing of one hectare. On the example of sowing one of the crops, the greatest economic effect is given by corn – 1,6 million c.u. per year, the smallest - sunflower (266 thousand c.u.). At the same time, the experimental sample showed itself best in sowing soybeans, reducing losses in terms of value by 98%.

References

Boiko A., Popyk P., Gerasymchuk I., Bannyi O., Gerasymchuk N. Application of the new structural solutions in the seeders for precision sowing as a resource saving direction. Eastern-European Journal of Enterprise Technologies. 2018. Vоl. 5. No 1 (95). P. 46-53.

Rogovskii I. L., Titova L. L., Trokhaniak V. I., Solomka O. V., Popyk P. S., Shvidia V. O., Stepanenko S. P. Experimental studies of drying conditions of grain crops with high moisture content in low-pressure environment. INMATEH. Agricultural Engineering. Bucharest. 2019. Vol. 57. No 1. P. 141-146.

Попик П. С. Определение условий сброса лишних семян пневмомеханическим высевным аппаратом с периферийным торцевым расположением присасывающих ячеек. Motrol: Commission of Motorization and Energetics in Agriculture. 2015. Vol. 17. No 3. P. 316-321.

Zagurskiy О., Ohiienko M., Rogach S., Pokusa T., Titova L., Rogovskii I. Global supply chain in context of new model of economic growth. Conceptual bases and trends for development of social-economic processes. Monograph. Opole. Poland, 2018. P. 64-74.

Попик П. С. Пневмомеханічний висівний апарат з дозатором направленої дії. Науковий вісник Національного університету біоресурсів і природокористування України. Серія: техніка та енергетика АПК. Київ. 2018. Вип. 282. С. 244-248.

Rogovskii I., Grubrin O. Accuracy of converting videoendoscopy combine harvester using generalized mathematical model. Scientific Herald of National University of Life and Environmental Science of Ukraine. Series: technique and energy of APK. Kyiv, Ukraine. 2018. Vol. 298. P. 149-156. doi: 10.31548/me.2018.04.149-156.

Viba J., Lavendelis E. Algorithm of synthesis of strongly non-linear mechanical systems. In Industrial Engineering – Innovation as Competitive Edge for SME, 22 April 2006. Tallinn, Estonia. P. 95-98.

Luo A.C.J., Guo Y. Vibro-impact Dynamics. Berlin: Springer-Verlag, 2013. 213 p.

Astashev V., Krupenin V. Efficiency of vibration machines. Proceedings of 16th International Scientific Conference “Engineering for rural development”. Jelgava, Latvia, May 24-26, 2017, Latvia University of Agriculture. Faculty of Engineering. Vol. 16. P. 108-113.

Nazarenko I., Mishchuk Y., Mishchuk D., Ruchynskyi M., Rogovskii I., Mikhailova L., Titova L., Berezovyi M., Shatrov R. Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher. Eastern-European Journal of Enterprise Technologies. 2021. Vol. 4. Issue 7(112). P. 41-49. https://doi.org/10.15587/1729-4061.2021.239292.

Rogovskii I. L. Systemic approach to justification of standards of restoration of agricultural machinery. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. 2019. Vol. 10. No 3. Р. 181-187.

Rogovskii I. L. Consistency ensure the recovery of agricultural machinery according to degree of resource's costs. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. 2019. Vol. 10. No 4. Р. 145-150.

Роговський І. Л. Алгоритмічність визначення періодичності відновлення працездатності сільськогосподарських машин за ступенем витрат їх ресурсу. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. 2020. Vol. 11. No 1. Р. 155-162.

Роговський І. Л. Модель стохастичного процесу відновлення працездатності сільськогосподарської машини в безінерційних системах із запізненням. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. 2020. Vol. 11. No 3. Р. 143–150.

Роговський І. Л. Моделі формування альтернатив інженерного менеджменту в методах підвищення виробництва зерна в сільськогосподарських підприємствах. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. 2021. Vol. 12. No 1. Р. 137-146.

Published

2021-07-30

Issue

Section

Статті