Zitieren

Aliiev E., Gavrilchenko A., Tesliuk H., Tolstenko A. & Koshul’ko V. (2019). Improvement of the sunflower seed separation process efficiency on the vibrating surface. Acta Periodica Technologica, 50, 12-22. Search in Google Scholar

Anders, A. (2023). Modeling the Shape of Wheat Kernels with the Use of Solids of Revolution. Agricultural Engineering, 27(1), 187-202. https://doi.org/10.2478/agriceng-2023-0014. Search in Google Scholar

Bredykhin, V., Bogomolov, A., Slipchenko, V., Kis-Korkishchenko, L., Ivashchenko, S. & Tikunov, T. Scientific basis of thrifty preparation of seeds with improved biological potential: monograph. Kharkiv: State Biotechnological University, 2023. pp. 401. Search in Google Scholar

Bredykhin, V., Gurskyi, P., Alfyorov, O., Bredykhina, K. & Pak A. (2021). Improving the mechanical-mathematical model of grain mass separation in a fluidized bed. European Journal of Enterprise Technologies, 3(1), 79-86. https://papers.ssrn.com/sol3/papers.cfm?abstract_id=3885915 Search in Google Scholar

Bredykhin, V., Tikunov, S., Slipchenko, M., Alfyorov, O., Bogomolov, A., Shchur, T., Kocira, S., Kiczorowski, P. & Paslavskyy, R. (2023). Improving efficiency of corn seed separation and calibration process. Agricultural Engineering, 27(1), 241-253. https://doi.org/10.2478/agriceng-2023-0018 Search in Google Scholar

Clark B. (1983). Cleaning seeds by fluidized bed medium. Transac-tions of the ASAE, 4, 987-990. Search in Google Scholar

Duan, G., Chen, B., Koshizuka, S. & Xiang, H. (2017). Stable multiphase moving particle semi-implicit method for incompressible interfacial flow. Computer Methods in Applied Mechanics and Engineering, 318, 636–666. doi: https://doi.org/10.1016/j.cma.2017.01.002. Search in Google Scholar

Dziki, D. (2023). The Latest Innovations in Wheat Flour Milling: A Review. Agricultural Engineering, 27(1), 147-162. https://doi.org/10.2478/agriceng-2023-0011. Search in Google Scholar

Havrylenko Y., Kholodniak Y., Halko S., Vershkov O., Miroshnyk O.,, Suprun O., Dereza O., Shchur T. & Śrutek M. (2021). Representation of a monotone curve by a contour with regular change in curvature. Entropy, 23(7), 923, https://doi.org/10.3390/e23070923 Search in Google Scholar

Havrylenko Y., Kholodniak Y., Halko S., . Vershkov O., Bondarenko L., Suprun O., Miroshnyk O Shchur T., Śrutek M. & Gackowska M. (2021). Interpolation with specified error of a point series belonging to a monotone curve. Entropy, 23(5), 493. https://doi.org/10.3390/e23050493. Search in Google Scholar

Kaliniewicz, Z., Choszcz, D. & Lipiński, A. (2022). Determination of Seed Volume Based on Selected Seed Dimensions. Applied Sciences, 12(18), 9198. https://doi.org/10.3390/app12189198. Search in Google Scholar

Karaiev, O., Bondarenko, L., Halko, S., Miroshnyk, O., Vershkov, O., Karaieva, T., Shchur, T., Findura, P. & Prístavka M. (2021). Mathematical modelling of the fruit-stone culture seeds calibration process using flat sieves. Acta Technologica Agriculturae, 24(3), 119-123. https://doi.org/10.2478/ata-2021-0020. Search in Google Scholar

Kroulík, M., Hůla, J., Rybka, A., & Honzík, I. (2016). Pneumatic conveying characteristics of the seeds in a vertical ascending airstream. Research in Agricultural Engineering, 62(2), 56-63. doi: http://doi.org/10.17221/32/2014-rae. Search in Google Scholar

Lezhenkin, O., Halko, S., Miroshnyk, O., Vershkov, O., Lezhenkin, I., Suprun, O., Shchur, T., Kruszelnicka, W. & Kasner, R. (2021). Investigation of the separation of combed heap of winter wheat. Journal of Physics: Conference Series, 1781(1), 012016. https://doi.org/10.1088/1742-6596/1781/1/012016. Search in Google Scholar

Li, N., Xu, R., Duan, P. & Li, Y. (2018). Control of grain size in rice. Plant Reproduction, 31 (3), 237–251. doi: https://doi.org/10.1007/s00497-018-0333-6. Search in Google Scholar

Linenko, A., Aipov, R., Yarullin, R., Gabitov, I., Tutkatov, M. & Mudasirov, S. (2018). Exsperimental vibro-centrifugal grain separator with linear asinchronicus electric drive. Journal of Engineering and Applied Science, 13, 6551-6557. Available at: http://10.36478/jeasci.2018.6551.6557. Search in Google Scholar

Nesterenko, A.V., Leshchenko, S.M., Vasylkovskyi, V. & Petrenko, D.I. (2017). Analytical assessment of the pneumatic separation quality in the process of grain multilayer feeding. INMATEH-Agricultural Engineering. 53(3), 54-75. http://zbirniksgm.kntu.kr.ua/eng/archive/49/49_Bohatyrov_eng.html. Search in Google Scholar

Olshanskii, V., Olshanskii, A., Kharchenko, S. & Kharchenko, F. (2016). About motion of grain mixture of variable porosity in the cylindrical sieve of vibrocentrifuge. Teka Commission of Motorization and Power Industry in Agriculture, 16(3), 31-34. Search in Google Scholar

Olshanskiy, V., Burlaka, V. & Slipchenko, M. (2018). Free oscillations of an oscillator with nonlinear positional friction. Ukrainian Journal of Mechanical Engineering and Materials Science. Vol.4. 2(8), 50-57. https://doi.org/10.23939/ujmems2018.02.050. Search in Google Scholar

Peniak, K. & Nowacki, K.(2023). Work Safety in the Mill - Case Study. Agricultural Engineering, 27(1), 135-145. https://doi.org/10.2478/agriceng-2023-0010. Search in Google Scholar

Piven, M. (2017). Numerical solution of the problem of spatial movement of a loose mixture in a vibrolot. Teka Komisji Motoryzacji i Energetyki Rolnictwa, 17(2), 19-28. Search in Google Scholar

Piven, M., Volokh, V., Piven, A. & Kharchenko, S. (2018). Research into the process of loading the surface of a vibrosieve when a loose mixture is fed unevenly. Eastern-European Journal of Enterprise Technologies, 1(96), 62-70. https://doi.org/10.15587/1729-4061.2018.149739 Search in Google Scholar

Salemi, E., Tessari, U. & Mastrocicco, N.C.M. (2010). Improved gravitational grain size separation method. Applied Clay Science, 48(4), 612-614. Search in Google Scholar

Stepanenko, S.P. & Dnes, V.I. (2021). Popadiuk. Investigation of channel parameters for removal of dust and light garbage impurities from the pneumatic separator. Innovative development of resource-saving technologies and sustainable use of natural resources. Glevakha, 4(99), 69-75. Search in Google Scholar

Stepanenko, S.P. & Kotov, B.I. (2018). Pneumonitis fractionation of grain materials in air streams of variable structure, TEKA. An International Quarterly Journal on Motorization, Vehicle Operation, Energy Efficiency and Mechanical Engineering, 12(2), 69-74. Search in Google Scholar

Tishchenko, L., Kharchenko S., Kharchenko, F., Bredykhin, V. & Tsurkan, O. (2016). Identification of a mixture of grain particle velocity through the holes of the vibrating sieves grain separators. Eastern-European Journal of Enterprise Technologies, 2(3), 80-86. Search in Google Scholar

Wang, P., Deng, X. & Jiang, S. (2019). Global warming grain production and ats efficiency: Case study of major grain production region. Ecological Indicators, 105, 563-570. doi: https://doi.org/10.1016/j.ecolind.2018.05.022. Search in Google Scholar

Zubko,V., Sirenko, V., Kuzina, T., Onychko, V., Sokolik, S., Roubik, H., Koszel, M. & Shchur, T. (2022). Modelling Wheat Grain Flow During Sowing Based on the Model of Grain with Shifted Center of Gravity. Agricultural Engineering, 26(1), 25-37. https://doi.org/10.2478/agriceng-2022-0003. Search in Google Scholar