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Multicriteria compromise optimization of feed grain grinding process

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Warianty tytułu
PL
Wielokryterialna optymalizacja procesu mielenia ziarna paszowego
Języki publikacji
EN
Abstrakty
EN
Optimization of the feed grinding process by a vibrating rotary crusher was carried out and shown in the article: a multifactor experiment was carried out, a statistical analysis of the results was carried out using the software "Statistica 10.0", mathematical models were obtained in the form of multiple regression of the second order and their adequacy was checked by the Fisher criterion. Rational operating parameters were obtained by Cramer's method using the “Mathcad 15.0” software.
PL
Przeprowadzono i przedstawiono w artykule optymalizację procesu rozdrabniania ziarna przez wibracyjną kruszarkę obrotową: przeprowadzono eksperyment wieloczynnikowy, przeprowadzono analizę statystyczną wyników za pomocą programu „Statistica 10.0”, modele matematyczne uzyskano w forma regresji wielokrotnej drugiego rzędu i ich adekwatność sprawdzono za pomocą kryterium Fishera. Racjonalne parametry pracy uzyskano metodą Cramera przy użyciu programu „Mathcad 15.0”.
Rocznik
Strony
179--183
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
autor
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
autor
  • Vinnytsia National Agrarian University 21008, 3 Sonyachna str., Vinnytsia, Ukraine
Bibliografia
  • [1]. Mushtruk M., Gudzenko M., Palamarchuk I., Vasyliv V., Slobodyanyuk N., Kuts A.., Nychyk O., Salavor O., Bober A., Mathematical modeling of the oil extrusion process with pregrinding of raw materials in a twin-screw extruder, Potravinarstvo Slovak Journal of Food Sciences, 14 (2020), 937–944. https://doi.org/10.5219/1436
  • [2]. Solona O., Kupchuk I., Dynamic synchronization of vibration exciters of the three-mass vibration mill, Przegląd Elektrotechniczny, 1 (2020), nr. 3, 163–167. https://doi.org/10.15199/48.2020.03.35
  • [3]. Yanovych V., Honcharuk T., Honcharuk I., Kovalova K., Engineering management of vibrating machines for targeted mechanical activation of premix components, Inmateh– Agricultural Engineering, 54 (2018), nr. 1, 25-32.
  • [4]. Yanovych V., Honcharuk T., Honcharuk I., Kovalova K., Design of the system to control a vibratory machine for mixing loose materials, Eastern-European Journal of Enterprise Technologies, 6 (2017), 4–13. https://doi.org/10.15587/1729- 4061.2017.117635
  • [5]. Yanovych V., Tsurkan O., Polevoda Yu, Development of the vibrocentric machine for the production of a basic mixture of homeopathic preparations, UPB Scientific Bulletin, Series D: Mechanical Engineering, 81 (2019), nr. 2, 13-26.
  • [6]. Bulgakov V., Pascuzzi S., Ivanovs S., Kaletnik G., Yanovych V., Angular oscillation model top redict the performance of a vibratory ball mill for the fine grinding of grain, Biosystems engineering, 171 (2018), 155–164. https://doi.org/10.1016/j.biosystemseng.2018.04.021
  • [7]. Yanovych V., Kupchuk I., Determination of rational operating parameters for a vibrating dysk-type grinder used in ethanol industry, Inmateh – Agricultural Eng., 52 (2017), nr. 2, 143-148
  • [8]. Kupchuk I.M., Solona O.V., Derevenko I.A., Tverdokhlib I.V., Verification of the mathematical model of the energy consumption drive for vibrating disc crusher, Inmateh – Agricultural Engineering, 55 (2018), nr. 2, 111-118
  • [9]. Palamarchuk I.P., Yanovych V.P., Kupchuk I.M., Solomko I.V. Development of constructive-technological scheme of the vibrating rotor crusher, Vibrations in engineering and technologies, 69 (2013), nr. 1, 125-129
  • [10]. Yanovych V., Polievoda Yu., Duda D., Development of a vibrocentric machine for raw glycerin purification, UPB Scientific Bulletin, Series D: Mechanical Engineering, 81 (2019), 4, 17–28.
  • [11]. Honcharuk I., Kupchuk I., Solona O., Tokarchuk O., Telekalo N., Experimental research of oscillation parameters of vibrating-rotor crusher, Przeglad Elektrotechniczny, 97 (2021), 3. 97–100. https://doi.org/10.15199/48.2021.03.19
  • [12]. Kukharchuk V., Katsyv S., Hraniak V. et al. Analysis of dependency between current harmonics coefficient and load, as well as filter parameters for asymmetrical network modes, Przeglad Elektrotechniczny, 96 (2020), nr.9, 103-107 doi:10.15199/ 48.2020.09.22
  • [13]. Vedmitskyi Y. G., Kukharchuk V. V., Hraniak, V. F., Vishtak, et al. Newton binomial in the generalized Cauchy problem as exemplified by electrical systems. Proc. SPIE 10808, Photonics Applications in Astronomy, Communications, Industry, and High-Energy Physics Experiments, 2018, 7 p. https://doi.org/10.1117/ 12.2501600
  • [14]. Ruchynskyi M., Nazarenko M., Pereginets I., Kobylianskyi O., Kisała P., Abenov A., Amirgaliyeva Zh. Simulation and development of energy-efficient vibration machines operating in resonant modes, Przeglad Elektrotechniczny, 95 (2019), nr. 4, 60-64
  • [15]. Tishchenko L., Kharchenko S., Kharchenko F., Bredykhin V., Tsurkan O., Identification of a mixture of grain particle velocity through the holes of the vibrating sieves grain separators. Eastern-European Journal of Enterprise Technologies, 80 (2016), 2(7), 63–69. https://doi.org/10.15587/1729-4061.2016.65920
  • [16]. Hrushetskyi S., Yaropud V., Kupchuk I., Semenyshena R., The heap parts movement on the shareboard surface of the potato harvesting machine, Bulletin of the Transilvania University of Braşov. Series II: Forestry, Wood Industry, Agricultural Food Engineering, 14 (2021), nr 1. 127-140. https://doi.org/10.31926/but.fwiafe.2021.14.63.1.12
  • [17]. Palamarchuk I., Mushtruk M., Sukhenko, V., Dudchenko V., Korets L., Litvinenko A., Deviatko O., Ulianko S., Slobodyanyuk N. Modelling of the process of vybromechanical activation of plant raw material hydrolysis for pectin extraction. Potravinarstvo Slovak Journal of Food Sciences, 14 (2020), 239–246. https://doi.org/10.5219/1305
  • [18]. Solona O., Derevenko I., Kupchuk I., Determination of Plasticity for pre-deformed billet, Solid State Phenomena, 291 (2019), 110-120. https://doi.org/10.4028/www.scientific.net/ ssp.291.110
  • [19]. Lanets O., Derevenko I., Borovets V., Kovtonyuk M., Komada P., Mussabekov K., Yeraliyeva B. Substantiation of consolidated inertial parameters of vibrating bunker feeder, Przeglad Elektrotechniczny, 95 (2019), nr. 4, 47-52.
  • [20]. Adamchuk V., Bulgakov V., Ivanovs S., Holovach I., Ihnatiev Ye., Theoretical study of pneumatic separation of grain mixtures in vortex flow, Engineering for Rural Development, Jelgava, May 2021, 657-664. https://doi.org/10.22616/ERDev.2021.20.TF139
  • [21]. Solona O., Kovbasa V., Kupchuk I. Analytical study of soil strain rate with a ploughshare for uncovering slit. Agraarteadus. 2020. Vol. 31, №2. P. 212–218. https://doi.org/10.15159/jas.20.22
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0344a524-e811-419d-b06c-58e31d73c618
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