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dc.contributor.authorTrokhaniak, Viktor Ivanovych-
dc.date.accessioned2021-01-21T13:36:09Z-
dc.date.available2021-01-21T13:36:09Z-
dc.date.issued2020-12-
dc.identifier.citationTrokhaniak V. I. Using CFD Simulation in poultry house with side ventilation system. International scientific journal «Global science and innovations 2020: central Asia» Nur-Sultan, Kazakhstan, December 2020, P. 95-97.uk_UA
dc.identifier.issn2664-2271-
dc.identifier.urihttp://elartu.tntu.edu.ua/handle/lib/34138-
dc.description.abstractExposure and the outbreak of diseases result in significant losses in large scale poultry operation. New ventilation systems are necessary to provide safe and homogenous internal environment at large enterprises, especially under the changeable climatic conditions of global warming. Within the framework of this investigation, computational fluid dynamics (CFD) simulation of a side ventilation system in a poultry house during winter seasons has been conducted. As a results, 3D temperature fields, current lines and pressures in a poultry house have been found. It has been determined that fresh air valves arranged at a height of 200 mm from flooring work better than those traditionally arranged at a height of 400 mm. The erection of walls on the inside of a poultry house framework as well as the decrease in the height of flooring improve poultry house aerodynamics.uk_UA
dc.description.sponsorshipSupported by Affiliate «Poultry Complex» LLC Vinnitsa Poultry Farm (Ladyzhyn), Project No. 4/80uk_UA
dc.format.extent95-97-
dc.language.isoenuk_UA
dc.subjectCFDuk_UA
dc.subjectaerodynamicsuk_UA
dc.subjectpoultry houseuk_UA
dc.subjectside ventilation systemuk_UA
dc.subjectfresh air valvesuk_UA
dc.titleUsing CFD Simulation in poultry house with side ventilation systemuk_UA
dc.typeConference Abstractuk_UA
dc.subject.udc697.92uk_UA
dc.subject.udc533.6uk_UA
dc.subject.udc636.5.033uk_UA
dc.relation.referencesGorobets V.G., Trokhaniak V.I., Antypov I.O., Bohdan Yu.O., (2018), The numerical simulation of heat and mass transfer processes in tunneling air ventilation system in poultry houses, INMATEH: Agricultural Engineering, vol.55, no.2, pp.87-96.uk_UA
dc.relation.referencesGorobets V., Bohdan Y., Trokhaniak V., Antypov I., Masiuk M., (2019), Summarizing of Nusselt numbers and Euler numbers in depending of Reynolds number for the compact tube bundle of small diameter tubes by experimental and numerical methods of researches. E3S Web of Conferences, vol. 128, p. 04003. https://doi.org/10.1051/e3sconf/201912804002.uk_UA
dc.relation.referencesGorobets V.G., Bohdan Yu.O., Trokhaniak V.I., Antypov I.O., (2018), Experimental studies and numerical modelling of heat and mass transfer process in shell-and-tube heat exchangers with compact arrangements of tube bundles, MATEC Web of Conferences, vol. 240, p. 02006. https://doi.org/10.1051/matecconf/201824002006.uk_UA
dc.relation.referencesGorobets V.G., Trokhaniak V.I., Rogovskii I.L., Titova L.L., Lendiel T.I., Dudnyk A.O., Masiuk M.Y., (2018), The numerical simulation of hydrodynamics and mass transfer processes for ventilating system effective location. INMATEH: Agricultural Engineering, vol. 56, no 3, pp. 185-192.uk_UA
dc.relation.referencesTrokhaniak V.I., Rutylo M.I., Rogovskii I.L., Titova L.L., Luzan O.R., Bannyi O.O., (2019), Experimental studies and numerical simulation of speed modes of air environment in a poultry house. INMATEH Agricultural Engineering, vol. 59, no 3, pp. 9-18. https://doi.org/10.35633/INMATEH-59-01.uk_UA
dc.relation.referencesenGorobets V.G., Trokhaniak V.I., Antypov I.O., Bohdan Yu.O., (2018), The numerical simulation of heat and mass transfer processes in tunneling air ventilation system in poultry houses, INMATEH: Agricultural Engineering, vol.55, no.2, pp.87-96.uk_UA
dc.relation.referencesenGorobets V., Bohdan Y., Trokhaniak V., Antypov I., Masiuk M., (2019), Summarizing of Nusselt numbers and Euler numbers in depending of Reynolds number for the compact tube bundle of small diameter tubes by experimental and numerical methods of researches. E3S Web of Conferences, vol. 128, p. 04003. https://doi.org/10.1051/e3sconf/201912804002.uk_UA
dc.relation.referencesenGorobets V.G., Bohdan Yu.O., Trokhaniak V.I., Antypov I.O., (2018), Experimental studies and numerical modelling of heat and mass transfer process in shell-and-tube heat exchangers with compact arrangements of tube bundles, MATEC Web of Conferences, vol. 240, p. 02006. https://doi.org/10.1051/matecconf/201824002006.uk_UA
dc.relation.referencesenGorobets V.G., Trokhaniak V.I., Rogovskii I.L., Titova L.L., Lendiel T.I., Dudnyk A.O., Masiuk M.Y., (2018), The numerical simulation of hydrodynamics and mass transfer processes for ventilating system effective location. INMATEH: Agricultural Engineering, vol. 56, no 3, pp. 185-192.uk_UA
dc.relation.referencesenTrokhaniak V.I., Rutylo M.I., Rogovskii I.L., Titova L.L., Luzan O.R., Bannyi O.O., (2019), Experimental studies and numerical simulation of speed modes of air environment in a poultry house. INMATEH Agricultural Engineering, vol. 59, no 3, pp. 9-18. https://doi.org/10.35633/INMATEH-59-01.uk_UA
dc.contributor.affiliationNational University of Life and Environmental Sciences of Ukraineuk_UA
dc.citation.conferenceGLOBAL SCIENCE AND INNOVATIONS 2020: CENTRAL ASIA-
Розташовується у зібраннях:Наукові публікації працівників кафедри автомобілів

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