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Author: Valery Gorobets

  • MECHANIZATION IN AGRICULTURE

    Investigation of the side ventilation system in the poultry house using CFD

    • Viktor Trokhaniak
    • Valery Gorobets
    • Oleksandr Shutyi
    • Olha Dubrovina
    Mechanization in agriculture & Conserving of the resources, Vol. 67 (2023), Issue 5, pg(s) 154-157
    • Abstract
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    Maintaining a standardized microclimate in the poultry house is one of the main factors. It is the quality of the air parameters that ultimately determines the quality of the product output. Poultry at its maintenance requires great efforts and technological solutions. In this regard, the study is to improve the system of microclimate in the air environment of the poultry house by including exhaust fans on the rear end wall in a non-traditional way. Computational Fluid Dynamics (CFD) using ANSYS Fluent is a powerful tool for predicting the microclimate system in the poultry house as an alternative to experimental studies. According to the results of CFD modeling of hydrodynamics and heat and mass transfer processes, it was concluded that changing the spoiler angle by 73° allows to supply air to the center of the house. At the same time the pressure drop at the inlet valves is 70.48 Pa, which allows to fully provide the exhaust fan. The air velocity at the inlet of the supply valves is 11.57 m·s–1. The average air velocity at a height of 0.7 m from floor level is 0.46 m·s–1and the temperature is 15.94 ℃. Thus, the presented scientific research can be used in the future in the development of new ventilation systems of poultry houses.

  • MECHANIZATION IN AGRICULTURE

    Use of numerical methods in generalizing nusselt numbers depending on the reynolds number for a compact tube beam

    • Viktor Trokhaniak
    • Valery Gorobets
    • Volodymyr Bulgakov
    Mechanization in agriculture & Conserving of the resources, Vol. 67 (2023), Issue 4, pg(s) 123-126
    • Abstract
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    When developing new types of heat exchanger constructions, such factors as their mass-size characteristics, efficiency of heat transfer through the separating heat-carrier surface, pressure losses in the paths for each of the heat-carriers and other parameters characterizing the heat-exchange apparatus play an important role. CFD modeling of heat and mass transfer processes in a tube bundle at different Re numbers with compact placement of tubes, using ANSYS Fluent software package, has been conducted. The mathematical model is based on Navier-Stokes equation, energy conservation equation for convective flows and continuity equation. The standard k-ε model of turbulence is used in the calculations. The fields of velocities, temperatures, pressures in the studied channels have been obtained. The hydrodynamic flow conditions in the channels are analyzed and the intensity of heat transfer between the hot and cold coolant through the wall separating them is estimated. Based on the results of CFD modeling, the criterial equation of Nu, number is derived, which can be used in engineering calculations of heat exchange apparatuses with compact tube bundles.

  • MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    Numerical simulation of heat transfer and hydrodynamics under transverse flow of compact bundles of tubes in shell-and-tube heat exchangers

    • Volodymyr Bulgakov
    • Viktor Trokhaniak
    • Valery Gorobets
    • Ivan Holovach
    • Yevhen Ihnatiev
    • Oleksandra Trokhaniak
    Mathematical Modeling, Vol. 7 (2023), Issue 1, pg(s) 27-29
    • Abstract
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    By using the application package ANSYS Fluent, the numerical simulation of heat and mass transfer processes in the channels of shell-and-tube heat exchanger with compact placement of tube bundles has been carried out. The fields of velocities, temperatures and pressures in the heat exchanger channel were obtained and the conditions of hydrodynamic flow in the channels and the processes of heat transfer in these channels were analyzed. A new construction of shell-and-tube heat exchanger with compact arrangement of tubes in tube bundles is proposed and developed.

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