Authors:
Orest Voznyak Department of Heat and Gas Supply and Ventilation, Institute of Civil Engineering and Building Systems, Lviv Polytechnic National University, Lviv, Ukraine

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Khrystyna Myroniuk Department of Heat and Gas Supply and Ventilation, Institute of Civil Engineering and Building Systems, Lviv Polytechnic National University, Lviv, Ukraine

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Nadiia Spodyniuk Department of Heat and Power Engineering, Education and Research Institute of Energetics, Automation and Energy Efficiency, National University of Life and Environmental Sciences of Ukraine, Kyiv, Ukraine

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Iryna Sukholova Department of Heat and Gas Supply and Ventilation, Institute of Civil Engineering and Building Systems, Lviv Polytechnic National University, Lviv, Ukraine

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Oleksandr Dovbush Department of Heat and Gas Supply and Ventilation, Institute of Civil Engineering and Building Systems, Lviv Polytechnic National University, Lviv, Ukraine

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Mariana Kasynets Department of Heat and Gas Supply and Ventilation, Institute of Civil Engineering and Building Systems, Lviv Polytechnic National University, Lviv, Ukraine

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Abstract

In this work, the actual aspect of the creation of comfortable climatic conditions indoors due to the compressed swirl compact air streams at an alternating mode is considered. The purpose of this article is the mathematical modeling of the swirl compact air jet and getting of the analytical equations for calculation air distribution in a premise at the condition of dynamic indoor climate in compressed conditions of a premise for providing comfort people well-being. A mathematical model of air supply with the swirl compact air jets in the room has been developed. A combinatorial-logarithmic method for the graphs approximating the dependence of the relative transverse velocity of a swirl compact air jet and the correction coefficient for compression and swirling on the relative transverse coordinate has been developed.

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    P. Kapalo , S. Vilceková , F. Domnita , and O. Voznyak , “Determine a methodology for calculating the needed fresh air,” in The 9th International Conference on Environmental Engineering, Vilnius, Lithuania, May 22–24, 2014, CD 264.

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    P. Spalart and H. Abe , “Empirical scaling laws for wall-bounded turbulence deduced from direct numerical simulations,” Phys. Rev. Fluids, vol. 6, no. 4, 2021, Paper no. 044604.

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    N. Spodyniuk , B. Gulai , V. Zhelykh , and S. Shapoval , “Leveling of pressure flow of radial ventilator in mine ventilation system,” Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu, no. 6, pp. 8086, 2019.

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    P. Kapalo , O. Voznyak , Yu. Yurkevych , Kh. Myroniuk , and I. Sukholova , “Ensuring comfort microclimate in the classrooms under condition of the required air exchange”, East. Eur. J. Enterprise Tech., vol. 5/10, no. 95, pp. 614, 2018.

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    A. Lis and N. Spodyniuk , “The quality of the microclimate in educational buildings subjected to thermal modernization,” in E3S Web of Conferences, vol. 100, 2019, Paper no. 00048.

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    O. Voznyak , Y. Yurkevych , O. Dovbush , and Y. Serediuk , “The influence of chairs and passengers on air velocity in bus passenger compartment,” in Proceedings of CEE 2019, Lviv, Ukraine, September 11–13, 2019, Blikharskyy Z., Koszelnik P., Mesaros P. Eds, Lecture Notes in Civil Engineering, vol. 47, 2020, pp. 518525.

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    M. Kusnir , F. Vranay , D. Kosicanova , Z. Vranayova , and M. Stefanco , “Synergic application of renewable energy sources in reducing energy load of buildings,” in Proceedings of the International Multidisciplinary Scientific GeoConference, vol. 1, no. 4, Albena, Bulgaria, June 19–25, 2014, pp. 489496.

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    S. Shapoval , V. Zhelykh , N. Spodyniuk , O. Dzeryn , and B. Gulai , “The effectiveness to use the distribution manifold in the construction of the solar wall for the conditions of circulation,” Pollack Period., vol. 14, no. 2, pp. 143154, 2019.

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    V. Zhelykh , M. Ulewicz , N. Spodyniuk , S. Shapoval , and V. Shepitchak , “Analysis of the processes of heat exchange on infrared heater surface,” Diagnostyka, vol. 17, no 3, pp. 8185, 2016.

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    K. Myroniuk , O. Voznyak , Yu. Yurkevych , and B. Gulay , “Technical and economic efficiency after the boiler room renewal,” in Proceedings of EcoComfort 2020, Lviv, Ukraine, September 16–18, 2020, Z. Blikharskyy, Ed., Lecture Notes in Civil Engineering, vol. 100, 2021, pp. 311318.

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    O. Savchenko , O. Voznyak , K. Myroniuk , and O. Dovbush , “Thermal renewal of industrial buildings gas supply system,” in Proceedings of EcoComfort 2020, Lviv, Ukraine, September 16–18, 2020, Z. Blikharskyy, Ed., Lecture Notes in Civil Engineering, vol. 100, 2021, pp. 385392.

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    O. Voznyak , N. Spodyniuk , Yu. Yurkevych , I. Sukholova , and O. Dovbush , “Enhancing efficiency of air distribution by swirled-compact air jets in the mine using the heat utilizators,” Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu, vol. 5, no. 179, pp. 8994, 2020.

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    P. Kapalo , M. Sulewska , and M. Adamski , “Examining the Interdependence of the various parameters of indoor air”, in Proceedings of EcoComfort 2020, Lviv, Ukraine, September 16–18, 2020, Z. Blikharskyy, Ed., Lecture Notes in Civil Engineering, vol. 100, 2021, pp. 150157.

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    Z. Poorova , M. Salem Alhosni , P. Kapalo , and Z. Vranayova , “Change of temperature in the room with the living wall,” IOP Conf. Ser. Mater. Sci. Eng., vol. 603, no. 5, 2019, Paper no. 052063.

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    P. Kapalo , S. Vilcekova , and O. Voznyak , “Using experimental measurements the concentrations of carbon dioxide for determining the intensity of ventilation in the rooms”, Chem. Eng. Trans., vol. 39, pp. 17891794, 2014.

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    F. Vranay and Z. Vranayova , “Influence of heat source choice on building energy certification process and CO2 emissions,” in Proceedings of CEE 2019, Lviv, Ukraine, September 11–13, 2019, Blikharskyy Z., Koszelnik P., Mesaros P. Eds, Lecture Notes in Civil Engineering, vol. 47, 2020, pp. 541548.

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    P. Kapalo , L. Vojtasko , D. Vasilisin , F. Domnita , C. Bacotiu , R. Kandrac , and M. Batorova , “Investigation of the influence of the level of physical activity on the air exchange requirements for a gym,” Building Environ., vol. 204, 2021, Paper no. 108123.

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    N. Spodyniuk , O. Voznyak , I. Sukholova , O. Dovbush , M. Kasynets , and O. Datsko , “Diagnosis of damage to the ventilation system,” Diagnostyka, vol. 22, no. 3, pp. 9199, 2021.

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    V. Zhelykh , Y. Yurkevych , O. Voznyak , I. Sukholova , and O. Dovbush , “Enhancing of energetic and economic efficiency of air distribution by swirled-compact air jets,” Prod. Eng. Arch., vol. 27, no. 3, pp. 171175, 2021.

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    I. Bullova , P. Kapalo , and D. Katunsky , “Quantification of air rate change by selected methods in a typical apartment building,” Buildings, vol. 11, no. 4, pp. 120, 2021.

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    P. Kapalo and N. Spodyniuk , “Effect of the variable air volume on energy consumption - Case study,” IOP Conf. Ser. Mater. Sci. Eng., vol. 415, no. 1, 2018, Paper no. 012027.

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    O. Voznyak , Yu. Yurkevych , I. Sukholova , O. Dovbush , and M. Kasynets , “Method of the boiler room ventilation system efficiency experimental determination,” Theor. Building Pract., vol. 2, no. 2, pp. 8491, 2020.

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    V. Gorobets , V. Trokhaniak , M. Masiuk , N. Spodyniuk , O. Blesnyuk , and Ye. Marchishina , “CFD modeling of aerodynamic flow in a wind turbine with vertical rotational axis and wind flow concentrator,” Agric. Eng., vol. 64, pр. 159166, 2021.

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Senior editors

Editor(s)-in-Chief: Iványi, Amália

Editor(s)-in-Chief: Iványi, Péter

 

Scientific Secretary

Miklós M. Iványi

Editorial Board

  • Bálint Bachmann (Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Jeno Balogh (Department of Civil Engineering Technology, Metropolitan State University of Denver, Denver, Colorado, USA)
  • Radu Bancila (Department of Geotechnical Engineering and Terrestrial Communications Ways, Faculty of Civil Engineering and Architecture, “Politehnica” University Timisoara, Romania)
  • Charalambos C. Baniotopolous (Department of Civil Engineering, Chair of Sustainable Energy Systems, Director of Resilience Centre, School of Engineering, University of Birmingham, U.K.)
  • Oszkar Biro (Graz University of Technology, Institute of Fundamentals and Theory in Electrical Engineering, Austria)
  • Ágnes Borsos (Institute of Architecture, Department of Interior, Applied and Creative Design, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Matteo Bruggi (Dipartimento di Ingegneria Civile e Ambientale, Politecnico di Milano, Italy)
  • Petra Bujňáková (Department of Structures and Bridges, Faculty of Civil Engineering, University of Žilina, Slovakia)
  • Anikó Borbála Csébfalvi (Department of Civil Engineering, Institute of Smart Technology and Engineering, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Mirjana S. Devetaković (Faculty of Architecture, University of Belgrade, Serbia)
  • Szabolcs Fischer (Department of Transport Infrastructure and Water Resources Engineering, Faculty of Architerture, Civil Engineering and Transport Sciences Széchenyi István University, Győr, Hungary)
  • Radomir Folic (Department of Civil Engineering, Faculty of Technical Sciences, University of Novi Sad Serbia)
  • Jana Frankovská (Department of Geotechnics, Faculty of Civil Engineering, Slovak University of Technology in Bratislava, Slovakia)
  • János Gyergyák (Department of Architecture and Urban Planning, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Kay Hameyer (Chair in Electromagnetic Energy Conversion, Institute of Electrical Machines, Faculty of Electrical Engineering and Information Technology, RWTH Aachen University, Germany)
  • Elena Helerea (Dept. of Electrical Engineering and Applied Physics, Faculty of Electrical Engineering and Computer Science, Transilvania University of Brasov, Romania)
  • Ákos Hutter (Department of Architecture and Urban Planning, Institute of Architecture, Faculty of Engineering and Information Technolgy, University of Pécs, Hungary)
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  • Teuta Jashari-Kajtazi (Department of Architecture, Faculty of Civil Engineering and Architecture, University of Prishtina, Kosovo)
  • Róbert Kersner (Department of Technical Informatics, Institute of Information and Electrical Technology, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Rita Kiss  (Biomechanical Cooperation Center, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Budapest, Hungary)
  • István Kistelegdi  (Department of Building Structures and Energy Design, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Stanislav Kmeť (President of University Science Park TECHNICOM, Technical University of Kosice, Slovakia)
  • Imre Kocsis  (Department of Basic Engineering Research, Faculty of Engineering, University of Debrecen, Hungary)
  • László T. Kóczy (Department of Information Sciences, Faculty of Mechanical Engineering, Informatics and Electrical Engineering, University of Győr, Hungary)
  • Dražan Kozak (Faculty of Mechanical Engineering, Josip Juraj Strossmayer University of Osijek, Croatia)
  • György L. Kovács (Department of Technical Informatics, Institute of Information and Electrical Technology, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Balázs Géza Kövesdi (Department of Structural Engineering, Faculty of Civil Engineering, Budapest University of Engineering and Economics, Budapest, Hungary)
  • Tomáš Krejčí (Department of Mechanics, Faculty of Civil Engineering, Czech Technical University in Prague, Czech Republic)
  • Jaroslav Kruis (Department of Mechanics, Faculty of Civil Engineering, Czech Technical University in Prague, Czech Republic)
  • Miklós Kuczmann (Department of Automations, Faculty of Mechanical Engineering, Informatics and Electrical Engineering, Széchenyi István University, Győr, Hungary)
  • Tibor Kukai (Department of Engineering Studies, Institute of Smart Technology and Engineering, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Maria Jesus Lamela-Rey (Departamento de Construcción e Ingeniería de Fabricación, University of Oviedo, Spain)
  • János Lógó  (Department of Structural Mechanics, Faculty of Civil Engineering, Budapest University of Technology and Economics, Hungary)
  • Carmen Mihaela Lungoci (Faculty of Electrical Engineering and Computer Science, Universitatea Transilvania Brasov, Romania)
  • Frédéric Magoulés (Department of Mathematics and Informatics for Complex Systems, Centrale Supélec, Université Paris Saclay, France)
  • Gabriella Medvegy (Department of Interior, Applied and Creative Design, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Tamás Molnár (Department of Visual Studies, Institute of Architecture, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Ferenc Orbán (Department of Mechanical Engineering, Institute of Smart Technology and Engineering, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Zoltán Orbán (Department of Civil Engineering, Institute of Smart Technology and Engineering, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Dmitrii Rachinskii (Department of Mathematical Sciences, The University of Texas at Dallas, Texas, USA)
  • Chro Radha (Chro Ali Hamaradha) (Sulaimani Polytechnic University, Technical College of Engineering, Department of City Planning, Kurdistan Region, Iraq)
  • Maurizio Repetto (Department of Energy “Galileo Ferraris”, Politecnico di Torino, Italy)
  • Zoltán Sári (Department of Technical Informatics, Institute of Information and Electrical Technology, Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Grzegorz Sierpiński (Department of Transport Systems and Traffic Engineering, Faculty of Transport, Silesian University of Technology, Katowice, Poland)
  • Zoltán Siménfalvi (Institute of Energy and Chemical Machinery, Faculty of Mechanical Engineering and Informatics, University of Miskolc, Hungary)
  • Andrej Šoltész (Department of Hydrology, Faculty of Civil Engineering, Slovak University of Technology in Bratislava, Slovakia)
  • Zsolt Szabó (Faculty of Information Technology and Bionics, Pázmány Péter Catholic University, Hungary)
  • Mykola Sysyn (Chair of Planning and Design of Railway Infrastructure, Institute of Railway Systems and Public Transport, Technical University of Dresden, Germany)
  • András Timár (Faculty of Engineering and Information Technology, University of Pécs, Hungary)
  • Barry H. V. Topping (Heriot-Watt University, UK, Faculty of Engineering and Information Technology, University of Pécs, Hungary)

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2023  
Scopus  
CiteScore 1.5
CiteScore rank Q3 (Civil and Structural Engineering)
SNIP 0.849
Scimago  
SJR index 0.288
SJR Q rank Q3

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