SIMULATION OF HEAT TRANSFER IN THE NODE OF THE ADJACENT BALCONY SLAB TO THE OUTER WALL

Authors

  • Georgiy Ratushniak Vinnytsia National Technical University
  • Oksana Horiun Vinnytsia National Technical University
  • Vyacheslav Datsyuk Vinnytsia National Technical University

DOI:

https://doi.org/10.31649/2311-1429-2020-1-80-86

Keywords:

heat losses, exterior walls, thermal modernization, energy efficiency, junction units, heat transfer coefficient

Abstract

The linear coefficients of heat transfer of the units of the adjacent balcony slab to the outer walls, which is recommended by the existing regulatory base, are analyzed. It has been found that the existing design of the junction site is not sufficiently energy efficient. To increase the thermal resistance of the node adjacent balcony plate proposed an improved method of its structural implementation, which is protected by a patent for utility model. Reduction of heat losses is achieved by arranging a layer of foam insulation in the place where the wall adjoins the balcony slab. The energy efficiency analysis of the proposed structural implementation of the junction of the adjacent balcony slab, as a "bridge of cold" was performed according to the results of mathematical modeling in the software program An Therm. According to the simulation results, the temperature distribution at the junction point of the balcony slab is determined. The linear coefficient of heat transfer of the recommended node of the adjacent balcony slab is determined, the value of which is greater than in the existing structures. The results obtained confirm the feasibility of the implementation of the proposed structural implementation of the junction of the adjacent balcony slab, in order to improve the energy efficiency of the thermal insulation shell of the building.

Author Biographies

Georgiy Ratushniak, Vinnytsia National Technical University

Candidate of Technical Sciences, Professor, Head of the Chair of Power Engineering and Gas Supply

Oksana Horiun, Vinnytsia National Technical University

Department of Building Heating and Gas Supply

Vyacheslav Datsyuk, Vinnytsia National Technical University

student

References

Zakon Ukrainy "Pro enerhetychnu efektyvnist budivel" [Elektronnyi resurs]: za stanom na 2 chervnia 2017 r. / Verkhovna Rada Ukrainy.– Ofits. vyd.–K.: Vidomosti Verkhovnoi Rady, 2017.–204s.

DSTU B A.2.2-12:2015 «Enerhetychna efektyvnist budivel. Metod rozrakhunku enerhospozhyvannia pry opalenni, okholodzhenni, ventyliatsii, osvitlenni ta hariachomu vodopostachanni» [Chynnyi vid 01.01.2016]. Kyiv, 2015. 140 s. (Informatsiia ta dokumentatsiia).

DSTU ISO 10211-2:2005 Teploprovidni vkliuchennia v budivelnykh konstruktsiiakh [Chynnyi vid 2005-12-02]. Kyiv, 2005. 30 s. (Informatsiia ta dokumentatsiia).

Fareniuk H. H. Osnovy zabezpechennia enerhoefektyvnosti budynkiv ta teplovoi nadiinosti ohorodzhuvalnykh konstruktsii.: monohrafiia. K.: Hama-Prynt, 2009.-137 s.

Sanytskyi M.A., Pozniak O.R., Marushchak U.D. Enerhozberihaiuchi tekhnolohii v budivnytstvi: navch. posibnyk. Lviv: Vydavnytstvo Lvivskoi politekhniky: 2013. – 236 s.

DSTU B V.2.6-189:2013 Metody vyboru teploizoliatsiinoho materialu dlia uteplennia budivel [chynnyi vid 01.01.2014]. Kyiv, 2014. 51 s. (Informatsiia ta dokumentatsiia).

Ratushniak H. S. Horiun O. Yu. Vykorystannia innovatsiinykh teploizoliuiuchykh materialiv dlia zmenshennia teplovtrat kriz "mistky kholodu" v budivli. 2019 rik : materialy XLVIII Naukovo-tekhnichnoi konferentsii fakultetu budivnytstva, teploenerhetyky ta hazopostachannia, 23 berezn. 2019 r. Vinnytsia. S. 3. Rezhym dostupu: https://conferences.vntu.edu.ua/index.php/egeu/egeu2019/paper/viewFile/8245/6910

Sposib ulashtuvannia konstruktyvnoho vuzla prymykannia zasklenykh balkoniv. Patent na korysnu model. 140672. Ukraina: MPK E04G23/00/ H. S. Ratushniak, A. M. Ocheretnyi, O. Yu. Horiun. – NV 201908045: zaiavl. 12.07.2019: opubl. 10.03.2020, Biul.№5.-3s.

Ratushniak H. S. Modeliuvannia teplovoho rezhymu vuzla prymykannia balkonnoi plyty z uteplenniam/ H. S. Ratushniak, O.Iu. Horiun // Suchasni tekhnolohii, materialy i konstruktsii v budivnytstvi – 2019.–№2.

Prohramne zabezpechennia An Therm. Rezhym dostupu: http://antherm.eu/antherm/Beispiele.htm.

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Published

2020-12-17

How to Cite

[1]
G. Ratushniak, O. Horiun, and V. Datsyuk, “SIMULATION OF HEAT TRANSFER IN THE NODE OF THE ADJACENT BALCONY SLAB TO THE OUTER WALL”, СучТехнБудів, vol. 28, no. 1, pp. 80–86, Dec. 2020.

Issue

Section

MODELING OF BUILDING PRODUCTION

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