EFFICIENCY OF OPERATION OF EXTERNAL THERMAL INSULATION SYSTEMS FROM THE POSITION OF THE EXPEDIENCY OF REPAIR WORK

Authors

  • Meneylyuk O. Odesa State Academy of Civil Engineering and Architecture
  • Babii I. Odesa State Academy of Civil Engineering and Architecture
  • Kucherenko L. Vinnytsia National Technical University image/svg+xml
  • Bichev I. Odesa State Academy of Civil Engineering and Architecture

DOI:

https://doi.org/10.31650/2786-6696-2025-12-129-135

Keywords:

enclosing structures, transparent facade systems, installation cost, selection criteria, expert evaluation method.

Abstract

As a result of the research, it was found that in the construction industry, when insulating external enclosing structures, in most cases, their effective operation over time takes a special place. In modern conditions, the issue of obtaining an economic effect from the operation of insulated buildings is of great importance. Insulation of building facades is carried out mainly by external thermal insulation systems with plaster finishing, and to a lesser extent, systems are used in which cladding is carried out by industrial elements with a ventilated air layer. For thermal insulation systems, it is important that the level of operational efficiency is not lower than the calculated one or is maintained within acceptable limits throughout the entire service life. It was established that when assessing economic efficiency according to the first option for short-lived technical systems, the condition must be met under which the cost of the new system would not exceed the cost of the outdated one. Since thermal insulation systems are structures of long-term operation, such a condition is difficult to fulfill due to the fact that the replacement of the layers of the system, as a rule, occurs after a certain specified time, which can reach up to 30 years. In this case, it is necessary to fulfill the requirement that the ratio of the cost of a new structure with the costs of performing the replacement to the designated service life would be less than the ratio of the cost of an outdated structure with the costs of its operation to the actual service life. It has been established that in order to make a rational decision on the further operation of the thermal insulation system, along with traditional methods of assessing the technical condition and developing recommendations for its further operation, it is necessary to perform an assessment of the economic effect when adopting a particular method of repair or restoration.

References

[1] Zhilishchnyy fond Ukrainy v 2017 godu. Statisticheskiy byulleten'. Gosudarstvennyy komitet statistiki. Kiyev, 2017.

[2] G.G. Farenyuk, G.M. Ageyeva, "Osobennosti otsenki energoeffektivnosti proyektov zhilykh domov", Energosberezheniye. Energetika. Energoaudit, no. 5 (75), pp. 13-17, 2010.

[3] DBN V.2.6-31:2021. Teplovaya izolyatsiya i energoeffektivnost' postroyek. Kiyev: Ministerstvo regional'nogo razvitiya, stroitel'stva i zhilishchno-kommunal'nogo khozyaystva Ukrainy, 2022.

[4] A.I. Meneylyuk, I.S. Chernov, L.V. Lobakova, "Vybor effektivnykh modeley realizatsii proyektov v usloviyakh izmenyayushcheysya finansovoy situatsii", Vestnik Natsional'nogo tekhnicheskogo universiteta KHPI. Khar'kov, 2014, pp. 71-75.

[5] Zeljko Kos, Ihor Babii, Iryna Grynyova, Oleksii Nikiforov, "Ensuring the Energy Efficiency of Buildings through the Simulation of Structural, Organizational, and Technological Solutions for Facade Insulation", MDPI Journals «Applied Sciences», vol. 14, Issue 2, pp. 801, 2024.

[6] I. Babii, I. Bichev, I. Chernov, N. Pisarchuk, L. Kucherenko, "Analiz faktorov influencing the integrity insulated facades of houses and search for methods of their repair", Sovremennoye stroitel'stvo i arkhitektura, vyp. no. 8, pp. 110-119, 2024.

[7] A.P. Siciliano, X. Zhao, R. Fedderwitz, K. Ramakrishnan, J. Dai, A. Gong, J.Y. Zhu, J. Kośny, L. Hu, "Sustainable wood-waste-based thermal insulation foam for building energy efficiency", Buildings, 13, 840, 2023. https://doi.org/10.3390/buildings13040840.

[8] G. Farenyuk, "The determination of the thermal reliability criterion for building envelope structures", Technical Journal, vol. 13, no. 2, pp. 129-133, 2019.

[9] I.M. Babiy, A.I. Kaminskaya-Pinayeva, "Optimizatsiya proyekta utepleniya doma sistemoy ventiliruyemogo fasada na osnove eksperimental'no-statisticheskogo modelirovaniya", Sovremennyye tekhnologii, materialy i konstruktsii v stroitel'stve, no. 2(21), pp. 25-31, 2016.

[10] V.V. Chernyavskiy, O.I. Yurin, G.G. Farenyuk, "Teploizolyatsionno-otdelochnyye fasadnyye sistemy kak sredstvo termomodernizatsii zhilishchnogo fonda Ukrainy", Resursno-ekonomnyye materialy, konstruktsii, zdaniya i sooruzheniya, vyp. 17, pp. 365–372, 2008.

[11] O.I. Meneiliuk, I.M. Babii, H.D. Bochorishvili, K.I. Bochevar, Materialy ta tekhnolohii izoliatsiinykh robit v budivnytstvi: monohrafiia. Odesa: Vydavnytstvo FOP Bondarenko M.O., 2020.

[12] V. Sokha, "Naukovo-metodychni osnovy pidvyshchennia ekspluatatsiinoi efektyvnosti tekhnolohichnykh system teploizoliatsii fasadiv", avtoref. dis. na zdobuttya nauk. stupenya d-ra tekhn. nauk: 05.23.05, Odes'ka derzhavna akademіya budіvnictva ta arhіtekturi. Odessa, 2004.

[13] G.G. Farenyuk, "Klassifikatsiya i struktura teplovykh otkazov izolyatsionnoy obolochki zhilykh i obshchestvennykh zdaniy", Stroitel'stvo Ukrainy, no. 10, pp. 32 – 34, 2008.

[14] V.A. Pashinskiy, Osnovy teorii nadezhnosti zdaniy i sooruzheniy: uchebnoye posobiye dlya studentov stroitel'nykh spetsial'nostey vsekh form obucheniya. Kirovograd: KNTU, 2016.

[15] V.I. Solomko, V.L. Gorobets, V.I. Borshchev, "Otsenka tekhnicheskogo sostoyaniya zhelezobetonnykh proletnykh stroyeniy mostov i opredeleniye ob"yema i struktury ikh tekushchego soderzhaniya", Vestnik Dnepropetrovsk. nats. univer. zhelezn. tr-tu im. ak. V. Lazaryano, vyp. 6, pp. 180-186, 2005.

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Published

2025-06-28

Issue

Section

Technology and organization of construction production

How to Cite

EFFICIENCY OF OPERATION OF EXTERNAL THERMAL INSULATION SYSTEMS FROM THE POSITION OF THE EXPEDIENCY OF REPAIR WORK. (2025). MODERN CONSTRUCTION AND ARCHITECTURE, 12, 129-135. https://doi.org/10.31650/2786-6696-2025-12-129-135