Preview

Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture

Advanced search

WALLING THERMAL PROPERTIES INFLUENCED BY HEAT-STRESSED ELEMENTS IN EXTERNAL CORNER AREA

https://doi.org/10.31675/1607-1859-2019-21-5-127-137

Abstract

It is known that heat-stressed elements greatly affect the thermal properties of walling and contribute to the heat losses of a building. Heat-stressed elements decrease the temperature on the inner walling surface adjacent to the external corners. In addition to increasing heat losses, heat-stressed elements increase the condensation on the inner walling surface leading to mold appearance. This is one of the reasons that shows that the modeling of heat-stressed elements is a very important design stage. The article discusses the effect from these elements on thermal properties of multilayer walling in the external corner of a building. Using the ANSYS software package, the influence of heat-stressed elements on the heat transfer processes is modeled in the external corner area. A quantitative assessment of the thermal state of typical walling fragments under extreme heat-transfer conditions is given. The obtained research results can be used to increase the temperature in the area of heat-stressed elements and reduce their negative impact.

About the Authors

A. N. Kozlobrodov
Tomsk State University of Architecture and Building
Russian Federation
Aleksandr N. Kozlobrodov, DSc, Professor


E. A. Ivanova
Tomsk State University of Architecture and Building
Russian Federation
Elena A. Ivanova, Senior Lecturer


References

1. Gagarin V.G., Dmitriev K.A. Uchet teplotexnicheskih neodnorodnostey pri ocenke teplozashity ograzdaushih konstrukciy v Rossii i evropeyskih stranah [Consideration of heat engineering heterogeneities in the assessment of thermal protection of wallings in Russia and Europe]. Stroitelnye materialy. 2013. No. 6. Pp. 14–16. (rus)

2. Kotti S., Teli D., James P.A.B. Quantifying thermal bridge effects and assessing retrofit solutions in a greek residential building. Procedia Environmental Sciences. 2017. No. 38. Pp. 306–313.

3. Samarin O.D. Texniko-ekonomicheskoe obosnovanie termomodernizacii gilyh zdaniy v sovremennyh usloviyh [Feasibility study for thermal modernization of residential buildings in modern conditions]. Zylishnoe stroitelstvo. 2016. No. 5. Pp. 31–35. (rus)

4. Shukina T.V. Issledovanie teplofizicheskih xarakteristik energoaktivnyh naruznyh ograzdeniy [Thermophysical characteristics of energy-active outdoor walling]. Privolzskiy nauchnyi zurnal. 2012. No. 4. Pp. 90–95. (rus)

5. Nikonova E.V., Vechtomov P.O., Ladnyh I.A. Tehniko-ekonomicheskiy pokazateli ograzdaushih konstrukciy dly maloetaznogo stroitel'stva [Technical and economic indicators of walling for low-rise construction]. Zylishnoe stroitelstvo. 2018. No. 7. Pp. 47–50. (rus)

6. Mourao J., Gomes R., Matias L., Niza S. Combining embodied and operational energy in buildings refurbishment assessment. Energy and Buildings. 2019. No. 197. Pp. 34–46.

7. Brigger M., Bacher P., Wittchen Kim B. A hybrid modelling method for improving estimates of the average energy-saving potential of a building stock. Energy and Buildings. 2019. No. 199. Pp. 257–296.

8. Hamburg A., Kalamees T. How well are energy performance objectives being achieved in renovated apartment buildings in Estonia? Energy and Buildings. 2019. No. 199. Pp. 332–341.

9. Tzoulis T., Kontoleon K.J. Thermal behavior of concrete walls around all cardinal orientations and optimal thickness of insulation from an economic point of view. Procedia Environmental Sciences. 2017. No. 38. Pp. 381–388.

10. Sheps R.A., Shukina T.V. Teplozashitnye svoystva ograzdeniy s uchetom prognoziruemyh usloviy ekspluatacii [Thermal protective properties of walling in predicted operating conditions]. Zylishnoe stroitelstvo. 2015. No. 7. Pp. 29–31. (rus)

11. Garay R., Arregi B., Elguezabal P. Experimental thermal performance assessment of a prefabricated external insulatiuon system for building retrofitting. Procedia Environmental Sciences. 2017. No. 38. Pp. 155–161.

12. Nazirov R.A., Podkovyrin V.S., Podkovyrina K.A. Opredelenie temperatury vnutrenney poverhnosti v naruznyh uglah zdaniy [The inner surface temperature in outer corners of building]. Izvestiy vuzov. Stroitel'stvo. 2016. No. 10–11. Pp. 106–111. (rus)

13. Danilov N.D., Shadrin V.U., Pavlov V.N. Prognozirovanie temperaturnogo rezima uglovyh soedineniy naruznyh ograzdaushik konstrukciy [Prediction of temperature regime of angular joints of walling]. Promyshlennoe i grazdanskoe stroitel'stvo. 2010. No. 4. Pp. 20–21. (rus)

14. Samarin O.D. Ocenka minimal'nogo znacheniya temperatury v naruznom uglu zdaniya pri ego skruglenii [Assessment of minimum temperature in the outer rounded corner]. Promyshlennoe i grazdanskoe stroitel'stvo. 2014. No. 8. Pp. 34–36. (rus)

15. Cvetkov N.A., Ivanova E.A., Kozlobrodov A.N. Monolitnaya naruznaya stena dly maloetaznogo zdaniya [Monolithic exterior wall for low-rise building]. Patent Russ. Fed. N 145917. 2014. 6 p. (rus)

16. Kaplun A.B., Morozov E.M., Olfer'eva M.A. ANSYS v rukakh inzhenera: Prakticheskoe rukovodstvo [ANSYS in the hands of engineer: practical guide]. Moscow: Editorial URSS, 2003. 272 p. (rus)

17. Basov K.A. ANSYS v primerakh i zadachakh [ANSYS examples and problems]. Moscow: Komp'yuter Press, 2002. 224 p. (rus)

18. Kozlobrodov A.N., Ivanova E.A., Golovko A.V. Issledovanie vliyaniya termovkladyshei na teplovoe sostoyanie teplonapryazennyh elementov mnogosloynyh ograzdaushih konstrukciy [Influence of thermal liners on thermal state of heat-stressed elements of multilayer walling]. Vestnik of Tomsk State University of Architecture and Building. 2018. No. 1. Pp. 133–139. (rus)


Review

For citations:


Kozlobrodov A.N., Ivanova E.A. WALLING THERMAL PROPERTIES INFLUENCED BY HEAT-STRESSED ELEMENTS IN EXTERNAL CORNER AREA. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2019;21(5):127-137. (In Russ.) https://doi.org/10.31675/1607-1859-2019-21-5-127-137

Views: 534


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1607-1859 (Print)
ISSN 2310-0044 (Online)