Preview

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

Advanced search

HEAT CONSUMPTION IN ACADEMIC INSTITUTIONS

https://doi.org/10.31675/1607-1859-2020-22-6-132-140

Abstract

The main purpose of the work is to estimate the influence of the intermittent heat supply from internal sources on inside air temperature in academic institutions. The functioning of academic institutions during the heating period is periodic. This is the reason for the unstable heat consumption. The periodic presence of people in classrooms leads to the intermittent heat supply. Heat consumption is averaged either over the area or the time. This makes it difficult to estimate the consumption on the thermal conditions in academic institutions. The paper gives a comparative analysis of calculating methods of the heat consumption. The temperature rise is determined theoretically allowing for the intermittent heat supply. Field studies are carried out of the temperature conditions in the classroom. The temperature increase and the heat consumption are determined herein.

About the Authors

A. N. Belous
Donbass National Academy of Civil Engineering and Architecture
Ukraine

Aleksei N. Belous, PhD, A/Professor

2, Derzhavin Str., 86123, Makiivka, Donetsk People's Republic



M. V. Overchenko
Donbass National Academy of Civil Engineering and Architecture
Ukraine

Mira V. Overchenko, Assistant Lecturer

2, Derzhavin Str., 86123, Makiivka, Donetsk People's Republic



References

1. Vlasov O.E. Teplotekhnicheskii raschet ograzhdayushchikh konstruktsii [Thermal analysis of building walling systems]. Moscow, Leningrad: Gosstroiizdat, 1933. 46 p. (rus)

2. Machinskii V.D. Teplotekhnicheskie osnovy grazhdanskogo stroitel'stva [Thermal engineering in civil engineering]. Moscow: Gosstroiizdat, 1933. 312 p. (rus)

3. Fokin K.F. Stroitel'naya teplotekhnika ograzhdayushchikh chastei zdanii [Thermal engineering of building walling systems], 5th ed., Yu.A. Tabunshchikov, V.G. Gagarin, Eds. Moscow: AVOK-PRESS, 2006. 256 p. (rus)

4. Shklover A.M. Teploperedacha pri periodicheskikh teplovykh vozdeistviyakh [Heat transfer under periodic thermal influence]. Moscow, Leningrad: Gosenergoizdat, 1961. 160 p. (rus)

5. Shklover A.M., Vasil'ev B.F., Ushkov F.V. Osnovy stroitel'noi teplotekhniki [Fundamentals of building heat engineering]. Moscow: Gosstroiizdat, 1956. 350 p. (rus)

6. Lipko V.I., Lankovich S.V. Povyshenie energoekonomicheskoi effektivnosti sistem otopleniya i ventilyatsii zdanii s tekhnologicheskimi cherdakami [Energy and economic efficiency improvement of heating and ventilation systems in buildings with engineering attics]. In: Aktual'nye problemy arkhitektury Belorusskogo Podvin'ya i sopredel'nykh regionov: sb. nauch. rabot Mezhdunar. nauch.-prakt. konf. k 50-letiyu Polots. gos. un-ta, Novopolotsk, 18–19 okt. 2018 g. (Proc. Int. Sci. Conf. ‘Relevant Problems of Architecture of Belorusskoe Podvin'e and Related Regions’). Novopolotsk, 2018. 292 p.(rus)

7. Samarin O.D. Vybor optimal'nogo sochetaniya energosberegayushchikh meropriyatii pri rekonstruktsii zdanii obrazovatel'nykh uchrezhdenii [Optimal combination of energy-saving measures in reconstruction of academic institutions]. Zhilishchnoe stroitel'stvo. 2015. No. 2. Pp. 25–28. (rus)

8. Korolev A.T. Issledovanie teplovogo rezhima zdanii [Thermal conditions of buildings]. Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta. 2013. Pp. 120–121. (rus)

9. Turgay Coşkun, Cihan Turhan, Zeynep Durmuş Arsan, Gülden Gökçen Akkurt. The importance of internal heat gains for building cooling desig. Journal of Thermal Engineering. 2017 V. 3. No. 1. Pp. 1060–1064.

10. Dariusz Suszanowicz. Internal heat gain from different light sources in the building lighting systems. E3S Web of Conferences. 2017. V. 19. P. 01024.

11. Hyemi Kim, Kyung-soon Park, Hwan-yong Kim, Young-hak Song. Study on variation of internal heat gain in office buildings by chronology. Energies. 2018. V. 11. No. 4. P. 1013.

12. Belous A.N., Overchenko M.V. Analiz faktorov, vliyayushchikh na vybor sistem utepleniya obrazovatel'nykh uchrezhdenii [Selection of insulation systems in educational institutions]. Stroitel'nye materialy i izdeliya. 2018. V. 2. No. 4. Pp. 17–23. (rus)

13. Belous A.N., Overchenko M.V., Belous O.E. Perenosnoi teplotekhnicheskii izmeritel''nyi kompleks [Portable heat metering system design]. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta – Journal of Construction and Architecture. 2020. V. 22. No. 1. Pp. 140–151. (rus)


Review

For citations:


Belous A.N., Overchenko M.V. HEAT CONSUMPTION IN ACADEMIC INSTITUTIONS. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2020;22(6):132-140. (In Russ.) https://doi.org/10.31675/1607-1859-2020-22-6-132-140

Views: 487


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


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