Preview

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

Advanced search

ENERGY EFFICIENCY OF HEAT SUPPLY SOURCES IN LOW-RISE CONSTRUCTION

https://doi.org/10.31675/1607-1859-2018-20-6-160-166

Abstract

Purpose: The aim of this paper is to address the issues of technical regulation, energy saving and energy efficiency in low-rise construction. Methodology: This study utilizes economic calculations confirming the effectiveness of energy saving and efficiency in low-rise construction. Research findings: The use of analyzed technologies and equipment significantly reduces the utility costs providing more comfortable conditions for residents. Savings due to decentralized heating systems and hot water are calculated. Savings due to ventilation systems allow reducing the utility costs as well as the use of environmentally friendly heating sources and up-to-date ventilation sources. Practical implications: These developments can be used to invest low-rise buildings construction projects.

About the Authors

N. V. Gusakova
Tomsk State University of Architecture and Building.
Russian Federation

Senior Lecturer.

2, Solyanaya Sq., 634003, Tomsk.



K. E. Filushina
Tomsk State University of Architecture and Building.
Russian Federation

PhD, A/Professor.

2, Solyanaya Sq., 634003, Tomsk.



A. A. Yarlakabov
Tomsk State University of Architecture and Building.
Russian Federation

Student.

2, Solyanaya Sq., 634003, Tomsk.



References

1. Filyushina K.E., Gusakova N.V., Gusakov A.M., Minayev N.N., Dobrynina O.I., Yarlakabov A.A. Razrabotka teoreticheskoy modeli razvitiya maloetazhnogo zhilishchnogo stroitel'stva v Rossii [Theoretical model of low-rise construction in Russia]. Ekonomika i predprinimatel'stvo. 2017. No. 5-1 (82). Pp. 792–796. (rus)

2. Vasil'yev G.P., Shilkin N.V. Ispol'zovaniye nizkopotentsial'noy teplovoy energii zemli v teplonasosnykh sistemakh [Use of low potential thermal energy of the earth in heat pump systems]. AVOK. 2003. No. 2. Pp. 52–60. (rus)

3. Livchak V.I. Standart STO NOP 2.1-2014 kak prakticheskaya realizatsiya povysheniya energoeffektivnosti zdanii [STO NOP Standard 2.1–2014 as a practical implementation of energy efficiency improvement of buildings]. Energosberezhenie. 2015. No. 2. Pp. 30–34. (rus)

4. Postanovleniye Pravitel'stva RF N 275 O vnesenii izmeneniy v nekotoryye akty Pravitel'stva Rossiyskoy Federatsii po voprosam ustanovleniya pervoocherednykh trebovaniy energeticheskoy effektivnosti dlya zdaniy, stroyeniy, sooruzheniy [Government Decree on Amendments to Certain Acts of the Government of the Russian Federation on the Establishment of Priority Energy Efficiency Requirements for Buildings]. Available: http://government.ru/docs/26778/ (rus)

5. Bashmakov I.A. Povysheniye energoeffektivnosti v sistemakh teplosnabzheniya [Improving energy efficiency in heating systems]. Energosberezhenie. 2010. No. 2. Pp. 46–51. (rus)

6. Shilkin N.V. Opyt realizatsii sistemy otopleniya na baze teplonasosnykh ustanovok v kottedzhnom poselke [Experience in heating system implementation based on heat pump installations in cottage settlement]. AVOK. 2010. No. 2. Pp. 22–31. (rus)

7. Gusakova N., Minaev N., Filushina K., Gusakov A. Approaches to optimum selection of space-planning and structural solutions of low-rise buildings. AIP Conference Proceedings. 2017. V. 1800.


Review

For citations:


Gusakova N.V., Filushina K.E., Yarlakabov A.A. ENERGY EFFICIENCY OF HEAT SUPPLY SOURCES IN LOW-RISE CONSTRUCTION. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2018;(6):160-166. (In Russ.) https://doi.org/10.31675/1607-1859-2018-20-6-160-166

Views: 659


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


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