SYSTEMATIZATION OF FACTORS AFFECTING THE CHOICE OF ORGANIZATIONAL AND TECHNICAL SOLUTIONS FOR SOUND INSULATION OF PREMISES DURING MAJOR REPAIRS OF APARTMENT BUILDINGS
Abstract and keywords
Abstract (English):
Currently, from 30 to 50% (and in large cities and more) of the population is under the influence of excess acoustic impact, which significantly affects the life expectancy of citizens. About 45% of the population constantly experience a feeling of discomfort from the effects of increased noise. As a result, the issue of protecting urban residents from noise caused by various sources is a very acute problem. This is, first of all, the noise from construction and road repair work, the noise of road and rail transport, and much more. However, during the overhaul of apartment buildings, insufficient attention is paid to sound insulation issues. The article presents the factors affecting the noise level in the premises. Modern soundproofing materials are described. The requirements for sound insulation of premises and the regulatory framework have been systematized. A novelty is the proposal to automate the selection of organizational and technical solutions for soundproofing the premises of apartment buildings during major repairs.

Keywords:
construction, soundproofing, noise, overhaul
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References

1. Oparina, L.A. (2015) Problems of implementation of requirements for energy efficiency in the conditions of the program of capital repairs of apartment buildings, Theory and practice of technical, organizational, technological and economic solutions: collection of scientific works. Ivanovo, pp. 53-58 (in Russian).

2. Oparina, L.A. & Deryabkina, E.S. (2020) The current state and results of the implementation of the regional program for the overhaul of the Ivanovo region, Theory and practice of technical, organizational, technological and economic solutions: collection of scientific works. Ivanovo, (9), pp. 17-25 (in Russian).

3. Oparina, L.A, & Polishchuk, E.I. (2020) The current state and results of the implementation of the regional program for the overhaul of the Ivanovo region, Theory and practice of technical, organizational, technological and economic solutions: collection of scientific works. Ivanovo, (9), pp. 8-17 (in Russian).

4. Kulbachevsky, A.O. (ed.) (2018) Report «On the state of the environment in the city of Moscow in 2017», M.: DPiOOS (in Russian).

5. Shubin, I.L., Antonov, A.I., Ledenev, V.I., Matveeva, I.V. & Merkusheva, N.P. (2020) Assessment of the noise regime in the premises of enterprises built into residential buildings, Housing construction, (6), pp. 3-8. (in Russian).

6. Shubin, I.L., Ledenev, V.I. & Antonov, A.I. (2019) Software for noise calculations during acoustic improvement in industrial buildings, Fundamental, exploratory and applied research of the Russian Academy of Architecture and Building Sciences on scientific support for the development of architecture, urban planning and the construction industry of the Russian Federation in 2018. Russian Academy of Architecture and Construction Sciences: collection of scientific works. M., 2, pp. 622-629. DOI:https://doi.org/10.22337/9785432303134 (in Russian).

7. Shubin, I.L., Antonov, A.I., Ledenev, V.I. & Merkusheva, N.P. (2020) Computer design of noise protection means in buildings with automated processes, BST: Bulletin of construction equipment, 10(1034), pp. 36-38 (in Russian).

8. Tsukernikov, I., Shubin, I., Tikhomirov, L. & Nevenchannaya, T. (2015) Software quality testing for calculation of outdoor noise, Proceedings of the 10-th European Congress on Noise Control Euronoise 2015. Maastricht, EAA, pp. 1601-1603.

9. Visentin, C., Valeau, V., Prodi, N. & Picaut, J. (2010) A numerical investigation of the sound intensity field in rooms by using diffusion theory and particle tracing, Proceedings of the 20th International Congress on Acoustics, ICA-2010. 23-27 August 2010, Sydney, Australia [online]. Available at: https://www.acoustics.asn.au/conference_proceedings/ICA2010/cdrom-ICA2010/

10. Billon, A., Picaut, J., Valeau, V. & Sakout, A. (2012) Acoustic Predictions in Industrial Spaces Using a Diffusion Model, Hindawi Publishing Corporation Advances in Acoustics and Vibration, 9 p. DOI:https://doi.org/10.1155/2012/260394.

11. Visentin, C., Prodi, N., Valeau, V. & Picaut, J. (2013) A numerical and experimental validation of the room acoustics diffusion theory inside long rooms, 21st International Congress on Acoustics. Jun 2013, Montréal, Canada, 8 p. [online]. Available at: https://hal.archives-ouvertes.fr/hal-00845722/file/doc00014605.pdf

12. Visentin, C. Prodi, N., Valeau, V. & Picaut, J. (2012) A numerical investigation of the Fick's law of diffusion in room acoustics, The Journal of the Acoustical Society of America, 132, 3180 DOI: https://doi.org/10.1121/1.4756924.

13. Foy C. Picaut J. & Valeau V. (2015) Modeling the reverberant sound field by a diffusion process: analytical approach to the scattering. // Proceedings of Internoise. San Francisco, August 9-12, 2015.

14. Foy, C., Picaut, J. & Valeau, V. (2016) Introduction de la diffusivity des parois au sein du modele de diffusion acoustique, Congrès Français d'Acoustique / VIbrations, SHocks and NOise. Le Mans, 11–15 avril 2016.

15. Certificate of state registration of a computer program № 2015661741 RF; publ. 06.11.2015 (in Russian).

16. Certificate of state registration of a computer program № 2015661740 RF; publ. 06.11.2015 (in Russian).

17. Fedosov, S.V., Fedoseev, V.N, Zaytseva, I.A. & Voronov, V.A. (2021) The hierarchy analysis method in backing expert judgments of criteria for increasing the energy efficiency of air heat pump, Smart Composite in Construction, 2(2), pp. 38-47. DOI:https://doi.org/10.52957/27821919_2021_2_38 (in Russian).

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