The Сalculation of Noise When Designing Soundproofed Compartment Technological Equipment

Number of journal: 6-2015
Autors:

Antonov A.I.
Ledenev V.I.
Solomatin E.O.
Shubin I.L.

DOI: https://doi.org/10.31659/0585-430X-2015-726-6-39-41
УДК: 534.2

 

AbstractAbout AuthorsReferences
The principles of calculating the direct sound from the soundproofed compartment technological equipment civil and industrial buildings. Shows the features soundproofed compartment as the secondary volume of noise sources affecting the spread of the sound energy emitted by them. The method of calculation of the direct sound from the soundproofed compartment, more accurately takes into account features of the radiation of sound energy housing. The housings in the method are regarded as sources with large uneven their sound radiation surfaces.
A.I. ANTONOV1, Candidate of Sciences (Engineering)
V.I. LEDENEV1, Doctor of Sciences (Engineering)
E.O. SOLOMATIN1, engineer (This email address is being protected from spambots. You need JavaScript enabled to view it.)
I.L. SHUBIN2, Doctor of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.)

1 Tambov State Technical University (109 Sovetskaja Street, Tambov, 392000, Russian Federation)
2 Scientific and Research Institute of Building Physics of RAACS (21, Lokomotivny Passage, 127238, Moscow, Russian Federation)

1. Gusev V.P., Sidorina A.V. Protection against noise sewage systems in residential and public buildings. Zhilishchnoe stroitel’stvo [Housing Construction]. 2014. No. 11, pp. 12–15. (In Russian).
2. Gusev V.P. From the experience of noise control equipment engineering systems. AVOK: Ventilyatsiya, otoplenie, konditsionirovanie vozdukha, teplosnabzhenie i stroitel’naya teplofizika. 2012. No. 2, pp. 38–45. (In Russian).
3. Kochkin A.A. Soundproofing of vibrodampering elements layered translucent walling. Stroitel’nye Materialy [Construction Materials]. 2012. No. 6, pp. 40. (In Russian).
4. Kochkin A.A. Designing acoustic laminated vibrodampering panels based on gypsum sheets. Vestnik MGSU. 2011. No. 3–1, pp. 93–96. (In Russian).
5. Grebnev P.A., Monich D.V. Investigation of properties of multilayer soundproof enclosures with rigid filler. Zhilishchnoe stroitel’stvo [Housing Construction]. 2012. No. 6, pp. 50–51. (In Russian).
6. Gusev V.P. Increasing the accuracy of calculations of acoustic engineering systems – direct way to optimize their attenuation. Protecting the public from high noise exposure: Proceedings of the III All-Russian Scientific-practical conference with international participation. St. Petersburg. 2014, pp. 692–698. (In Russian).
7. Gusev V.P., Matveeva I.V., Solomatin E.O. Computer modeling of noise from various sources in the urban environment. Zhilishchnoe stroitel’stvo. 2014. No. 8, pp. 25–28. (In Russian).
8. Osipov G.J., Judin E. Ja. Snizenie shuma v zdanijah I zhilyh rajonah [Decrease in noise in buildings and residential areas]. Moscow: Stroizdat. 1987. 558 p.

For citation: Antonov A.I., Ledenev V.I., Solomatin E.O., Shubin I.L. The Сalculation of Noise When Designing Soundproofed Compartment Technological Equipment. Stroitel’nye Materialy [Construction Materials]. 2015. No. 6, pp. 39-41. DOI: https://doi.org/10.31659/0585-430X-2015-726-6-39-41


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