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DEVELOPMENT OF AN EXPERIMENTAL-THEORETICAL MODEL FOR THE NOISE FIELD OF THERMAL POWER PLANT EQUIPMENT

https://doi.org/10.30724/1998-9903-2018-20-5-6-84-92

Abstract

This article studies problems of forecasting of noise pollution by thermal power plant equipment, industrial boilers, etc. An acoustic model of a residential area, exposed to power plant equipment noise nuisance, has been developed by means of AWM “Acoustics” software using obtained data. Practical application of the experimental-theoretical model for the noise field was demonstrated for efficiency estimation of the proposed engineering solution to noise reduction.

About the Authors

O. A. Gorbunova
Kazan national research technical university named after A.N.Tupolev – KAI.
Russian Federation

Oxana A. Gorbunova – Senior teacher of the chair of industrial and ecological safety.

 Kazan. 



G. I. Pavlov
Kazan national research technical university named after A.N.Tupolev – KAI.
Russian Federation

Grigory I. Pavlov – Dr. Sci. (Eng.), Professor.

 Kazan. 



References

1. State Standard 53187-2008 ‒ Acoustics. Noise monitoring of urban areas. (in Russian).

2. Hygiene standards 2.2.4/2.1.8.562-96 ‒ Noise in workplaces, in rooms of residential, public buildings and in the territory of the housing estate. (in Russian).

3. Set of rules 51.13330.2011 Protection against noise. (in Russian).

4. Medvedev V.T., Tupov V.B., Taratorin A.A., Tupov B.V. Visualization of noise pollution from thermal power plant. Jelektricheskie stancii [Power plants], 2014, iss. 3. (in Russian).

5. Kuz'mickij A.V., Nikiforov A.V., Ivanov A.V. Assessment of acoustic impact on territories of the residential area and in rooms by means of the Acoustics automated workplace program complex 3D. Biosfernaja sovmestimost': chelovek, region, tehnologii [Biospheric compatibility: person, region, technologies], 2014, iss. 3. (in Russian).

6. Cukernikov I.E., Tihomirov L.A. Comparison of the results of calculation of road noise of the residential area of Moscow received when using three software. Zashhita ot povyshennogo shuma i vibracii: Sbornik dokladov IV Vseros. nauch.-praktich. konferencii s mezhdunarodnym uchastiem.[Protection against the increased noise and vibration. The collection of reports of the IV All-Russian scientific Definition of basic data for implementation of design decisions on protection of the population against noise pollution. and practical conference with the international participation.], St. Petersburg, 2013. (in Russian).

7. Gorbunova O. A., Pavlov G. I. Definition of basic data for implementation of design decisions on protection of the population against noise pollution. Zashhita ot povyshennogo shuma i vibracii: Sbornik dokladov V Vseros. nauch.-praktich. konferencii s mezhdunarodnym uchastiem.[Protection against the increased noise and vibration. The collection of reports of the V All-Russian scientific Definition of basic data for implementation of design decisions on protection of the population against noise pollution. and practical conference with the international participation.], St. Petersburg, 2015, pp. 365‒372. (in Russian).

8. Butorina M. V. Operational noise maps for railway transport. General requirements and construction methods. Zashhita ot povyshennogo shuma i vibracii: Sbornik dokladov V Vseros. nauch.praktich. konferencii s mezhdunarodnym uchastiem.[Protection against the increased noise and vibration. The collection of reports of the V All-Russian scientific Definition of basic data for implementation of design decisions on protection of the population against noise pollution. and practical conference with the international participation.], St. Petersburg, 2015, pp. 106‒114. (in Russian).

9. O.A.Gorbunova, G.I.Pavlov, P.V.Nakorjakov. Development of design and engineering solution to reduce noise from the boiler room to protect the residents. Jekologija i promyshlennost' Rossii. [Ecology and industry of Russia], Moscow, 2017, vol. 21, iss. 10, pp. 44-49. (in Russian). DOI: 10.18412/1816-0395-201710-44-49.

10. Vasineva M. V. Design and engineering solutions to protect residents from noise. Jekologija proizvodstva.[Production ecology], 2014, iss. 8, pp. 68‒72.

11. Igolkin A.A. Razrabotka metoda i sredstv snizhenija ajerodinamicheskogo shuma v pnevmaticheskih i gazotransportnyh sistemah Doct. Diss.. [Development of a method and means for reducing aerodynamic noise in pneumatic and gas transmission systems. Doct. Diss.]. Samara, 2014.

12. Tupov B.V. Razrabotka metodov snizhenija shumovogo zagrjaznenija okruzhajushhej sredy gazovozdushnymi traktami tjagodut'evyh mashin TJeS. Ph.D. thesis. [Development of methods for reducing noise pollution of the environment by gas-air tracts of draft machines of thermal power plants. Ph.D. thesis.]. Moscow, 2015.


Review

For citations:


Gorbunova O.A., Pavlov G.I. DEVELOPMENT OF AN EXPERIMENTAL-THEORETICAL MODEL FOR THE NOISE FIELD OF THERMAL POWER PLANT EQUIPMENT. Power engineering: research, equipment, technology. 2018;20(5-6):84-92. (In Russ.) https://doi.org/10.30724/1998-9903-2018-20-5-6-84-92

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ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)