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Comparison analysis of noise generated by wind turbines with the other noise source in outdoor environment

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents a comparison analysis of the noise generated by wind turbines and the one generated by a ventilation shaft of a working coal mine. The aim of the research was to compare the frequency and amplitude distribution of those sources, especially in the infra range. The ultimate aim it is evaluate possible environmental impact on human annoyance or severity. During the research noise signals were recorded utilizing low frequency microphones, shielded by windscreens. Microphones were localized at the heights of 0.0 m, 1.5 m (approximate location of a human ear in a standing position) and 4 m. Additionally, a measurement position of a microphone in relation to the ground surface was observed. Measurements at ground level were performed according to the standard PN-EN 61400-11:2013-07 and in vertical position, where the microphone was mounted "upside down" with the grid flush with the board. The possible influence of wind speed was also monitored. The results of the measurements are discussed.
Rocznik
Strony
art. no. 2023108
Opis fizyczny
Bibliogr. 12 poz., fot. kolor., 1 rys., wykr.
Twórcy
  • Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice
  • Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice
  • Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice
  • Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice
Bibliografia
  • 1. J. Andresen, H. Møller; Annoyance of infrasound; Inter Noise 83: Proceedings Noise Control: the International Scene 1983 International Conference on Noise Control Engineering Edinburgh July 13-15, 1983
  • 2. D. Krahé, S. Benz, C. Eulitz, S. Großarth, U. Möhler, U. Müller, D. Schreckenberg; Annoyance Of Noise In The Infrasound Range; Study Design And Acoustic Presentation, Proceedings Of The 23rd International Congress On Acoustics, 2019, Aachen, Germany
  • 3. U .Müller, S. Schmitt, R. de Gioannis, G. Plath, I. Riedel, C. Eulitz, , D. Krahé, U. Möhler, D. Schreckenberg, E. M. Elmenhorst; Physiological effects of short-term infrasound immissions; Proc ICA 2019; Paper No. ICA 2019/1122, 9-13; Aachen, Germany 2019
  • 4. S. Carlile, J. L. Davy, D. Hillman, K. Burgemeister; A Review of the Possible Perceptual and Physiological Effects of Wind Turbine Noise; Trends in Hearing, 2018, 22, 1-10
  • 5. R. Ingielewicz, A. Zagubień; Short Communication Infrasound Noise of Natural Sources in the Environment and Infrasound Noise of Wind Turbines; Pol. J. Environ. Stud., 2014, 23(4), 1323-1327
  • 6. S. Sanchez, A. Munro, P. Ashtian, Port Ryerse; Wind Power Project Turbine T2 IEC 61400-11 Edition 3.0 Measurement Report, Report ID: 14355.00.T2.RP1
  • 7. ISO 226:2003 - Acoustics - Normal equal-loudness-level contours
  • 8. R. Kuehler, T. Fedtke, J. Hensel; Infrasonic and low-frequency insert earphone hearing threshold; The Journal of the Acoustical Society of America, 2015 137, EL347; DOI: 10.1121/1.4916795
  • 9. H. Møller; Annoyance of audible infrasound, Journal of Low Frequency Noise; Vibration and Active Control, 1987, 6(1), 1-17; DOI: 10.1177/026309238700600101
  • 10. A. Kaczmarska, D. Augustyńska, A. Łuczak; Infrasonic noise at workplaces in offices requiring employee’s special attention focus; Occupational Safety, 2008, 7-8, 28-32
  • 11. C. Doolan; A Review of Wind Turbine Noise Perception, Annoyance and Low Frequency Emission; Wind Engineering, 2013, 37(1), 97-104
  • 12. D. Gužas, R. Viršilas; Infrasound hazards for the environment and the ways of protection; Ultragarsas (Ultrasound), 2009, 64(3)
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-adade821-3667-4559-ac39-5818cd7ff574
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