10.24425/aoa.2020.132486
Side Effect of the Use of Acoustic Barriers Observed in the Infra Range
References
Borchi F., Carfagni M., Martelli L., Turchi A., Argenti F. (2016), Design and experimental tests of active control barriers for low-frequency stationary noise reduction in urban outdoor environment, Applied Acoustics, 114: 125–135, doi: 10.1016/j.apacoust.2016.07.020.
Carlile S., Davy J.L., Hillman D., Burgemeister K. (2018), A review of the possible perceptual and physiological effects of wind turbine noise, Trends in Hearing, 22: 1–10, doi: 10.1177/2331216518789551.
Degan A. (2003), Acoustic barriers: performance and experimental measurements, Tecniacustica, Bilba.
Ewins D.J. (2000), Modal Testing: theory, practice and application, Research Studies Press Ltd., Letchworth, Herts, England.
Ishizuka T., Fujiwara K. (2003), Performance of noise barriers with various edge shapes and acoustical conditions, Kyushu Institute of Design.
Kaczmarska A., Augustyńska D., Łuczak A. (2008), Infrasonic noise at workplaces in offices requiring employee’s special attention focus [in Polish: Hałas infradźwiękowy na stanowiskach pracy wymagających koncentracji uwagi – propozycja kryterium uciążliwości], Occupational Safety. Science and Practice, 2008(7–8): 28–32, http://archiwum.ciop.pl/28638.
Kasprzak C. (2014), The influence of infrasounds on the Sensory Motor Rhythm (SMR) of EEG Signal, Forum Acusticum, 7–12 September 2014, Cracow, Poland.
Peiró-Torres M.P., Redondo J., Bravo J.M., Sánchez Pérez J.V. (2016), Open noise barriers based on sonic crystals. Advances in noise control in transport infrastructures, Transportation Research Procedia, 18: 392 – 398, doi: 10.1016/j.trpro.2016.12.051.
Remington P.J. (1997), Experimental and theoretical studies of vibrating systems, Encyclopedia of Acoustics,Vol. 2, John Wiley & Sons.
Serraris J. (2016), Propagation of sound around different noise barrier models using a three-dimensional scan based sound visualization technique, Noise Control Engineering Journal, 64(2): 134–141, doi: 10.3397/1/376366.
DOI: 10.24425/aoa.2020.132486