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Designing of noise pollution measures for a military airfield

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Języki publikacji
EN
Abstrakty
EN
This article discusses the possibilities of reducing noise pollution in the vicinity of a selected airport, with an emphasis on practical measures. The proposed procedures, which are routinely employed at commercial airports, would be ineffective or financially unsustainable under the circumstances of the military airports. The objective at military airports is not to maximise capacity, as at civil airports, where the desire to increase capacity is primarily related to profit. The primary objective for military airports is to perform defined tasks, which may include pilot training, search and rescue exercises and combat training. The main measures proposed to reduce noise pollution in the vicinity of the villages are changes in departure and arrival routes, the splitting of night operations into two parts and the introduction of a new article in the AIP and Airport Regulations prohibiting air operations over and in close proximity to the villages nearby. Finally, it is stressed that a significant reduction in noise will only be possible with the support of changes in legislation or above-standard financial investment by the airport operator.
Rocznik
Tom
Strony
73--84
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
  • Faculty of Military Technology, University of Defence, Kounicova 65, 662 10 Brno, Czech Republic
  • Faculty of Military Technology, University of Defence, Kounicova 65, 662 10 Brno, Czech Republic
Bibliografia
  • 1. Basner Mathias, Barbara Griefahn, Martinvan den Berg. 2010. „Aircraft noise effects on sleep: Mechanisms, mitigation and research needs”. Noise and Health 12(47). ISSN: 1463-1741. DOI: 10.4103/1463-1741.63210.
  • 2. Guski Roman. 1991. „The right to peace and quiet at home (Zum Anspruch auf Ruhe beim Wohnen)”. Journal for noise abatement (Zeitschrift fόr Lδrmbekδmpfung) 38: 61-5.
  • 3. Hume Ken, Thomas Callum. 1993. „Sleep disturbance due to aircraft noise at a rapidly expanding airport (Manchester Airport)”. In: Proceedings of the 6th International Congress Noise as a Public Health Problem: 563-6. Nice, Italy, 5-9 July 1993.
  • 4. Kim KS. 2007. „Occupational Disease”. 2007. Hearing Loss. Seoul, Gyechuk Munwhasa.
  • 5. Kwak, Kyeong Min, Young-Su Ju, Young-Jun Kwon, Yun Kyung Chung, Bong Kyu Kim, Hyunjoo Kim, Kanwoo Youn. 2016. „The effect of aircraft noise on sleep disturbance among the residents near a civilian airport: a cross-sectional study”. Annals of Occupational and Environmental Medicine 28(1). ISSN: 2052-4374. DOI: 10.1186/s40557-016-0123-2.
  • 6. Haralabidis Alexandros, Konstantina Dimakopoulou, Federca Vigna-Taglianti, Matteo Giampaolo, Alessandro Borgini, Marie-Louise Dudley, et al. 2008. „Acute effects of night-time noise exposure on blood pressure in populations living near airports”. Eur Heart J. 29: 658-64. DOI: 10.1093/eurheartj/ehn013.
  • 7. Willich Stefan, Karl Wegscheider, Martina Stallmann, Thomas Keil. 2006. „Noise burden and the risk of myocardial infarction”. Eur Heart J. 27: 276-82. DOI: 10.1093/eurheartj/ehi658.
  • 8. Hardoy Maria Carolina, Mauro Carta, Anna Rita Marci, Fiora Carbone, Mariangela Cadeddu, Viviane Kovess, et al. 2005. „Exposure to aircraft noise and risk of psychiatric disorders: the Elmas survey”. Soc Psychiatry Psychiatr Epidemiol 40: 24-6. DOI: 10.1007/s00127-005-0837-x.
  • 9. Muzet Alain. 2007. „Environmental noise, sleep and health”. Sleep Med Rev. 11: 135-42. DOI: 10.1016/j.smrv.2006.09.001.
  • 10. Benz Sarah Kuhlmann, Julia Jeram, Sonja Bartels, Susanne Ohlenforst, Barbara Schreckenberg. 2022. „Impact of Aircraft Noise on Health”. Aviation Noise Impact Management. DOI: 10.1007/978-3-030-91194-2_7.
  • 11. CAA. „Aircraft Noise and Sleep Disturbance: An update (2014-2022)”. Available at: https://publicapps.caa.co.uk/docs/33/CAP2370.pdf.
  • 12. Basner Mathias, Wolfgang Babisch, Adrian Davis, Mark Brink et al. 2014. „Auditory and non-auditory effects of noise on health”. Lancet 383: 1325-32. DOI: 10.1016/S0140-6736(13)61613-X.
  • 13. Kuželová Karolína. 2021. „Design of night noise measures for LKPR”. Diploma thesis. Prag, Czech Republic: Czech Technical University in Prague. Available at: https://dspace.cvut.cz/bitstream/handle/10467/107297/F6-DP-2022-Kuzelova-Karolina-Nocni_hluk_LKPR.pdf?sequence=-1&isAllowed=y.
  • 14. Czech Republic. „Government Regulation No. 272/2011 Coll.: Government Regulation on the protection of health against the adverse effects of noise and vibration”. 2011, 24. July 2011. Available at: https://www.zakonyprolidi.cz/cs/2011-272.
  • 15. Czech Republic. „Act No. 258/2000 Coll.: Act on the Protection of Public Health and on Amendments to Certain Related Acts”. Available at: https://www.zakonyprolidi.cz/cs/2000-258#f5047140.
  • 16. ICAO. „Aircraft Noise: Balanced Approach to Aircraft Noise Management”. Montréal: International Civil Aviation Organizaation. Available at: https://www.icao.int/environmental-protection/Pages/noise.aspx.
  • 17. Prg.aero. „Air traffic noise and airport traffic noise”. Prag: Airport Prag. Available at: https://www.prg.aero/hluk.
  • 18. Zaporozhetz Oleksandr, Vadim Tokarev, Keith Attenborough. 2011. „Aircraft Noise: Assessment, Prediction and Control”. CRC Press. ISBN: 0415240662. Available at: https://books.google.cz/books?hl=cs&lr=&id=wSMXnVVgOSQC&oi=fnd&pg=PP1&dq=Aircraft+Noise+&ots=CH9l2JiT4_&sig=Vge2UDQ-ko0RqqlmsK5Dg_p_jNs&redir_esc=y#v=onepage&q&f=false.
  • 19. Stanners David, Philippe Bourdeau. 1995. „Europe’s Environment: The Dobris Assessment”. Office for Official Publications of the European Communities: Luxembourg. European Environment Agency. Copenhagen, Denmark.
  • 20. Ivkovi´c Ivan, Olja Cokorilo, Snežana Kaplanovi´c. 2018. „The estimation of GHG emission costs in road and air transport sector: Case study of Serbia”. Transport 33: 260-267. DOI: 10.3846/16484142.2016.1169557.
  • 21. Button Kenneth, Peter Nijkamp. 1997. „Social change and sustainable transport”. J. Transp. Geogr. 5: 215-218.
  • 22. Cokorilo Olja, Gianluca Dell’Acqua. 2013. „Aviation Hazards Identification Using Safety Management System (SMS) ˇ Techniques”. In: Proceedings of the 16th International Conference on Transport Science ICTS 2013: 66-73. Portorož, Slovenia.
  • 23. Mascio Paola, Gregorio Rappoli, Laura Moretti. 2020. „Analytical Method for Calculating Sustainable Airport Capacity”. Sustainability 12: 9239. DOI: 10.3390/su12219239
  • 24. International Civil Aviation Organization. „ICAO’s policies on charges for airports and air navigation services: Doc 9082/7”. 2004. Available at: https://www.icao.int/publications/Documents/9082_7ed_en.pdf.
  • 25. MEF. „Basic definition”. 2006. Available at: http://fyzika.jreichl.com/main.article/view/208-zakladnidefinice?fbclid=IwAR0pFJmqFug4ejlxCepRiynPei17We1V653hOmAgyyA4gygrPtySgnyiPT4.
  • 26. MEF. „Basic definition”. 2006. Available at: http://fyzika.jreichl.com/main.article/view/208-zakladni-definice4.
  • 27. MEF. „Basic definition”. 2006. Available at: http://fyzika.jreichl.com/main.article/view/208-zakladni-definice.
  • 28. EASA. „Type-certificate data sheet for noise”. 2022.
  • 29. Kotvaldová Tereza. 2018. „The voice pollution problem of arrival routes”. Diploma thesis. Prag, Czech Republic: Czech Technical University in Prague.
  • 30. Turner Wes. 2021. „How to calculate the reduction in airplane noise as a function of increased distance?”. Available at: https://www.physicsforums.com/threads/how-to-calculate-airplane-noise-as-a-function-of-distance.1006504/.
  • 31. Air Navigation Services of the Czech Republic. 2022. „Aeronautical Information Publication”. Available at: https://aim.rlp.cz/ais_data/aip/control/aip_obsah_cz.htm.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-60497a21-5afc-4dd2-8148-6906710cc73b
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