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Various presentation of noise perception in Bydgoszcz green areas

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Sustainable management of the city’s space becomes vital due to the increasing environmental pollution. Organized urban space is treated as all resources that directly benefit local residents. Proper location and shape have an impact on the comfort of people’s rest. Urban noise pollution is gradually increasing, mainly due to rapid industrialization and urbanization. This paper addresses the issue of the interrelationships between the multitude of sounds that occur in selected areas of the greenery and their perception by visitors. The research objects are two parks located in the city centre of Bydgoszcz. The surveys were carried out there to identify the sources and perception of noises. To illustrate the audience's perception, a mental map of the directions of noise inflow was made. A fuzzy cognitive map was also made and exemplary scenarios of actions influencing the formation of the acoustic climate in these areas were presented. The use of various ways of presenting fuzzy information about the prevailing acoustic climate allows us to “shape” properly the space in the noise protection.
Rocznik
Strony
113--120
Opis fizyczny
Bibliogr. 22 poz.
Twórcy
  • PhD; Faculty of Civil and Environmental Engineering and Architecture, UTP University of Science and Technology in Bydgoszcz, Al. Prof. S. Kaliskiego 7, 85-796 Bydgoszcz, Poland
autor
  • Prof. Arch.; Faculty of Civil Engineering, Architecture and Environmental Engineering, University of Zielona Góra, Licealna 9, 65-417 Zielona Góra, Poland
  • Prof.; Faculty of Civil Engineering, Architecture and Environmental Engineering, University of Zielona Góra, Licealna 9, 65-417 Zielona Góra, Poland
  • PhD; Faculty of Civil Engineering, Architecture and Environmental Engineering, University of Zielona Góra, Licealna 9, 65-417 Zielona Góra, Poland
Bibliografia
  • [1] Hao, Y., Kang, J., Krijnders, J. (2015) Integrated effects of urban morphology on birdsong loudness and visibility of green areas. Landscape Urban Plan. 137, 149-162.
  • [2] Kothencz G., Blaschke T. (2017) Urban parks: Visitors’ perceptions versus spatial indicators. Land Use Policy, Volume 64, May 2017, 233-244.
  • [3] Man Sze Tse and Chi Kwan Chau, Yat Sze Choy, Wai Keung Tsui, and Chak Ngai Chan, Shiu Keung Tang. (2012) Perception of urban park soundscape. J. Acoust. Soc. Am. 131, 2762.
  • [4] Ricciardi, P., Delaitre, P., Lavandier, C., Torchia, F., Aumond, P. (2015) Sound quality indicators for urban places in Paris cross-validated by Milan data. Journal of the Acoustical Society of America, 138(4), 2337-2348.
  • [5] Manso M., Castro-Gomes J. P., Marchacz M., Górski M., Dulak L., Zuchowski R. (2017) Acoustic evaluation of a new modular system for green roofs and green walls. Architecture Civil Engineering Environment 10(2), 99-108.
  • [6] Aletta F., Kang J., Axelsson Ö. (2016) Soundscape descriptors and a conceptual framework for developing predictive soundscape models. Landsc. Urban Plan., 149, 65-74.
  • [7] Watts, G. (2017). Tranquillity in the city - building resilience through identifying, designing, promoting and linking restorative outdoor environments. Proceedings of Meetings on Acoustics 2017, Vol.30, 040002. Acoustical Society of America, 1-8.
  • [8] Liu, J., Kang, J., Luo, T., Behm, H., Coppack, T. (2013) Spatio temporal variability of soundscapes in a multiple functional urban area. Landscape Urban Plan. 115, 1-9.
  • [9] Greenberg Raanan M., Shoval N. (February 2014) Mental maps compared to actual spatial behavior using GPS data: A new method for investigating segregation in cities. Cities. Vol.36, 28-40.
  • [10] Bazan-Krzywoszańska A., Skiba M., Mrówczyńska M., Sztubecka M., Bazuń D., Kwiatkowski M. (2018) Green energy in municipal planning documents, INFRAEKO2018, E3S Web of Conferences 45, 00006 (2018), doi.org/10.1051/e3sconf/20184500006.
  • [11] Kang J., Aletta F., Gjestland T. T., Brown L. A., Botteldooren D., Schulte-Fortkamp B., Lercher P., Kamp I., Genuit K., Fiebig A., Bento Coelho J. L., Maffei L., Lavia L. (1 November 2016). Ten questions on the soundscapes of the built environment. Building and Environment, Vol.108, 284-294.
  • [12] Yerli, O., Demir, Z. (2016) Relation between urban land uses and noise. A case study in Dulze, Turkey, Oxid Commun 39(1), 732-745.
  • [13] Dworak K. (2005) Hałas środowiskowy a zdrowie (Environmental noise and health). Wojewódzka Stacja Sanitarno-Epidemiologiczna w Katowicach, Katowice, 1-6 (in Polish).
  • [14] Kucharski R. J. 2005. Hałas uliczny w Warszawie. Wielkość ekspozycji i możliwości ochrony przed jego wpływem. Transport publiczny w Warszawie kluczem harmonijnego rozwoju stolicy Polski. Międzynarodowa Konferencja i Wystawa (Street noise in Warsaw. The size of the exposure and the possibilities of protection against influence. Public transport in Warsaw - the key to the Polish capital harmonious development. International Conference and Exhibition), Wyd. Urząd Miasta Warszawa, Warszawa, 253-275 (in Polish).
  • [15] Acoustic map of Bydgoszcz (2016) http://mapy.bydgoszcz.pl/VisMap/apps/Bydgoszcz/pu blic/index.html (Accesed 4.05.2019).
  • [16] Soja W.E. (2000) Postmetropolis. Blackwell, Oxford
  • [17] Molar Orozco M. E., Aguilar Carmina Fernández De Lara. (2016). Comparativa de contaminación acústica en espacios públicos caso Zócalo y Plaza San José en la ciudad de Puebla. (Comparative analysis of noise pollution public spaces - square Zócalo and plaza San José in Puebla). Zeszyty Naukowe Nr 162, Seria Inżynieria Środowiska, Nr 42, Uniwersytet Zielonogórski; 60-76 (in Spanish).
  • [18] Silva, R. F.B., Batistella, M., Moran, E.F. (2016) Drivers of land change: Human-environment interactions and the Atlantic forest transition in the Paraíba Valley, Brazil, Land Use Policy, 58, 133-144.
  • [19] Sztubecka M., Skiba M. (2016). Noise level arrangement in determined zones of homogenous development of green areas on the example of the spa park in Inowrocław. Open Engineering. 6(1), 2391-5439.
  • [20] Tse, M. S., Chau, Ch. K., Choy, Y. S., Tsui, W. K., Chan, C. N., Tang, S. K. (2012) Perception of urban park soundscape. Published by the Acoustical Society of America, J Acoust Soc Am 131 (2762).
  • [21] International Organization for Standardization ISO 12913-1:2014 Acoustics - Soundscape - Part 1: Definition and Conceptual FrameworkISO, Geneva (2014).
  • [22] Sztubecka M., Sztubecki J. (2016). Analysis of the acoustic climate of a spa park using the fuzzy set theory. Open Engineering, 6(1), ISSN (Online), 448-503.
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4b23c530-cd95-4523-a1c8-8e21fb4dbf6e
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