Individual Aircraft Noise Exposure Assessment for a Case-Crossover Study in Switzerland

Author:

Saucy ApollineORCID,Schäffer BeatORCID,Tangermann Louise,Vienneau DanielleORCID,Wunderli Jean-MarcORCID,Röösli MartinORCID

Abstract

Accurate exposure assessment is essential in environmental epidemiological studies. This is especially true for aircraft noise, which is characterized by a high spatial and temporal variation. We propose a method to assess individual aircraft noise exposure for a case-crossover study investigating the acute effects of aircraft noise on cardiovascular deaths. We identified all cases of cardiovascular death (24,886) occurring near Zürich airport, Switzerland, over fifteen years from the Swiss National Cohort. Outdoor noise exposure at the home address was calculated for the night preceding death and control nights using flight operations information from Zürich airport and noise footprints calculated for major aircraft types and air routes. We estimated three different noise metrics: mean sound pressure level (LAeq), maximum sound pressure level (LAmax), and number above threshold 55 dB (NAT55) for different nighttime windows. Average nighttime aircraft noise levels were 45.2 dB, 64.6 dB, and 18.5 for LAeq, LAmax, and NAT55 respectively. In this paper, we present a method to estimate individual aircraft noise exposure with high spatio-temporal resolution and a flexible choice of exposure events and metrics. This exposure assessment will be used in a case-crossover study investigating the acute effects of noise on health.

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference36 articles.

1. Burden of Disease from Environmental Noise Quantification of Healthy Life Years Lost in Europe. Report, World Health Organization, 2011http://www.euro.who.int/__data/assets/pdf_file/0008/136466/e94888.pdf

2. Adverse Cardiovascular Effects of Traffic Noise with a Focus on Nighttime Noise and the New WHO Noise Guidelines

3. Swiss Confederation. Plan National de Mesures Pour Diminuer les Nuisances Sonores, 2017https://www.bafu.admin.ch/bafu/fr/home/themes/bruit/communiques.msg-id-67296.html

4. Swiss Confederation. Noise Abatement Ordinance of 15 December 1986 (NAO), 1986https://www.admin.ch/opc/en/classified-compilation/19860372/index.html

5. WHO Regional Office for Europe. Environmental Noise Guidelines for the European Region. Report, World Health Organization, 2018http://www.euro.who.int/__data/assets/pdf_file/0009/383922/noise-guidelines-exec-sum-eng.pdf?ua=1

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