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Published on: February 13, 2018
Should limit values be set for infrasound caused by wind turbines?
Małgorzata Pawlaczyk-Łuszczyńska1, Tadeusz Wszołek2, Adam Dudarewicz1
1Nofer Institute of Occupational Medicine, Łódź, Poland (Department of Vibroacoustic Hazards).
This study proposes new outdoor exposure limits for wind turbine infrasound, using the G-weighted sound pressure level (SPL). The suggested limits aim to prevent annoyance and health effects from low-frequency noise near wind farms.
Area of Science:
- Environmental Health
- Acoustics
- Occupational Medicine
Background:
- Most countries lack specific outdoor exposure limits for wind turbine infrasound.
- Existing literature on infrasound effects and measurement methods was reviewed.
- Human infrasound perception is linked to the hearing threshold, which requires standardization.
Purpose of the Study:
- To establish scientifically-based outdoor exposure limits for wind turbine infrasound.
- To propose standardized metrics for assessing infrasound exposure from wind turbines.
- To ensure public health and comfort in proximity to wind energy facilities.
Main Methods:
- Literature review on infrasound effects and global assessment methods.
- Utilized the G96 curve to define the mean hearing threshold for infrasound (1-20 Hz).
- Proposed G-weighted equivalent SPL (LGeq) as the primary assessment metric, including short-term and long-term indices.
Main Results:
- Infrasound levels near wind farms are typically below established hearing thresholds.
- Provisional acceptable limits set at 90 dB for LGeq, D and LDEN(G), and 85 dB for LGeq, N and LN(G).
- These proposed limits aim to mitigate annoyance and potential adverse health effects.
Conclusions:
- Specific outdoor exposure limits for wind turbine infrasound are crucial for public well-being.
- The G-weighted SPL provides a viable basis for setting and assessing infrasound exposure.
- Further standardization and adoption of these limits are recommended for areas with wind turbines.
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