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WSRLTN34/89AR005920DIRECTIONAL UNDERWATER NOISE ESTIMATES I THE DUNES MODEL. W. BANNISTER, D.J. KELLEY and A.S. BURGESSMARITIME SYSTEMS DIVISION WEAPONS SYSTEMS RESEARCH LABORATORYDTIC EE CTE SAPRO49UWApproved
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How to fill out directional underwater noise estimates

01
Identify the source of underwater noise.
02
Determine the directionality of the noise source.
03
Collect relevant data such as sound levels and distances.
04
Use appropriate models or software to calculate directional noise estimates.
05
Verify the accuracy of the estimates through comparison with measured data.

Who needs directional underwater noise estimates?

01
Marine biologists studying the impact of noise pollution on marine wildlife.
02
Engineers designing underwater structures or vessels to reduce noise emissions.
03
Environmental agencies monitoring noise levels in the ocean to protect marine ecosystems.
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Directional underwater noise estimates refer to the quantification and analysis of sound levels in water, with specific attention to the direction from which sound is emanating. This is important for assessing the impact of marine activities on wildlife and the environment.
Entities involved in activities that generate significant underwater noise, such as construction, shipping, or oil and gas exploration, are required to file directional underwater noise estimates.
To fill out directional underwater noise estimates, one must gather data on sound levels, sources of noise, and their directional characteristics. This often includes using specialized equipment to measure sound and then transferring this data into the designated reporting format.
The purpose of directional underwater noise estimates is to evaluate the potential impact of underwater noise on marine life, ensure compliance with environmental regulations, and inform the public and stakeholders about noise levels from various activities.
Reported information typically includes the source of noise, measurements of sound level at various frequencies, directional characteristics, and the duration of noise generation.
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