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May 14, 2026The Journal of the Acoustical Society of America0 citations

Soundscapes in the Deep Pacific

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KMKarlina MerkensSBSimone Baumann-PickeringEOErin Oleson

Key Points

  • The study investigates the soundscapes in the Central and Western Pacific to understand marine biodiversity and anthropogenic impacts.
  • Data collection at 14 locations using bottom-mounted HARP from 2005 to 2020.
  • Records included biological sounds and physical ocean noises at frequencies from 20–4000 Hz.
  • Monitoring involved duty cycling with 5 min recordings and 1–35 min gaps.
  • Dominant soundscape components were biological and physical, especially with seasonal baleen whale activity.
  • Periodic 'choruses' showed strong diel patterns, peaking at sunset.
  • Minimal anthropogenic sounds detected, with only sporadic vessel and echosounder signals.

Abstract

The Pacific Islands Passive Acoustic Network (PIPAN) is a collection of 14 sites across the Central and Western Pacific Ocean initially selected for monitoring cetaceans. At each location, a bottom-mounted High-frequency Acoustic Recording Package (HARP) was deployed between 500 and 1000 m. The data were recorded at 200 kHz and downsampled to span 20–4000 Hz for soundscape analysis. Most of the recordings were duty cycled, with 5 min of recording separated by gaps of 1–35 min. At each site, recordings lasted between 3 months and 10 years, with intermittent gaps between deployments. These data span the years 2005–2020, although recording is ongoing at selected sites. The primary components of the soundscapes were biological, particularly the seasonal influx of baleen whales, and physical, such as the sounds from wind and waves. There were also “choruses,” or periodic, broadband energy at various frequencies. These choruses are strongly diel, peaking around sunset. There was very little anthropogenic sound at any site, with only a few locations having vessel or echosounder signals. Ongoing monitoring of these sites will be essential for effective management of human activities going forward, particularly at locations that are remote, but with the potential to be utilized for deep sea extraction.

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Cite This Study

Merkens et al. (2025) studied this question.

synapsesocial.com/papers/6a0567a8a550a87e60a1fc73https://doi.org/10.1121/10.0041038
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