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September 10, 2025The Journal of the Acoustical Society of America0 citations

Episodic deep-water currents observed in NESMA and their implication on acoustics near the New England Seamounts

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JJJohn E. JosephOGOleg A. GodinTTTsu Wei Tan

Key Points

  • Episodic near-bottom flows were observed at depths between 2550 and 4450 m, affecting sound propagation.
  • During the NESMA experiments, episodic currents were measured using tilt current meters and hydrophones.
  • The spatial relationship between the Gulf Stream and irregular flows highlights significant oceanographic dynamics.
  • Changes in temperature measurements correlated with the observed current flows, revealing complex interactions.

Abstract

Naval Postgraduate School deployed a network of Moored Autonomous Noise Recorders (MANRs) in the vicinity of the Atlantis II Seamounts for 2 months during the 2023 New England Seamounts Acoustics (NESMA) pilot experiment and for 5 months during the 2024 NESMA field experiment. In each experiment, two MANRs were placed on the steep flanks of the Atlantis II Seamounts and two were placed along a deep trench. Strong, episodic near-bottom flows were observed a few meters above the seafloor during both experiments at water depths between 2550 and 4450 m. An assemblage of measurements from tilt current meters, flow noise over the MANR hydrophones and variations in in situ temperature were used to identify the unexpected flows. In this work, we examine the characteristics of the irregular flows, their spatial and temporal relationship with the Gulf Stream, and the implications of the flows for sound propagation and acoustic measurements in this region of complex bathymetry and oceanography. Work supported by ONR.

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Cite This Study

Joseph et al. (2025) studied this question.

synapsesocial.com/papers/68c1abf954b1d3bfb60e41bchttps://doi.org/10.1121/10.0037683
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