David R. Barclay, Ph.D.

Affiliations: 
2011 Oceanography Dalhousie University, Halifax, Nova Scotia, Canada 
Area:
Acoustics Physics, Physical Oceanography, Marine and Ocean Engineering
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"David Barclay"

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Michael J. Buckingham grad student 2011 UCSD
 (Depth Profiling Ambient Noise in the Deep Ocean.)
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Publications

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Gehrmann RAS, Barclay DR, Johnson H, et al. (2023) Ambient noise levels with depth from an underwater glider survey across shipping lanes in the Gulf of St. Lawrence, Canada. The Journal of the Acoustical Society of America. 154: 1735-1745
Cook ED, Barclay DR, Richards CG. (2022) Real-time acoustic observations in the Canadian Arctic Archipelago. The Journal of the Acoustical Society of America. 151: 1607
Marotte E, Wright AJ, Breeze H, et al. (2022) Recommended metrics for quantifying underwater noise impacts on North Atlantic right whales. Marine Pollution Bulletin. 175: 113361
Halliday WD, Barclay D, Barkley AN, et al. (2021) Underwater sound levels in the Canadian Arctic, 2014-2019. Marine Pollution Bulletin. 168: 112437
Shajahan N, Barclay DR, Lin YT. (2020) Quantifying the contribution of ship noise to the underwater sound field. The Journal of the Acoustical Society of America. 148: 3863
Thomson DJM, Barclay DR. (2020) Real-time observations of the impact of COVID-19 on underwater noise. The Journal of the Acoustical Society of America. 147: 3390
Martin SB, Lucke K, Barclay DR. (2020) Techniques for distinguishing between impulsive and non-impulsive sound in the context of regulating sound exposure for marine mammals. The Journal of the Acoustical Society of America. 147: 2159
Barclay DR, Bevans DA, Buckingham MJ. (2020) Estimation of the Geoacoustic Properties of the New England Mud Patch From the Vertical Coherence of the Ambient Noise in the Water Column Ieee Journal of Oceanic Engineering. 45: 51-59
Barclay DR, Lin YT. (2019) Three-dimensional ambient noise modeling in a submarine canyon. The Journal of the Acoustical Society of America. 146: 1956
Martin SB, Barclay DR. (2019) Determining the dependence of marine pile driving sound levels on strike energy, pile penetration, and propagation effects using a linear mixed model based on damped cylindrical spreading. The Journal of the Acoustical Society of America. 146: 109
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