Measuring Dry Deposition of Sea Spray Aerosol and Height of Aerosol Plume Using a Controlled Wave Pool

Abstract Deposition of sea spray aerosols facilitates atmospheric corrosion of materials, requiring maintenance and replacement over time. However, the dimensions of sea spray aerosol plumes produced from breaking waves have not been well‐characterized, limiting useful prediction of particle transport downwind and atmospheric corrosion. Therefore, this project aimed to measure sea spray aerosol production from breaking waves in a controlled environment at several elevations to obtain the height profile of an aerosol plume. Measurements were conducted using a 13.7 × 6.7 m pool with 1.5 m depth filled to 101.6 cm with Instant Ocean® at the Laboratory for Autonomous Systems (LASR), Naval Research Laboratory (NRL). Waves were generated to simulate a total of 525 wave crashes using fully automated pistons. Airborne concentrations, aerosol number size, and dry deposition fluxes were measured at 47, 153.7 and 260.4 cm above the water surface. Aerosol size distributions and dry deposition fluxes showed that coarse, salt‐rich aerosols deposited mostly at 47 cm while submicron particles traveled further up to 153.7 and 260.4 cm. Furthermore, corrosion was evaluated at each elevation using C1010 witness coupons, Ag witness coupons, and corrosion sensors. Corrosion rates of C1010 were most severe at 153.7 cm, suggesting that corrosion may not necessarily be the most severe adjacent to the water surface. This study provided experimental data for initial plume conditions, including loss of particles by dry deposition, that could be used for modeling the transport of sea spray aerosols.

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Publication Details

Journal
Journal of Geophysical Research Atmospheres
Published
2026-10-05
DOI
https://doi.org/10.1029/2025jd045479
Primary Topic
Atmospheric chemistry and aerosols
Type
article
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article

Measuring Dry Deposition of Sea Spray Aerosol and Height of Aerosol Plume Using a Controlled Wave Pool

Raymond J. Santucci, Sheri Stanke, Alexander Johnson, Steven Kopitzke et al.
Journal of Geophysical Research Atmospheres
Atmospheric chemistry and aerosols
article

Measuring Dry Deposition of Sea Spray Aerosol and Height of Aerosol Plume Using a Controlled Wave Pool

Raymond J. Santucci, Sheri Stanke, Alexander Johnson, Steven Kopitzke, Ivan Savelyev, Peter Buffolino, William Kinee
article en

Abstract

Abstract Deposition of sea spray aerosols facilitates atmospheric corrosion of materials, requiring maintenance and replacement over time. However, the dimensions of sea spray aerosol plumes produced from breaking waves have not been well‐characterized, limiting useful prediction of particle transport downwind and atmospheric corrosion. Therefore, this project aimed to measure sea spray aerosol production from breaking waves in a controlled environment at several elevations to obtain the height profile of an aerosol plume. Measurements were conducted using a 13.7 × 6.7 m pool with 1.5 m depth filled to 101.6 cm with Instant Ocean® at the Laboratory for Autonomous Systems (LASR), Naval Research Laboratory (NRL). Waves were generated to simulate a total of 525 wave crashes using fully automated pistons. Airborne concentrations, aerosol number size, and dry deposition fluxes were measured at 47, 153.7 and 260.4 cm above the water surface. Aerosol size distributions and dry deposition fluxes showed that coarse, salt‐rich aerosols deposited mostly at 47 cm while submicron particles traveled further up to 153.7 and 260.4 cm. Furthermore, corrosion was evaluated at each elevation using C1010 witness coupons, Ag witness coupons, and corrosion sensors. Corrosion rates of C1010 were most severe at 153.7 cm, suggesting that corrosion may not necessarily be the most severe adjacent to the water surface. This study provided experimental data for initial plume conditions, including loss of particles by dry deposition, that could be used for modeling the transport of sea spray aerosols.

Journal of Geophysical Research AtmospheresVol. 131(19)
United States Naval Research Laboratory (US), National Academy of Sciences (US), Naval Air Warfare Center Training Systems Division (US), National Academies of Sciences, Engineering, and Medicine (US), Naval Air Systems Command (US)
Openalex Percentile: Top 17%
Atmospheric chemistry and aerosols
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