Intensification of sediment flux by wind-induced residual currents in a heavily contaminated, micro-tidal bay.

Mar Pollut Bull

Department of Ocean Sciences, Inha University, Incheon 22212, Republic of Korea. Electronic address:

Published: January 2025

AI Article Synopsis

  • Wind-induced currents play a crucial role in resuspending and transporting sediment in micro-tidal bays, particularly in heavily contaminated areas like Onsan Bay.
  • In-situ measurements using acoustic Doppler current profilers (ADCPs) showed that residual currents contributed over 70% of the total sediment flux, with surface sediments moving seaward and bottom sediments moving landward.
  • Northerly winds intensified these landward currents, suggesting they may increase sediment deposition in the bay, which has implications for managing sedimentation in coastal environments.

Article Abstract

Wind-induced currents are the major forces responsible for sediment resuspension and transport in micro-tidal bays. To reveal the impact of wind-induced residual currents on the sediment flux, in-situ measurements using acoustic Doppler current profilers (ADCPs) were conducted at two mooring stations in a heavily contaminated, micro-tidal Onsan Bay. During the mooring period, the suspended sediments at both stations were transported seaward (landward) at the surface (bottom) layer mainly through the residual currents (mean-flow flux F: > 70 % of the total flux). Under northerly winds, the landward bottom residual currents at both stations strengthened, resulting in the "intensification" of landward F. This suggests that the northerly winds might be a primary factor intensifying the landward sediment fluxes, potentially resulting in the increased sediment deposition into the bay. The findings provide insights into managing sedimentation in contaminated coastal bays and highlight the importance of wind effects on sediment transport in micro-tidal bays.

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Source
http://dx.doi.org/10.1016/j.marpolbul.2024.117521DOI Listing

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