Vertical mixing alleviates autumnal oxygen deficiency in the central North Sea

Williams, CAJ, Hull, T, Kaiser, J, Mahaffey, C, Greenwood, N, Toberman, M and Palmer, MR 2024 Vertical mixing alleviates autumnal oxygen deficiency in the central North Sea. Biogeosciences, 21 (7). 1961-1971. https://doi.org/10.5194/bg-21-1961-2024

[img]
Preview
Text
bg-21-1961-2024.pdf - Published Version
Available under License Creative Commons Attribution.

Download (2MB) | Preview
Official URL: http://dx.doi.org/10.5194/bg-21-1961-2024

Abstract/Summary

There is an immediate need to better understand and monitor shelf sea dissolved oxygen (O2) concentrations. Here we use high-resolution glider observations of turbulence and O2 concentrations to directly estimate the vertical O2 flux into the bottom mixed layer (BML) immediately before the autumn breakdown of stratification in a seasonally stratified shelf sea. We present a novel method to resolve the oxycline across sharp gradients due to slow optode response time and optode positioning in a flow “shadow zone” on Slocum gliders. The vertical O2 flux to the low-O2 BML was found to be between 2.5 to 6.4 mmol m−2 d−1. Episodic intense mixing events were responsible for the majority (up to 90 %) of this oxygen supply despite making up 40 % of the observations. Without these intense mixing events, BML O2 concentrations would approach ecologically concerning levels by the end of the stratified period. Understanding the driving forces behind episodic mixing and how these may change under future climate scenarios and renewable energy infrastructure is key for monitoring shelf sea health.

Item Type: Publication - Article
Divisions: Plymouth Marine Laboratory > Science Areas > Digital Innovation and Marine Autonomy
Depositing User: S Hawkins
Date made live: 24 Apr 2024 10:22
Last Modified: 24 Apr 2024 10:22
URI: https://plymsea.ac.uk/id/eprint/10193

Actions (login required)

View Item View Item