Underway measurements for 2-day upwelling front experiment during METEOR cruise M93

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Hauptverfasser: Köhn, Eike, Thomsen, Soeren, Arévalo-Martínez, Damian L, Kanzow, Torsten
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2017
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author Köhn, Eike
Thomsen, Soeren
Arévalo-Martínez, Damian L
Kanzow, Torsten
author_facet Köhn, Eike
Thomsen, Soeren
Arévalo-Martínez, Damian L
Kanzow, Torsten
collection Datos científicos de ciencias marinas y ambientales
contents While being a major source for atmospheric CO2 the Peruvian upwelling region exhibits strong variability in surface fCO2 on short spatial and temporal scales. Understanding the physical processes driving the strong variability is of fundamental importance for constraining the effect of marine emissions from upwelling regions on the global CO2 budget. In this study, a frontal decay on length scales of (10km) was observed off the Peruvian coast following a pronounced decrease in downfrontal wind speed with a time lag of 9 hours. Simultaneously, the sea-to-air flux of CO2 on the inshore (cold) side of the front dropped from up to 80 to 10 mmol/m**2/day, while the offshore (warm) side of the front was constantly outgassing at a rate of 10-20 mmol/m**2/day. Based on repeated ship transects the decay of the front was observed to occur in two phases. The first phase was characterized by a development of coherent surface temperature anomalies which gained in amplitude over 6-9 hours. The second phase was characterized by a disappearance of the surface temperature front within 6 hours. Submesoscale mixed layer instabilities were present but seem too slow to completely remove the temperature gradient in this short time period. Dynamics such as a pressure driven gravity current appear to be a likely mechanism behind the evolution of the front.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_881049
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle Underway measurements for 2-day upwelling front experiment during METEOR cruise M93
Köhn, Eike
Thomsen, Soeren
Arévalo-Martínez, Damian L
Kanzow, Torsten
Climate - Biogeochemistry Interactions in the Tropical Ocean; SFB754
While being a major source for atmospheric CO2 the Peruvian upwelling region exhibits strong variability in surface fCO2 on short spatial and temporal scales. Understanding the physical processes driving the strong variability is of fundamental importance for constraining the effect of marine emissions from upwelling regions on the global CO2 budget. In this study, a frontal decay on length scales of (10km) was observed off the Peruvian coast following a pronounced decrease in downfrontal wind speed with a time lag of 9 hours. Simultaneously, the sea-to-air flux of CO2 on the inshore (cold) side of the front dropped from up to 80 to 10 mmol/m**2/day, while the offshore (warm) side of the front was constantly outgassing at a rate of 10-20 mmol/m**2/day. Based on repeated ship transects the decay of the front was observed to occur in two phases. The first phase was characterized by a development of coherent surface temperature anomalies which gained in amplitude over 6-9 hours. The second phase was characterized by a disappearance of the surface temperature front within 6 hours. Submesoscale mixed layer instabilities were present but seem too slow to completely remove the temperature gradient in this short time period. Dynamics such as a pressure driven gravity current appear to be a likely mechanism behind the evolution of the front.
title Underway measurements for 2-day upwelling front experiment during METEOR cruise M93
topic Climate - Biogeochemistry Interactions in the Tropical Ocean; SFB754
url https://doi.org/10.1594/PANGAEA.881049