Deutsches Ozeanographisches
Datenzentrum
Inventur der Meteor-Reise M156 (DOD-Ref-No.20190049)
Inventory of Meteor Cruise M156 (DOD-Ref-No.20190049)
| Plattform Platform |
Reise-Nr. Cruise-No. |
Zeitraum Period |
Projekt Project |
Arbeitsgebiet Working area |
|---|---|---|---|---|
| Meteor | M156 | 03.07.2019 - 01.08.2019 | REEBUS |
| Fahrtleiter Chief Scientist | Institut Institute | Auslaufhafen Port of departure | Einlaufhafen Port of return | Stationskarte Station map | Schiffsroute Trackchart |
|---|---|---|---|---|---|
| Sommer Stefan | Helmholtz Centre for Ocean Research Kiel (GEOMAR) | Mindelo | Mindelo |
Ziel der Reise / Objectives of Cruise:
The major goal of the RV Meteor cruise M156 to Cape Verdian waters and the Mauritanian upwelling area off West Africa was to contribute to a better quantitative understanding of the effects of mesoscale eddies on CO2 source/sink mechanisms and the biological carbon pump in eastern boundary upwelling areas as well as their effects to the oligotrophic periphery including the deep-sea floor. The cruise M156 (MOSES Eddy Study I) was conducted within the framework of the BMBF funded REEBUS project (Role of Eddies in the Carbon Pump of Eastern Boundary Upwelling Systems) by a consortium of physical, biological (benthic microbiology, bacterial plankton, protists) and biogeochemical oceanographers. Specific aims were i. the quantification of solute and particle fluxes within and at the periphery of eddies; ii. to determine the turnover of carbon species, air-sea gas exchange of CO2, iii. the determination of the protistan and bacterial plankton community structures in the surface layers of an eddy, and iv. to quantify the magnitude and variability of material fluxes to the seabed and turnover in the sediment underneath the eddy passage. To achieve these aims, the cruise had two major observing strategies: i. an intense benthic/pelagic program along the zonal eddy passage at 18?N. Along this corridor ranging from 24?20' to 16?30'W, five benthic/pelagic stations (E1 to E5) in different water depths and distances from the Mauritanian coast were performed. The motivation for this survey has been to resolve zonal gradients in pelagic element cycling as well as of organic matter degradation and burial in the seabed, which in turn could potentially be linked with changes in eddy induced primary- and export production. ii. the detailed investigation of an individual eddy to investigate physical, biogeochemical and biological processes on meso- to submeso-scales (100km to 10m). Satellite data analysis was performed before and during the cruise to identify a suitable eddy from a combination of sea-level anomaly, ocean color as Chl-a proxy, and sea-surface temperature supplemented with shipboard current velocity measurements. A total of 171 stations were sampled. The water column program consists of 59 CTD casts, 29 MSS and 20 Marine Snow Catcher deployments. For biogeochemical measurements at the sea surface two deployments of a Lagrangian Surface Drifter and one Waveglider deployment were conducted. At the seafloor, we conducted 10 BIGO deployments. Ten seafloor imaging surveys were performed using the towed camera system OFOS, supplemented with 7 Multibeam and 1 Sidescan surveys. In deviation from the cruise proposal, the planned long-term deployment of a Lander, which was planned to record a time series of oxygen fluxes during the passage of an eddy, was not deployed due to a major delay in its design and manufacturing. The planned AUV (Girona 500) deployments at the shallow E5 station close to the Mauritanian coast station did also not take place. Despite moderate weather conditions, all deployments were successful, hence all the data and sample material aimed for has been achieved. It is to expect that as planned all scientific questions can be addressed. Especially in the synthesis of all REEBUS cruises and the consideration of data from earlier cruises (MSM17/4, M107) into this region a high scientific potential can be expected.
Messungen / Measurements
| Institut Institute |
Wissenschaftler Scientist |
Anzahl Number |
Einheit Unit |
Typ der Messungen Type of measurements |
Kommentar Comments |
Daten im DOD Data in DOD |
|---|---|---|---|---|---|---|
| GEOMAH | Engel Anja | 1 | meas. | B01 Primary productivity |
at selected samples . 03.07.2019 | no |
| GEOMAH | Engel Anja | 185 | samples | B06 Dissolved organic matter (e.g. DOC) |
Dissolved organic matter . 03.07.2019 | no |
| TUKL | Stoeck Thorsten | 1 | Exp | B09 Zooplankton |
Ex situ grazing experiments . 03.07.2019 | no |
| TUKL | Stoeck Thorsten | 1 | meas. | B09 Zooplankton |
Selected sampling from CTD casts for the analysis of the protistan plankton community, DNA analyses. 03.07.2019 | no |
| GEOMAH | Perner Mariam | 8 | deployment | B16 Benthic bacteria / micro-organisms |
Microbiological sediment analyses. 03.07.2019 | no |
| GEOMAH | Engel Anja | 185 | samples | B71 Particulate organic matter (e.g. POC, PON) |
Particulate organic matter. 03.07.2019 | no |
| GEOMAH | Engel Anja | 20 | deployment | B72 Biochemical measurements (e.g. lipids, aminoacids) |
Sampling of particles in the water column using a marine snow catcher; POC, POP, PAA, PCHO, TEP, CSP. 03.07.2019 | no |
| GEOMAH | Engel Anja | 1 | meas. | B90 Other biological / fishery measurements |
Bacterial respiration at selected samples. 03.07.2019 | no |
| GEOMAH | Dengler Marcus | 1 | meas. | D71 Current profiler (e.g. ADCP) |
Vessel mounted current measurements. 03.07.2019 | no |
| GEOMAH | Kortzinger Arne | 1 | deployment | D90 Other physical oceanographic measurements |
SV3 Wave Glider equipped biogeochemical sensor package, physical properties . 03.07.2019 | no |
| GEOMAH | Kortzinger Arne | 2 | deployment | D90 Other physical oceanographic measurements |
Lagrangian BGC drifter; biogeochemical measurements in the water column. 03.07.2019 | no |
| GEOMAH | Dengler Marcus | 1 | deployment | D90 Other physical oceanographic measurements |
Glider operations, physical properties of the water column. 03.07.2019 | no |
| GEOMAH | Dengler Marcus | 29 | deployment | D90 Other physical oceanographic measurements |
Microstructure CTD casts, turbulence, physical properties . 03.07.2019 | no |
| GEOMAH | Dale Andrew | 10 | deployment | G04 Core-soft bottom (no. of cores) |
Multiple Coring for sediment retrieval and subsequent biogeochemical analyses. 03.07.2019 | no |
| GEOMAH | Greinert Jens | 1 | survey | G24 Long/short range side scan sonar |
Sidescan survey. 03.07.2019 | no |
| GEOMAH | Greinert Jens | 1 | deployment | G71 In-situ sea floor measurements |
Seafloor observation using a lander system. 03.07.2019 | no |
| GEOMAH | Sommer Stefan | 10 | deployment | G71 In-situ sea floor measurements |
Deployment of the GEOMAR BIGO type lander for in situ flux measurements and sediment retrieval. 03.07.2019 | no |
| GEOMAH | Greinert Jens | 7 | survey | G74 Multi-beam echosounding |
Seafloor bathymetry. 03.07.2019 | no |
| GEOMAH | Greinert Jens | 9 | deployment | G90 Other geological or geophysical measurements |
Sea floor imaging using the towed camera system OFOS. 03.07.2019 | no |
| GEOMAH | Sommer Stefan | 1 | n miles | G90 Other geological or geophysical measurements |
Multibeam EM 122, EM710, ADCP 38+75 kHz | yes |
| GEOMAH | Dengler Marcus | 59 | deployment | H10 CTD-Stations |
Physical properties, oxygen, chla, turbidity. 03.07.2019 | no |
| GEOMAH | Sommer Stefan | 59 | deployment | H10 CTD-Stations |
Nutrient measurements water column. 03.07.2019 | no |
| GEOMAH | Sommer Stefan | 1 | n miles | H80 Other physical measurements |
Underway measurements during the whole trip such as coordinates, depth, meteorological parameter and so on | yes |
| GEOMAH | Sommer Stefan | 1 | meas. | M06 Routine standard measurements |
Analysen, meteorolog. Daten, Satelitenbilder, Trajektorien, Wetterberichte | yes |
Verankerungen / Moorings
| Institut Institute |
Wissenschaftler Scientist |
Typ der Messungen Type of measurements |
Kommentar Comments |
geogr.Breite Latitude |
geogr.Länge Longitude |
Daten im DOD Data in DOD |
|---|---|---|---|---|---|---|
| GEOMAH | Kortzinger Arne | D05 | Lagrangian Surface Drifter | 18° 1.2' N | 19° 32.8' W | no |
| GEOMAH | Kortzinger Arne | D05 | Waveglider | 18° 0.2' N | 19° 32.8' W | no |
| GEOMAH | Kortzinger Arne | D05 | Waveglider | 18° 34.8' N | 18° 5.0' W | no |
| GEOMAH | Greinert Jens | G71 | BBL Lander for seafloor observation | 18° 5.9' N | 17° 58.8' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 17° 46.2' N | 18° 3.2' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 17° 60.0' N | 22° 0.0' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 0.0' N | 24° 20.0' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 0.0' N | 19° 33.0' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 10.3' N | 16° 31.0' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 14.2' N | 18° 9.4' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 16.9' N | 18° 11.5' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 18° 34.7' N | 18° 5.0' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 19° 19.8' N | 18° 45.3' W | no |
| GEOMAH | Sommer Stefan | G71 | BIGO Lander for benthic flux measurements | 21° 10.0' N | 21° 10.0' W | no |