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  • 1
    Publication Date: 2016-10-28
    Description: Observations from a four-year current meter mooring at 28°44′N, 13°28′W in the Lanzarote passage are used to describe the transport variability of the Eastern Boundary Current of the North Atlantic Subtropical Gyre. Three different water masses are found in the passage: North Atlantic Central Water in the upper levels (roughly Full-size image (〈1 K)), Antarctic Intermediate Water (roughly Full-size image (〈1 K)) and Mediterranean Water in the layer above the bottom at Full-size image (〈1 K). The mean southward transport of NACW is Full-size image (〈1 K)Full-size image (〈1 K) which is the transport of the easternmost branch of the Canary Current. Fluctuations of NACW transport are large, ranging from Full-size image (〈1 K) southward to Full-size image (〈1 K) northward. Every autumn a consistent northward transport is observed, which may be related with the eastern boundary upwelling dynamics. The mean transports of AAIW and MW are Full-size image (〈1 K) northward and Full-size image (〈1 K) southward, respectively. Fluctuations of transport of AAIW and MW are large, from 1.0 to Full-size image (〈1 K) and from −0.32 to Full-size image (〈1 K), respectively. Thus, the mass transports for each water mass show a high standard deviation of comparable magnitude to the mean. This highlights the importance of the temporal variability of the currents in this passage. A remarkable feature of our observations is that the mean transports of NACW and AAIW during an El Niño event are significantly different.
    Type: Article , PeerReviewed
    Format: text
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  • 2
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    Pergamon Press
    In:  Deep Sea Research Part II: Topical Studies in Oceanography, 49 (17). pp. 3427-3440.
    Publication Date: 2020-08-05
    Description: To study the EasternBoundaryCurrentsystem off Northwest Africa in detail several CTD/ADCP-sections and long-term mooring work were carried out in the channel between Lanzarote and Africa. The observations are compared with a fine-resolution model, which was developed in the framework of the CANIGO project. The water masses, which are observed in this area, are characterised and classified in density ranges. The current field shows a high spatial and temporal variability with maximum velocities of about 35 cm/s. Seasonal means as well as currents averaged across the channel are only a few cm/s. In the surface water a steady southward flow in the middle of the channel indicates the CanaryCurrent in this area. During fall a strong northward current is observed close to the African shelf. Though the CanaryCurrent strengthens during summer and fall due to an increase of the trade winds, the transport in the channel decreases or turns northward during that time due to the enhanced poleward current at the eastern side. A northward undercurrent with a mean velocity of +2.3 cm/s is observed at the African slope in 950 m depth. The poleward transport of AAIW increases during fall and a strong influence of relatively fresh AAIW is observed during that time. Most of the observations fit well to the results of the CANIGO model, but the occurrence of MW at the bottom of the channel and the corresponding southward flow cannot be resolved by the model.
    Type: Article , PeerReviewed
    Format: text
    Location Call Number Limitation Availability
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