Matches in Nanopublications for { ?s ?p ?o <https://w3id.org/np/RAyKZ-z8ofPD-lXVSrsBuV6OctR5r4hvdpL6jRc_VTmOQ/assertion>. }
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- 3949 description "" assertion.
- 2b7e42ca-0223-446d-b621-d1d55ff37602 description "Within the MAELSTROM project two complementary marine litter removal technologies are developed and tested. An automated seabed cleaning platform has been developed with a cable-robot able to remove marine litter from the seafloor at demo locations in the coastal area near Venice (Italy), and a Bubble Barrier system will be implemented to remove marine litter from the water column in the Ave estuary (Portugal). In order to select locations where the technologies can best be applied and to assess the impact of the litter removal on marine life, we have set-up and applied numerical models. Furthermore, results of field observations that were carried out in the framework of MAELSTROM are analysed and are put into context using the numerical modelling results." assertion.
- 74879f7d-039a-4e11-9382-2778955908aa description "Demo site 2" assertion.
- 772206d8-d680-4ed4-aa0f-a86482c5b428 description "Demo site 2" assertion.
- 14918765 description "Buschman, F. A., Iglesias, I., Ghezzo, M., McKiver, W., De Pascalis, F., Zaggia, L., Boisgontier, H., & Tiessen, M. (2023). D2.2 Numerical modelling and field campaigns to support litter removal at the demo sites. MAELSTROM Project. https://doi.org/10.5281/zenodo.14918765" assertion.
- 14920205 description "Ghezzo, M., MOSCHINO, V., Galvez, D., Mira Veiga, J., Bocci, M., Iglesias, I., Vieira, L., Sousa Pinto, I., Antunes, S. C., & Correia, A. M. (2021). D2.1 Report on the characterization of major sources of marine litter and macro-plastic in the demo sites. MAELSTROM Project. https://doi.org/10.5281/zenodo.14920205" assertion.
- 35e7cfd3-44d6-4979-8322-347634114abf description "A bubble Barrier that removes litter from rivers is being applied in the Ave estuary (Portugal) in the framework of the MAELSTROM Project. In order to identify the location where the technology could possibly best be applied and to assess the impact of the litter removal on marine life, MAELSTROM makes use of numerical models. Facing the limited field data and absence of available models, we carried out field campaigns, set-up a hydrological model for the Ave river basin and set-up a hydrodynamic model for the estuarine region. The field studies included a bathymetric survey, short-term (12.5 hours) and long-term (several weeks) campaigns. Aiming to understand the temporal and spatial variation of the flow velocity in the estuary, and particularly in the area where the Bubble Barrier system is planned to be implemented, we have analysed observations from a boat sailing across the estuary (short-term), we have analysed observations at selected locations (long-term) and we have set-up a 3-dimensional (3D) hydrodynamic model to give insight in the flow velocity distribution. Only during the short-term campaigns the river discharge is known, which was relatively low during these campaigns. Since the river discharge is an important condition for the hydrodynamic model, we have only obtained maximal flow velocity maps for low river discharge. For higher river discharge we show a maximal flow velocity observed during a long-term campaign and we estimate maximal flow velocity based on an extreme river discharge." assertion.