Dynamic sediment profile imaging (DySPI): a new field method for the study of dynamic processes at the sediment-water interface

Autor: Blanpain, Olivier, Bailly du Bois, Pascal, Cugier, Philippe, Lafite, Robert, Lunven, Michel, Dupont, Jacky, Le Gall, Erwan, Legrand, Julien, Pichavant, Pascal
Přispěvatelé: Laboratoire de Radioécologie de Cherbourg-Octeville (LRC), Institut de Radioprotection et de Sûreté Nucléaire (IRSN), Institut Français de Recherche pour l'Exploitation de la Mer - Brest (IFREMER Centre de Bretagne), Institut Français de Recherche pour l'Exploitation de la Mer (IFREMER), Morphodynamique Continentale et Côtière (M2C), Université de Caen Normandie (UNICAEN), Normandie Université (NU)-Normandie Université (NU)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Rouen Normandie (UNIROUEN), Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)
Jazyk: angličtina
Rok vydání: 2009
Předmět:
Zdroj: Limnology and Oceanography: Methods
Limnology and Oceanography: Methods, Association for the Sciences of Limnology and Oceanography, 2009, 7 (1), pp.8-20. ⟨10.4319/lom.2009.7.8⟩
Limnology and Oceanography: Methods, Association for the Sciences of Limnology and Oceanography, 2009, 7, pp.3-20. ⟨10.4319/lom.2009.7.8⟩
ISSN: 1541-5856
DOI: 10.4319/lom.2009.7.8⟩
Popis: International audience; Sediment transport processes at the sediment-water interface are usually studied using flume tests. Due to technical limitations, extreme hydro-sedimentary conditions are then rarely considered. Sediment profile imaging (SPI) is a widely used technique for mapping benthic habitat quality in soft sediments but several limitations exist that make the system ineffective for coarse or indurate sediment investigations and for transport processes studies. To address this problem, a modified system was designed to investigate these processes in situ, on a grain-size scale, with high temporal resolution. A dynamic sediment profile imaging (DySPI) system was constructed with a new mode of penetration, an appropriate design and an imaging system based on high-definition video recording. The supporting frame was instrumented with autonomous sensors to monitor boundary layer characteristics along with video observations. This system was deployed during spring tide on sediment characterized by a mixture of particle sizes dominated by coarse grains. Appropriate image processing allowed determination of the area of sediment entrained, movement threshold, size of moving particles, instantaneous transport rate and interface profile changes, in addition to usual SPI parameters. However, DySPI is a prototype and further development of the instrument and the image processing are possible to enlarge the scope presented in this study.
Databáze: OpenAIRE