Literatura académica sobre el tema "Taranto Bay"
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Artículos de revistas sobre el tema "Taranto Bay"
Mercurio, Maria, Cataldo Pierri, Frine Cardone y Giuseppe Corriero. "Temporal and Spatial Variations of Geodia cydonium (Jameson) (Porifera, Demospongiae) in the Mediterranean Confined Environments". Diversity 13, n.º 12 (25 de noviembre de 2021): 615. http://dx.doi.org/10.3390/d13120615.
Texto completoPolcari, Marco, Matteo Albano, Antonio Montuori, Christian Bignami, Cristiano Tolomei, Giuseppe Pezzo, Sergio Falcone et al. "InSAR Monitoring of Italian Coastline Revealing Natural and Anthropogenic Ground Deformation Phenomena and Future Perspectives". Sustainability 10, n.º 9 (4 de septiembre de 2018): 3152. http://dx.doi.org/10.3390/su10093152.
Texto completoKATSANEVAKIS, S., Ü. ACAR, I. AMMAR, B. A. BALCI, P. BEKAS, M. BELMONTE, C. C. CHINTIROGLOU et al. "New Mediterranean Biodiversity Records (October, 2014)". Mediterranean Marine Science 15, n.º 3 (14 de noviembre de 2014): 675. http://dx.doi.org/10.12681/mms.1123.
Texto completoKAPIRIS, K., C. APOSTOLIDIS, R. BALDACCONI, N. BAŞUSTA, M. BILECENOGLU, G. BITAR, D. C. BOBORI et al. "New Mediterranean Biodiversity Records (April, 2014)". Mediterranean Marine Science 15, n.º 1 (9 de abril de 2014): 198. http://dx.doi.org/10.12681/mms.737.
Texto completoΖΕΝΕΤΟΣ, Α., E. H. KH AKEL, C. APOSTOLIDIS, M. BILECENOGLU, G. BITAR, V. BUCHET, N. CHALARI et al. "New Mediterranean Biodiversity Records (April 2015)". Mediterranean Marine Science 16, n.º 1 (21 de enero de 2015): 266. http://dx.doi.org/10.12681/mms.1292.
Texto completoKaev, A. M., G. N. Dzen, P. S. Sukhonos y I. S. Bobrov. "ESTIMATION OF ABUNDANCE FOR THE MIGRATING JUVENILE PINK SALMON IN THE RIVERS OF SAKHALIN AND ITURUP ISLANDS IN 2019". Izvestiya TINRO 200 (26 de marzo de 2020): 82–100. http://dx.doi.org/10.26428/1606-9919-2020-200-82-100.
Texto completoAmodio, M., G. de Gennaro, A. Di Gilio y M. Tutino. "Monitoring of the Deposition of PAHs and Metals Produced by a Steel Plant in Taranto (Italy)". Advances in Meteorology 2014 (2014): 1–10. http://dx.doi.org/10.1155/2014/598301.
Texto completoFranzo, Annalisa, Katja Guilini, Tamara Cibic y Paola Del Negro. "Structure and function of nematode assemblages in contaminated sediments: what can we learn from the Mar Piccolo of Taranto (Ionian Sea)?" Journal of the Marine Biological Association of the United Kingdom 98, n.º 8 (24 de agosto de 2018): 1845–57. http://dx.doi.org/10.1017/s0025315418000553.
Texto completoBalanov, A. A., A. I. Markevich y S. F. Solomatov. "The distribution of Stichaeus ochriamkini Taranetz, 1935 (Pisces: Stichaeidae) in the Peter the Great Bay of the Sea of Japan and some data on its biology". Russian Journal of Marine Biology 38, n.º 5 (septiembre de 2012): 392–99. http://dx.doi.org/10.1134/s1063074012050033.
Texto completoLitvinenko, A. V., N. K. Khristoforova y V. Yu Tsygankov. "FEEDING LOCATION INFLUENCE ON THE HEAVY METAL CONTENT IN PINK SALMON (ONCORHYNCHUS GORBUSCHA, SALMONIDAE)". Bulletin оf Kamchatka State Technical University, n.º 62 (2022): 98–116. http://dx.doi.org/10.17217/2079-0333-2022-62-98-116.
Texto completoTesis sobre el tema "Taranto Bay"
Galea, Anthony. "Large-Eddy Simulation for wind and tidally driven sea circulation in coastal semi-closed areas". Doctoral thesis, Università degli studi di Trieste, 2014. http://hdl.handle.net/10077/10160.
Texto completoA novel high-resolution, eddy-resolving numerical model (LES-COAST) is used to investigate currents, mixing and water renewal in Barcelona harbour and Taranto bay. These environmental sites are of particular importance due to the interplay between touristic and commercial activities, requiring detailed and high-definition studies of water quality within the harbour. We use Large Eddy Simulation (LES) which directly resolves the anisotropic and energetic large scales of motion and parametrizes the small, dissipative, ones. Small-scale turbulence is modelled by the Anisotropic Smagorinsky Model (ASM) which is employed in presence of large cell anisotropy. The complexity of the harbour is modelled using a combination of curvilinear, structured, non-staggered grid and the Immersed Boundary Method (IBM). Both computation grids and harbour structures are purposely constructed for these applications by appropriate programs. Boundary conditions for wind forcing at the free surface and currents at the inlets of the port are obtained from in-situ measurements (for the case of Barcelona harbour) or by nesting this numerical model into a coastal model (Taranto bay). In this dissertation thesis an important modification to LES-COAST is implemented and is proposed as a prototype scheme, namely the possibility to consider the effect of surface waves in coastal semi-closed areas. Particularly, a linear formulation of the free surface boundary condition is considered, which would be able to reproduce the presence of seiches and tides on the dynamics of the area under investigation. The methodology is validated against analytical solution for a stationary oscillating surface wave in a simple computational grid.In both harbours considered, first- and second-order statistics, such as the mean velocity field, turbulent kinetic energy, and horizontal and vertical eddy viscosities are calculated and their spatial distribution is assessed. Water residence time is also considered for the two coastal semi-closed areas examined. Finally, the LES solution is validated against available field data.The study shows the presence of sub-surface elongated rolling structures (with a time scale of a few hours), contributing to the vertical water mixing. The time-averaged velocity field reveals intense upwelling and downwelling zones along the walls of the harbours. The analysis of second-order statistics in these harbours shows strong inhomogeneity of turbulent kinetic energy and horizontal and vertical eddy viscosities in the horizontal plane, with larger values in the regions characterized by stronger currents. The water renewal within the port is quantified for particular sub-domain regions, showing that the complexity of the harbour is such that certain inner basins of Barcelona harbour have a water renewal of over five days, including its yacht marina area, and over seven days for Taranto bay. For the Barcelona simulation, the LES solution compares favourably with available current-meter data; it is also compared with a RANS solution obtained in literature for the same site under the same forcing conditions, the comparison demonstrating a large sensitivity of properties to model resolution and frictional parametrization.
XXVI Ciclo
1986
Libros sobre el tema "Taranto Bay"
Roche, David. Quentin Tarantino. University Press of Mississippi, 2018. http://dx.doi.org/10.14325/mississippi/9781496819161.001.0001.
Texto completoInsdorf, Annette. An Eye for an “I”. University of Illinois Press, 2017. http://dx.doi.org/10.5406/illinois/9780252036859.003.0001.
Texto completoClément-Tarantino, Séverine y Susanna Braund. The Aeneid and ‘Les Belles Lettres’. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198810810.003.0015.
Texto completoGiles, Paul. The Planetary Clock. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198857723.001.0001.
Texto completoCapítulos de libros sobre el tema "Taranto Bay"
Conolly, Jez. "‘It’s not dead yet!’". En The Thing, 75–90. Liverpool University Press, 2014. http://dx.doi.org/10.3828/liverpool/9781906733773.003.0007.
Texto completoInformes sobre el tema "Taranto Bay"
Lifschitz, Eliezer y Elliot Meyerowitz. The Relations between Cell Division and Cell Type Specification in Floral and Vegetative Meristems of Tomato and Arabidopsis. United States Department of Agriculture, febrero de 1996. http://dx.doi.org/10.32747/1996.7613032.bard.
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