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298 results for “Adriatic Sea”

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zenodo48/100

Moored current and temperature measurements in the Southern Adriatic Sea at mooring site BB and FF, March 2012-June 2020

<p>This data set includes n.4 files (NetCDF format) containing observational data and related metadata from two mooring sites, sites BB and FF, located in the Southern Adriatic Sea from the period from March 2012 to June 2020. The stand-alone moorings are equipped with an ADCP-RDI system which measures currents along the last 100 meters of the water column and a CTD probe located approximatively 10 m above the bottom. Moorings were configured and maintained for continuous long-term monitoring following the approach of the CIESM Hydrochanges Program (www.ciesm.org/marine/programs/hydrochanges.html). The moorings are currently operational as from 2021 they have joined&nbsp; the southern Adriatic submarine observatory of EMSO-ERIC European Consortium.&nbsp; The data are described in data paper Paladini et al., (In prep): Deep water hydrodynamic observations of two moorings&thinsp;sites on the continental slope of the Southern Adriatic Sea (Mediterranean Sea).&nbsp;</p>

opencc-by-4.0May 2022View details →
zenodo44/100

Water Body Checklists 2019: Adriatic Sea Species List

Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Adriatic Sea using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.

opencc-by-4.0Aug 2024View details →
zenodo44/100

Adriatic Sea wind-wave climate years 1981-2010 and 2021-2050 (RCP4.5 and RCP8.5)

<p>Adriatic Sea&nbsp;mean&nbsp;annual 50th, 90th, 95th&nbsp;and 99th&nbsp;percentiles of the significant wave height (Hs) from WAVEWATCH III v6.07 (2 km)&nbsp;forced with&nbsp;1-hour ERA5 wind fields statistically scaled to QQ-match COSMO-CLM fields (available at&nbsp;https://doi.org/10.5281/zenodo.6021380).</p> <p>Reference periods:</p> <p>1) Historical climate: years 1981-2010</p> <p>2) Future climate: years 2021-2050 (IPCC scenario RCP4.5 and RCP8.5)</p>

opencc-by-4.0Feb 2022View details →
zenodo44/100

Adriatic Sea wind climate years 1981-2010 and 2021-2050 (RCP4.5 and RCP8.5)

<p>Adriatic Sea mean&nbsp;annual 50th, 90th, 95th&nbsp;and 99th&nbsp;percentiles of the sea surface wind speed&nbsp;(10-m height U10) from 1-hour ERA5 fields (25 km) statistically scaled to QQ-match COSMO-CLM fields (8 km).</p> <p>Reference periods:</p> <p>1) Historical climate: years 1981-2010</p> <p>2) Future climate: years 2021-2050 (IPCC scenario RCP4.5 and RCP8.5)</p>

opencc-by-4.0Feb 2022View details →
zenodo44/100

Adriatic Sea wind and wave time series years 1981-2010 and 2021-2050 (RCP4.5 and RCP8.5)

<p>Wind and wave time series for 27 stations in the Adriatic Sea.</p> <p>Variables:</p> <p>-&nbsp;10-m height&nbsp;wind speed&nbsp;(wnd) and wind direction (wnddir) from&nbsp;1-hour ERA5 fields (25 km) statistically scaled to QQ-match COSMO-CLM fields (8 km)</p> <p>- significant wave height (hs)&nbsp;and&nbsp;peak wave period (tp) from WAVEWATCH III v6.07 (2 km)&nbsp;forced with&nbsp;the scaled ERA5 wind fields</p> <p>Reference periods:</p> <p>- Historical climate: years 1981-2010</p> <p>- Future climate: years 2021-2050 (IPCC scenario RCP4.5 and RCP8.5)</p>

opencc-by-4.0Feb 2022View details →
zenodo44/100

Water Body Checklists: Adriatic Sea Species List

Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Adriatic Sea using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.

opencc-zeroAug 2024View details →
zenodo44/100

HIdden fishing activity hotspots in the Adriatic Sea in 2019

<p>The animated image shows&nbsp;the unreported fishing activity hotspots in the Adriatic in 2019. The datasets report the fishing activity ban areas in the Adriatic over the months and the reported, unreported, total, unreported/total fishing hour distributions across the months estimated by our workflow for vessel data processing (Coro et al., 2023).</p>

opencc-by-4.0Dec 2022View details →
zenodo44/100

Moored echo and turbidity measurements in the Southern Adriatic Sea at mooring site BB and FF, March 2012-June 2020

<p>This data set includes four files (CSV format) containing observational data from two oceanographic moorings, BB and FF, located in the Southern Adriatic Sea from the period between March 2012 and June 2020. The stand-alone moorings are equipped with a 300 kHz ADCP-RDI system, which measures currents along the last 100 meters of the water column and a CTD recorder equipped with SeaPoint turbidity meter sensor located approximatively 10 m above the bottom. The turbidity sensor measures in a range of 0-25 FTU. Moorings were configured and maintained for continuous long-term monitoring following the approach of the CIESM Hydrochanges Program (www.ciesm.org/marine/programs/hydrochanges.html). The moorings are currently operational as from 2021 they have joined the southern Adriatic Sea submarine observatory system of the EMSO-ERIC European Consortium. The data were subjected to quality control (QC) and the coding numbers used, shown in a dedicated column, follow the SeaDataNet L20 measurement qualifiers flags. QC applied on echo data consists of detecting signal anomalies due to interactions with the seafloor and identifying if the signal falls below a minimum threshold for which the value is no longer considered reliable. For turbidity data, QC is addressed to the detections of possible spikes, anomalies, and sensor saturation in the recordings.</p>

opencc-by-4.0Jan 2023View details →
zenodo40/100

Fig. 3 in Description of Brooksia lacromae sp. nov. (Tunicata, Thaliacea) from the Adriatic Sea

Fig. 3. Drawing of the blastozooid of Brooksia lacromae sp. nov. (sinistral individual). A. Dorsal view. B. Ventral view. Abbreviations: ap1–3 = attachment processes; as = atrial siphon; br = branchial bar; dt = dorsal tubercle; e = embryo; en = endostyle; g = ganglion; h = heart; nu = nucleus; os = oral siphon; pb = peripharyngeal band; IL–IVL = left side muscles; IR–IIIR = right side muscles; IM1 and IM2 = intermediate muscles.

opencc-by-3.0May 2016View details →
zenodo40/100

Fig. 4 in Description of Brooksia lacromae sp. nov. (Tunicata, Thaliacea) from the Adriatic Sea

Fig. 4. Brooksia lacromae sp. nov. A. Photograph of the ventral side of the dextral blastozooid. B. Photograph of the dorsal side of the sinistral blastozooid. C. Photograph of the lateral side of a blastozooid. D. Detail of the ventral posterior end of an oozooid. All indivuduals were dyed with Janus Green dye. Abbreviations: st = stolon; tp = test processus.

opencc-by-3.0May 2016View details →
zenodo40/100

Fig. 2 in Description of Brooksia lacromae sp. nov. (Tunicata, Thaliacea) from the Adriatic Sea

Fig. 2. Oozooid of Brooksia lacromae sp. nov. A. Dorsal view, drawing. B. Ventral view, drawing. C. Dorsal view, photograph of an individual dyed with Janus Green, with an arrow indicating breakage in the proboscis during collection. Abbreviations: as = atrial siphon; bl = branching of the ventral longitudinal muscle; br = branchial bar; dt = dorsal tubercle; en = endostyle; g = ganglion; im = intermediate muscle; lm = longitudinal muscle; lo = openings in the longitudinal muscle; nu = nucleus; os = oral siphon; p = proboscis; pb = peripharyngeal band; st = stolon; tp = test processus; I–VII = body muscles.

opencc-by-3.0May 2016View details →
zenodo40/100

Fig. 1 in Description of Brooksia lacromae sp. nov. (Tunicata, Thaliacea) from the Adriatic Sea

Fig. 1. Position of the Lokrum station in the South Adriatic, where specimens of Brooksia lacromae sp. nov. were collected.

opencc-by-3.0May 2016View details →
zenodo40/100

FIG. 16. — A in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 16. — A, Raphitoma stanici Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp., paratype, coll. STA, 13.22 mm, Brač Is., Croatia; B, R. echinata sensu Auctores - morphotype 3, 12.7 mm, Le Grau du Roi, France; C, R. echinata AA. - morphotype 4, 9.2 mm, Saronic Gulf, Greece; D, E, R. echinata AA. - morphotype 2: D, 18.3 mm, Sevid, Croatia; E, 9.55 mm, Saronic Gulf, Greece; F, G, R. echinata AA. - morphotype 5: F, 9.4 mm, Saronic Gulf, Greece; G, 8.0 mm, Alboran Sea, Spain. Scale bars: 3 mm. Photos courtesy: E, F, Kontadakis.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 13. — A in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 13. — A, Murex echinatus Brocchi, 1814, lectotype, MCSNM i5427, 21.6 mm; B, Raphitoma cordieri (Payraudeau, 1826), 22.0 mm, Capraia Is., Italy; C, after Brocchi (1814: fig. 3), 19.0 mm; D, Murex echinatus Brocchi, 1814, paralectotype, MCSNM i5428, 18.6 mm; E, Raphitoma echinata sensu Auctores - morphotype 1, 13.0 mm, Mljet Is., Croatia. Scale bars: 5 mm. A, D: photo courtesy by Michele Zilioli (MCSNM).

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 12. — A, B in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 12. — A, B, live specimens of Raphitoma stanici Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp.: A, Sukošan, depth 3-5 m, 19.4 mm; B, Biograd, depth 2 m, 16.1 mm. Photos courtesy: A. Petani.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 11 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 11. — Raphitoma stanici Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp., Brač Island, paratype 13, MNHN, 12.4 mm: A, dorsal view of protoconch; B, detail of microgranules; C-D, apical and frontal view of protoconch; E, detail of transition from protoconch to teleoconch. Scale bars: A, C-E, 300 µm; B, 20 µm.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 10 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 10. — Raphitoma stanici Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp.: A, holotype, MNHN-IM-2000-34890, 14.3 mm, Sukošan; B, paratype, coll. STA, 14.5 mm, Brač Is.; C, paratype, coll. RGS 120249, 16.1 mm, Sukošan; D, paratype, coll. PRK, 16.5 mm, Sukošan; E, paratype, coll. PUS 2801, 14.3 mm, Brač Is.; F, paratype, coll. PRK, 17.1 mm, Sukošan.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 8 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 8. — Raphitoma pusaterii Prkić &amp; Giannuzzi-Savelli n. sp., Mljet Island: A, holotype, MNHN-IM-2000-34889, h = 8.75 mm; B, paratype, coll. RGS 120247, h = 7.35 mm; C, paratype, coll. PRK, h = 9.2 mm; D, paratype, coll. PRK, h = 7.2 mm; E, paratype, coll. RGS 120248, h = 6.8 mm; F, coll. RGS, h = 5.8 mm.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 6. — A-C in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 6. — A-C, Raphitoma petanii Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp., Stari Trogir, h = 8.05 mm, frontal view of shell (A), apical (B) and frontal (C) view of protoconch; D, E, Raphitoma densa (Monterosato, 1884), protoconch (D) and detail of microgranules at first teleoconch whorl (E). Scale bars: A, 1 mm; B-E, 200 µm.

opencc-zeroMay 2020View details →
zenodo40/100

FIG. 7 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)

FIG. 7. — Photographs of living animals of Raphitoma petanii Prkić, Giannuzzi-Savelli &amp; Pusateri n. sp. (A, B) and Raphitoma densa (Monterosato, 1884) (C). A, Zaton, depth 1-2 m, h = 7.85 mm; B, Sukošan, depth 0.5-1 m, h = 12.45 mm; C, Vir Is., depth 1 m, h = 11.1 mm. Photos courtesy: A. Petani.

opencc-zeroMay 2020View details →

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