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121 results for “South Siberia”
Global River BankFull Discharge (GQBF) - Siberia(SI) & South Pacific/Australia(SP)
<p>The GQBF is the estimated bankfull discharge across ~2.87 million km (length) of global river reaches. The bankfull discharge here is defined as the maximum flow rate contained within a river just before inundation occurs in the surrounding floodplain. We based our river bankfull discharge estimation on a newly developed river network, Global RIver Topology (GRIT), using GRIT’s river reaches as the spatial scale to represent the variation in bankfull discharge. We included all GRIT river reaches that coincided with the Global River Width from Landsat (GRWL) river masks (with overlapping ratio >=0.5). This selects river reaches with satellite-derived width measurements >=30 m, resulting in a total length of ~2.87 million km. Here, the GQBF represents the time-averaged bankfull discharge at <1 km (river length) spatial resolution.</p> <p><strong>Regions</strong></p> <p>Added regions SI, SP Vector files.</p> <ul> <li>SI - Siberia</li> <li>SP - South Pacific/Australia</li> </ul> <p>The subcontinental catchment groups (vector, polygons) can be found at <a href="https://zenodo.org/records/11219313">GRIT domain polygon</a> (GRITv06_domain_GLOBAL.gpkg.zip). They allow for more fine-grained subsetting of data .</p> <p>Vector files are provided in geographic WGS84 coordinates (EPSG:4326).</p> <p><strong>Change log</strong></p> <ul> <li>v0.1 - 2024-09-29<br> <ul> <li>First globally complete dataset published</li> </ul> </li> <li>v0.1 - 2024-11-19 <ul> <li>Add vector files for regions SI, SP</li> </ul> </li> </ul>
Bias-corrected monthly precipitation data over South Siberia for 1979-2019
<p>Bias-<strong>C</strong>orrected <strong>P</strong>recipitation data over <strong>S</strong>outh <strong>S</strong>iberia (<strong>CPSS 1.2</strong>) contains monthly precipitation data for the area within the coordinates 50–65 N, 60–120 E for the period from January 1979 to December 2019. CPSS data were combined from monthly total precipitation data from ERA5 reanalysis European Centre for Medium-Range Weather Forecasts (Copernicus Climate Change…, 2017) and precipitation data records from ground weather stations (Il’in et al., 2013). The ERA5 data were scaled according to the derived scale coefficient. The linear scaling coefficient for each month and weather station were calculated and extrapolated to the study area using the ordinary kriging method. Data spatial resolution is 0.25° in the latitude and 0.25° in the longitude. CPSS reproduces the spatial variability of precipitation more precisely than can be done from the weather station observation network. The CPSS dataset will be useful for the study of extreme precipitation events and allow for more accurate hydrologic risk assessment at a regional level based on climate model results. Data provided in NetCDF (Network Common Data Form) format.</p> <p>Copernicus Climate Change Service (C3S), 2017. <em>ERA5: Fifth generation of ECMWF atmospheric reanalyses of the global climate.</em> Copernicus Climate Change Service Climate Data Store (CDS), Available at <a href="https://cds.climate.copernicus.eu/cdsapp#!/home"><em>https://cds.climate.copernicus.eu/cdsapp#!/home</em></a></p> <p>Il’yin, B.M., Bulygina, O.N., Bogdanova, E.G, Veselov, V.M. and Gavrilova, S.Y., 2013. <em>Dataset of monthly precipitation totals, with the elimination of systematic errors of precipitation gauges</em>. Available at <a href="http://meteo.ru/data/506-mesyachnye-summy-osadkov-s-ustraneniem-sistematicheskikh-pogreshnostej-osadkomernykh-priborov"><em>http://meteo.ru/data/506-mesyachnye-summy-osadkov-s-ustraneniem-sistematicheskikh-pogreshnostej-osadkomernykh-priborov</em></a></p>
Рис. 2. Ischnodes sibiricus (A) и Aplocnemus nigricornis (B). Линейка — 1 мм Fig 2. Ischnodes sibiricus (A) and Aplocnemus nigricornis (B). Scale bar — 1 mm in The beetles (Coleoptera) in nests of hollow-nesting birds in the south-east of Western Siberia (Tomskaya Region)
Рис. 2. Ischnodes sibiricus (A) и Aplocnemus nigricornis (B). Линейка — 1 мм Fig 2. Ischnodes sibiricus (A) and Aplocnemus nigricornis (B). Scale bar — 1 mm
Figure 1 in New finding of Convolvulus hawkmoth - Agrius convolvuli (Linnaeus, 1758) (Lepidoptera, Sphingidae) in the south of Western Siberia
Figure 1. Agrius convolvuli (Linnaeus, 1758), male, Russia, Altai Krai, near Barnaul, Turina Gora, 4.x.2020, leg. I. Volgin (private collection of I. Volgin, Barnaul, Russia).
Figures 5–6. 5 in New results of testing the attractant EFETOV-2 in the Far East of Russia, Siberia and South Africa
Figures 5–6. 5. Russia, Zabaykalskiy Kray, Chita Region, Mogocha District, 34 km NE of Amazar vill. Habitat of Rh. pruni pruni. 6. South Africa, KwaZulu-Natal Province, Giant's Castle Camp. Habitat of P. ochroptera. (All photos by S.A. Knyazev).
Figures 1–2. 1 in New results of testing the attractant EFETOV-2 in the Far East of Russia, Siberia and South Africa
Figures 1–2. 1. Male of Illiberis kardakoffi (Primorskiy Kray, vic. Anisimovka). 2. Male of Rhagades pruni pruni (Zabaykalskiy Kray, 34 km NE of Amazar).
Figures 3–4. 3 in New results of testing the attractant EFETOV-2 in the Far East of Russia, Siberia and South Africa
Figures 3–4. 3. Russia, Primorskiy Kray, Shkotovo District, vic. Anisimovka. Habitat of I. kardakoffi. 4. Russia, Primorskiy Kray, Khasanskiy District, vic. Vityaz. Habitat of I. kardakoffi and Rh. pruni chinensis.
Figure 5 in Species composition and ecological structure of ground beetle communities (Coleoptera, Carabidae) in reclaimed rock dumps in the south of Western Siberia
Figure 5. Ratio of species (first columns) and numerical (second columns) abundance of ground beetle trophic classes, %
Bias-corrected monthly air temperature data over South Siberia for 1979-2020 (CTSS 1.0)
<p>Bias-<strong>C</strong>orrected Air <strong>T</strong>emperature data over <strong>S</strong>outh <strong>S</strong>iberia (<strong>CTSS 1.0</strong>) contains monthly air temperature at 2m for the area within the coordinates 50–65 N, 60–120 E for the period from January 1979 to December 2020. CTSS data were combined from monthly total air temperture data from ERA5 reanalysis European Centre for Medium-Range Weather Forecasts (Copernicus Climate Change…, 2017) and temperature data records from ground weather stations (Bulygina et al., 2014). The ERA5 data were scaled according to the derived correction coefficient. The additive coefficient for each month and weather station were calculated and extrapolated to the study area using the ordinary kriging method. Data spatial resolution is 0.25° in the latitude and 0.25° in the longitude. CTSS reproduces the spatial variability of temperature more precisely than can be done from the weather station observation network. Data provided in NetCDF (Network Common Data Form) format.</p> <p>Copernicus Climate Change Service (C3S), 2017. <em>ERA5: Fifth generation of ECMWF atmospheric reanalyses of the global climate.</em> Copernicus Climate Change Service Climate Data Store (CDS), Available at: <a href="https://cds.climate.copernicus.eu/cdsapp#!/home"><em>https://cds.climate.copernicus.eu/cdsapp#!/home</em></a></p> <p><em>Bulygina O.N., Razuvaev V.N., Trofimenko L.T., Shvets N.V., 2014. Description of the monthly air temperature data at weather stations of Russia.</em> Certificate of state registration of the database No. 2014621485 Available at: <a href="http://meteo.ru/data/156-temperature"><em>http://meteo.ru/data/156-temperature</em></a></p>
Fig. 1 in First Record Of Libelloides Macaronius (Sco- Poli, 1763) (Neuroptera: Ascalaphidae) From The Republic Of Khakassia (South Siberia)
Fig. 1. Libelloides macaronius (Scopoli, 1763), female from Samokhval mountain.
Figs 1–12 in A NEW SPECIES OF PILL BEETLES OF THE GENUS CURIMOPSIS GANGLBAUER, 1902 (COLEOPTERA : BYRRHIDAE) FROM SOUTH SIBERIA
Figs 1–12. Curimopsis notiosibiricus sp. n., holotype male. 1 – external appearance,
Figure 2 in New and little known Pterophoridae species (Lepidoptera) of South Siberia
Figure 2. Biotope: Altai Republic, Chagan-Uzun, h = 2400 m. July 2017. Photo by S. Reshetnikov.
Figure 1 in New and little known Pterophoridae species (Lepidoptera) of South Siberia
Figure 1. Calyciphora ludmilae Ustjuzhanin & Kovtunovich, 2011, adult.
Figure 2 in New finding of Convolvulus hawkmoth - Agrius convolvuli (Linnaeus, 1758) (Lepidoptera, Sphingidae) in the south of Western Siberia
Figure 2. Distributional map of Agrius convolvuli (Linnaeus, 1758) in Western Siberia.
Figure 1 in Species composition and ecological structure of ground beetle communities (Coleoptera, Carabidae) in reclaimed rock dumps in the south of Western Siberia
Figure 1. Location of the study site. Free map received on site http://www.maphill.com/
FIGURES 57–65. Sabacon sergeidedicatum Martens, 1989 in The harvestmen fauna (Arachnida: Opiliones) of the Katunsky Biosphere Reserve and adjacent territories (South Siberia, Russia), with a description of a new species of Sabacon (Sabaconidae) and notes on Sabacon sergeidedicatum Martens, 1989
FIGURES 57–65. Sabacon sergeidedicatum Martens, 1989 (male 57–62, female 63: 57 Tomsk ISEA O.001.0274; 58–59 Shorsky National Park ISEA O.001.0255; 60 Khakassia ISEA O.001.0272; 61, 63 near Iogach ISEA O.001.0028; 62 Kazakhstan ISEA O.001.0279) and S. zateevi sp. nov. (64 male paratype ISEA O.001.0286; 65 female paratype ISEA O.001.0281): 57–62, 64 Male palpal coxae, retrolateral view; 63, 65 Female palpal coxae, retrolateral view. Scales: 0.1 mm.
FIGURES 45–56. Sabacon sergeidedicatum Martens, 1989 in The harvestmen fauna (Arachnida: Opiliones) of the Katunsky Biosphere Reserve and adjacent territories (South Siberia, Russia), with a description of a new species of Sabacon (Sabaconidae) and notes on Sabacon sergeidedicatum Martens, 1989
FIGURES 45–56. Sabacon sergeidedicatum Martens, 1989 (45–49, 51–55: 45, 51 Tomsk ISEA O.001.0274; 46, 52 Shorsky National Park ISEA O.001.0255; 47, 53 Khakassia ISEA O.001.0272; 48, 54 near Iogach ISEA O.001.0028; 49, 55 Kazakhstan ISEA O.001.0279) and S. zateevi sp. nov. (male paratype ISEA O.001.0286 50, 56): 45–50 Chelicera, retrolateral view; 51–56 Same, dorso-prolateral view. Scales: 0.5 mm.
FIGURES 22–27. Sabacon sergeidedicatum Martens, 1989 in The harvestmen fauna (Arachnida: Opiliones) of the Katunsky Biosphere Reserve and adjacent territories (South Siberia, Russia), with a description of a new species of Sabacon (Sabaconidae) and notes on Sabacon sergeidedicatum Martens, 1989
FIGURES 22–27. Sabacon sergeidedicatum Martens, 1989 (22–24) and S. zateevi sp. nov. (25–27, paratype from ISEA), scanning electron macrographs: 22, 25 Chelicera, retrolateral view; 23, 26 Palp, retrolateral view; 24, 27 Palpal patella, retrolatero-ventral view. Scales: 0.5 mm (22–23, 25–26), 0.1 (24, 27).
FIGURES 16–21 in The harvestmen fauna (Arachnida: Opiliones) of the Katunsky Biosphere Reserve and adjacent territories (South Siberia, Russia), with a description of a new species of Sabacon (Sabaconidae) and notes on Sabacon sergeidedicatum Martens, 1989
FIGURES 16–21. General appearances of Sabacon sergeidedicatum Martens, 1989 (16–17) and S. zateevi sp. nov. (18 Holotype, 19–21 paratypes): 16, 18–19 Males; 17, 20–21 Females. Scales: 1 mm.
FIGURES 11–15. Liropilio stukanovi Gritsenko, 1979 in The harvestmen fauna (Arachnida: Opiliones) of the Katunsky Biosphere Reserve and adjacent territories (South Siberia, Russia), with a description of a new species of Sabacon (Sabaconidae) and notes on Sabacon sergeidedicatum Martens, 1989
FIGURES 11–15. Liropilio stukanovi Gritsenko, 1979, SEM micrographs (11–13): 11, 14 Penis, dorsal view; 12, 15 Same, lateral view; 13 Glans and apical part, dorsal view. Scales: 1mm (11–12, 14–15), 0.1 mm (13).
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OpenNeuro
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