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EasyGSH-DB: Bathymetrie 2013

Definition: “Bathymetrie” bezeichnet die Vermessung der topographischen Gestalt der Sohle eines Gewässers. Der Begriff wird auch oft – analog zum Wort “Topographie” – synonym für die Gestalt der Gewässersohle verwendet. Gewässer in diesem Zusammenhang sind Meere, Flüsse oder geschlossene Binnengewässer. Im Rahmen des Projektes EasyGSH handelt es sich bei bathymetrischen Datensätzen um solche, die die Höhenverteilung in der Deutschen Bucht inklusive der Mündungsbereiche der Ästuare Ems, Weser und Elbe darstellen. Durch morphologische Aktivitäten des Gewässerbodens ist ein solches bathymetrisches Modell stets nur für einen gewissen Zeitraum oder Zeitpunkt gültig. Datenerzeugung: Die Basis für bathymetrische Produkte bilden gerasterte bathymetrische Modelle, die mithilfe des Funktionalen Bodenmodells, einem datenbasierten hindcast-Simulationsmodell, über räumlich-zeitliche Interpolationsverfahren aus einer Datenbasis von See- und Landvermessungen verschiedenster Datentypen erstellt werden. Für jedes Jahr von 1996 bis inklusive 2016 wird ein gerastertes bathymetrisches Modell in 10 m Auflösung für die Deutsche Bucht und zusätzlich in 250 m Auflösung für die Ausschließliche Wirtschaftszone für das Jahr 1996 erstellt. Produkt: Jeweils ein 10 m Raster der Deutschen Bucht gültig zum 01.07. für die Jahre von 1996 bis 2016, wobei an jedem Rasterknoten die Höhe abgelegt ist. 250 m Raster der Ausschließlichen Wirtschaftszone (1996). Das Produkt wird im GeoTiff- und Shapefile-Format bereitgestellt. Zitat für diesen Datensatz (Daten DOI): Sievers, J., Rubel, M., Milbradt, P. (2020): EasyGSH-DB: Themengebiet - Bathymetrie. Bundesanstalt für Wasserbau. https://doi.org/10.48437/02.2020.K2.7000.0002 Literatur: Sievers, J., Milbradt, P., Ihde, R., Valerius, J., Hagen, R., Plüß, A. (2021): An integrated marine data collection for the German Bight – Part 1: Subaqueous geomorphology and surface sedimentology (1996–2016). Earth System Science Data. https://doi.org/10.5194/essd-13-4053-2021 English Download: The data for download can be found under References ("Weitere Verweise"), where the data can be downloaded directly or via the web page redirection to the EasyGSH-DB portal.

Model Output Statistics for Mergentheim, Bad-Neunkirchen (Q076)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

WMS MSRL: D5 Eutrophierung (mv-lung)

Dieser WMS stellt die Ergebnisse für die Daten des LUNG im Land Mecklenburg-Vorpommern fuer den Deskriptor 5 (Eutrophierung) fuer die MDI-DE dar.

Model Output Statistics for Emmendingen-Mundingen (Q702)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

Model Output Statistics for REICHENAU/RAX (11380)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

Model Output Statistics for IOANNINA (16642)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

Model Output Statistics for Offenbach-Wetterpark (10641)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

Model Output Statistics for Marienberg-Rübenau (O846)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

GTS Bulletin: FBDL44 EDDH - Forecast (details are described in the abstract)

The FBDL44 TTAAii Data Designators decode as: T1 (F): Forecast T1T2 (FB): Upper winds and temperatures A1A2 (DL): Germany (The bulletin collects reports from stations: EDDH;HAMBURG ;) (Remarks from Volume-C: GAFOR)

Model Output Statistics for LUGANO (06770)

DWD’s fully automatic MOSMIX product optimizes and interprets the forecast calculations of the NWP models ICON (DWD) and IFS (ECMWF), combines these and calculates statistically optimized weather forecasts in terms of point forecasts (PFCs). Thus, statistically corrected, updated forecasts for the next ten days are calculated for about 5400 locations around the world. Most forecasting locations are spread over Germany and Europe. MOSMIX forecasts (PFCs) include nearly all common meteorological parameters measured by weather stations. For further information please refer to: [in German: https://www.dwd.de/DE/leistungen/met_verfahren_mosmix/met_verfahren_mosmix.html ] [in English: https://www.dwd.de/EN/ourservices/met_application_mosmix/met_application_mosmix.html ]

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