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Model Output Statistics for Saldenburg-Entschenreuth (P586)

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 SANTANDER (PARAYAS AEROP.) (08021)

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: FBDL43 EDDM - Forecast (details are described in the abstract)

The FBDL43 TTAAii Data Designators decode as: T1 (F): Forecast T1T2 (FB): Upper winds and temperatures A1A2 (DL): Germany (The bulletin collects reports from stations: EDDM;MUNICH INT ;EDDM;MUNICH INT ;) (Remarks from Volume-C: GAFOR WW)

Model Output Statistics for MENDOZA AERO (87418)

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 THYBOROEN (06052)

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 Sontra (L286)

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: FEMM74 EDZW - Forecast (details are described in the abstract)

The FEMM74 TTAAii Data Designators decode as: T1 (F): Forecast T1T2 (FE): Extended A1A2 (MM): Mediterranean area (Remarks from Volume-C: MEDIUM RANGE - WEATHER AND SEA BULLETIN FOR THE MEDITERRANEAN SEA (IN ENGLISH))

EasyGSH-DB: Sedimentologie [csv] (1996, 2006, 2016)

Masseprozentuale Kornfraktionierung (¼-ϕ-Intervalle) Definition: Eine Summenkurve ist eine kontinuierliche, monotone mathematische Funktion, die an jeder Stelle einen Masseanteil für die entsprechende Korngröße darstellt. Um diese Funktion menschenlesbar abspeichern zu können, wird sie in vorgegebenen Intervallen diskretisiert, hier in der ϕ-skalierten Summenkurve in ¼-ϕ-Schritten. Datenerzeugung: Die Basis für sedimentologische Auswertungen bilden Oberflächensedimentproben, die im Rahmen des Projektes EasyGSH mittels anisotroper Interpolationsverfahren und unter Berücksichtigung hydrodynamischer Faktoren und Erosions- und Sedimentationsprozesse von Einzelproben verschiedener Jahre auf ein für ein Jahr gültiges Raster interpoliert wurden. An jedem dieser Rasterknoten liegt die Sedimentverteilung daher als Summenkurve vor. Für die Deutsche Bucht liegt dieses Basisprodukt für die Jahre 1996, 2006 und 2016 im 100 m Raster, für die Ausschließliche Wirtschaftszone Deutschlands für das Jahr 1996 im 250 m Raster vor. Aus diesen Summenkurven wird im Wertebereich ϕ = -10 bis ϕ = 10 in ¼-ϕ-Schritten der aufsummierte Masseanteil des jeweiligen Intervalls errechnet und tabellarisch hinterlegt. Produkt: 100 m Raster der Deutschen Bucht (1996, 2006, 2016) beziehungsweise 250 m Raster der Ausschließlichen Wirtschaftszone (1996), an denen für jeden Rasterknoten folgende Informationen bereitgestellt werden: • Information zum Datenersteller (durch Interpolation und Rasterung smile consult GmbH) • Probenbezeichnung (durch Interpolation und Rasterung laufende Nummer) • Gültigkeitsdatum der Kornverteilung • Lage der Kornverteilung • Höhe der Kornverteilung • Koordinatensystem • Median-Korndurchmesser d50 • Tabellarische Auflistung der ¼-ϕ-Intervalle mit ihren Masseanteilen Das Produkt wird im CSV-Format bereitgestellt. Zitat für diesen Datensatz (Daten DOI): Sievers, J., Rubel, M., Milbradt, P. (2020): EasyGSH-DB: Themengebiet - Sedimentologie. Bundesanstalt für Wasserbau. https://doi.org/10.48437/02.2020.K2.7000.0005 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.

GTS Bulletin: IUXD36 EDZW - Observational data (Binary coded) - BUFR (details are described in the abstract)

The IUXD36 TTAAii Data Designators decode as: T1 (I): Observational data (Binary coded) - BUFR T1T2 (IU): Upper air T1T2A1 (IUX): Other upper air reports A2 (D): 90°E - 0° northern hemisphere(The bulletin collects reports from stations: 10548;Meiningen;) (Remarks from Volume-C: High resolution 2 sec., BUFR309057, Level 300) IUXD36 BUFR bulletin available 10548 Meiningen from EDZW (Deutscher Wetterdienst) up to 300 hPa. at 00 UTC, 12 UTC, ON DEMAND 06 UTC, 18 UTC

GTS Bulletin: IUSD26 EDZW - Observational data (Binary coded) - BUFR (details are described in the abstract)

The IUSD26 TTAAii Data Designators decode as: T1 (I): Observational data (Binary coded) - BUFR T1T2 (IU): Upper air T1T2A1 (IUS): Radio soundings from fixed land stations (entire sounding) A2 (D): 90°E - 0° northern hemisphere(The bulletin collects reports from stations: 10548;Meiningen;) (Remarks from Volume-C: High resolution 2 sec., BUFR309057) IUSD26 BUFR bulletin available 10548 Meiningen from EDZW (Deutscher Wetterdienst) at 00 UTC, 12 UTC, ON DEMAND 06 UTC, 18 UTC

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