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Model Output Statistics for Spiekeroog (SWN) (E031)

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 LOS ANGELES (INT. AIRPORT) (72295)

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 ]

Luftdaten Deutschland API | Air Data Germany API

Mehrmals täglich ermitteln Fachleute an Messstationen der Bundesländer und des Umweltbundesamtes die Qualität unserer Luft. Schon kurz nach der Messung können Sie sich über die Luftdaten-API die aktuellen Messwerte abrufen. Zurzeit sind Daten ab dem Jahr 2016 abrufbar. Bitte beachten Sie, dass es sich bei den Daten des laufenden Jahres um noch nicht endgültig geprüfte Daten handelt. Erst im Juni des Folgejahres werden die finalen Daten bereitgestellt. Die aktuellen Daten können Lücken aufgrund Übertragungsproblemen enthalten. Das UBA kann keine Vollständigkeit garantieren. Unterjährig erfolgen Updates mit vorläufig geprüften Daten.

Messwerte Feinstaub PM10 (1980 - 2026)

Im Messwertarchiv steht eine umfangreiche Sammlung der kontinuierlich erfassten Luftschadstoffmessdaten des LÜB-Messnetzes seit dem Jahr 1980 in stündlicher zeitlicher Auflösung zum Download zur Verfügung. Das Datenangebot umfasst die Stoffe Stickstoffdioxid, Stickstoffmonoxid, Feinstaub-PM10, Feinstaub-PM2,5, Ozon, Kohlenmonoxid, BTX (Benzol, Toluol und o-Xylol), Schwefeldioxid und Schwefelwasserstoff. Die Daten können je Schadstoff und Kalenderjahr für alle im jeweiligen Zeitraum aktiven LÜB-Messstationen heruntergeladen werden. [Wichtige Hinweise zu den Daten - PDF](https://www.lfu.bayern.de/luft/immissionsmessungen/messwertarchiv/doc/wichtige_hinweise_zu_den_daten.pdf) [Informationen zu den Messstationen](https://www.lfu.bayern.de/luft/immissionsmessungen/dokumentation/index.htm)

Model Output Statistics for Darmstadt (L886)

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: HUXL70 EDZW - Grid point information (GRIB) (details are described in the abstract)

The HUXL70 TTAAii Data Designators decode as: T1 (H): Grid point information (GRIB) T1T2 (HU): Eastward wind component A1 (X): Global Area (area not definable) A2 (L): 84 hours forecast T1ii (H70): 700 hPa (Remarks from Volume-C: H+ 84 (GLOBAL MODEL) WIND COMPONENT 700 HPA)

GTS Bulletin: HVXX60 EDZW - Grid point information (GRIB) (details are described in the abstract)

The HVXX60 TTAAii Data Designators decode as: T1 (H): Grid point information (GRIB) T1T2 (HV): Northward wind component A1 (X): Global Area (area not definable) A2 (X): Not assigned T1ii (H60): 600 hPa (Remarks from Volume-C: H+ 66 (GLOBAL MODEL) WIND COMPONENT 600 HPA)

GTS Bulletin: HVXX10 EDZW - Grid point information (GRIB) (details are described in the abstract)

The HVXX10 TTAAii Data Designators decode as: T1 (H): Grid point information (GRIB) T1T2 (HV): Northward wind component A1 (X): Global Area (area not definable) A2 (X): Not assigned T1ii (H10): 100 hPa (Remarks from Volume-C: H+ 66 (GLOBAL MODEL) WIND COMPONENT 100 HPA)

GTS Bulletin: HVXX20 EDZW - Grid point information (GRIB) (details are described in the abstract)

The HVXX20 TTAAii Data Designators decode as: T1 (H): Grid point information (GRIB) T1T2 (HV): Northward wind component A1 (X): Global Area (area not definable) A2 (X): Not assigned T1ii (H20): 200 hPa (Remarks from Volume-C: H+ 66 (GLOBAL MODEL) WIND COMPONENT 200 HPA)

GTS Bulletin: HUXL60 EDZW - Grid point information (GRIB) (details are described in the abstract)

The HUXL60 TTAAii Data Designators decode as: T1 (H): Grid point information (GRIB) T1T2 (HU): Eastward wind component A1 (X): Global Area (area not definable) A2 (L): 84 hours forecast T1ii (H60): 600 hPa (Remarks from Volume-C: H+ 84 (GLOBAL MODEL) WIND COMPONENT 600 HPA)

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