GeoSphere Tethys2026 · Table · CSV
Modal mineral composition of heavy mineral samples from the Felbertal, Stubachtal and Habachtal, Eastern Alps (automated mineralogy)The dataset was compiled as part of the HeavyMin project using SEM-based automated mineralogy and comprises mineralogical investigations of stream sediments from selected valleys in the central Tauern Window. The mineralogical composition of the heavy mineral fraction and the mineralchemistry of indicator minerals e.g., scheelite, magnetite, pyrite etc. provide insights into potential mineral depo
GeoSphere Tethys2026 · Table · CSV
Mineral chemistry (EPMA, LA-ICP-MS) of detrital scheelite from the Felbertal, Stubachtal and Hollersbachtal, Eastern AlpsAs a part of the HeavyMin project, the regional tungsten potential of the Eastern Alps was investigated. The study is based mainly on tungsten enrichments documented during exploration activities in the 1970s and 1980s in different geological units of the Eastern Alps. The project objective is to assess potential tungsten showings based on characteristic mineralogical-geochemical datasets (“finger
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Seewinkel (Burgenland)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Seewinkel (Burgenland) in 2013 and 2014 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), he
GeoSphere Tethys2026 · Raster · GeoTIFF
Ressourcen für die thermische Nutzung von Grundwasser im InntalIm Rahmen des von der ÖAW geförderten Projektes GeoEN Inntal hat die GeoSphere Austria Ressourcen und mögliche Einschränkungen für die Nutzung der Oberflächennahen Geothermie im Inntal abgeschätzt. Die technischen Systeme, für die diese Daten nach einer neu entwickelten Methodik erarbeitet wurden, umfassen die thermische Grundwassernutzung und Erdwärmesonden. Die Datensätze zu den Ressourcen beinh
GeoSphere Tethys2026 · Text
Mögliche Einschränkungen und Hinweise zur Nutzung der oberflächennahen Geothermie im InntalIm Rahmen des von der ÖAW geförderten Projektes GeoEN Inntal hat die GeoSphere Austria Ressourcen und mögliche Einschränkungen für die Nutzung der Oberflächennahen Geothermie im Inntal abgeschätzt. Die technischen Systeme, für die diese Daten nach einer neu entwickelten Methodik erarbeitet wurden, umfassen die thermische Grundwassernutzung und Erdwärmesonden. Die Datensätze zu den Ressourcen beinh
GeoSphere Tethys2026 · Table · CSV
Data description of bulk rock composition and LA-MC-ICP-MS U-Pb zircon, hafnium and REE datasets of orthogneisses in the Schladming Crystalline (Silvretta-Seckau Nappe System, Upper Austroalpine)This data publication contains the associated datasets and figures from the paper ‘New insights into the Cambrian to Permian evolution of the Austroalpine basement units of the Schladming Crystalline by U-Pb zircon geochronology and granitoid geochemistry’ by Haas et al. (2026), published in the Austrian Journal of Earth Sciences. 51 samples of orthogneiss from 3 plutonic suites in the Schladming
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Wörgl (Tyrol)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Wörgl (Tyrol) between 2010 and 2012 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), headin
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Klingfurth (Lower Austria)The dataset comprises processed magnetic total intensity anomalies, derived from airborne geophysical measurements conducted in the area of Klingfurth (Lower Austria) in 2013 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), headin
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Leithagebirge (Burgenland)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Leithagebirge (Burgenland) in 2010 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), heading
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Vandans (Vorarlberg)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Vandans (Vorarlberg) in 2003 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), heading error
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Wattener Lizum (Tyrol)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Wattener Lizum (Tyrol) between 2010 and 2011 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Weyer (Upper Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Weyer (Upper- and Lower Austria) between 2011 and 2012 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference F
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid in the area of Obergrafendorf and Melk (Lower Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical surveys conducted in the area of Obergrafendorf and Melk (Lower Austria) between 2000 and 2002 by GeoSphere Austria in cooperation with the Austrian Federal Army. Data from the two survey campaigns (Obergrafendorf 2000 and Melk 2002) were harmonized and merged into a consistent regional dataset. Pr
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Vöcklabruck area (Upper Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Bad Hall (east of Vöcklabruck, Upper Austria) in 2009 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Fi
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Pechgraben (Upper Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Pechgraben (Upper Austria) in 2013 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), heading
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Western Mühlviertel (Upper Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical surveys conducted in the western Mühlviertel area (Upper Austria) between 2006 and 2012 by GeoSphere Austria in cooperation with the Austrian Federal Army. Data from multiple survey campaigns (Ulrichsberg 2006, Eferdinger Becken 2006–2007, Rainbach 2008, Lest 2009–2011, Bad Leonfelden 2011–2012) we
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Eisenerz (Styria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Eisenerz (Styria) between 1999 and 2000 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), he
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Gmünd (Lower Austria)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Gmünd (Lower Austria) in 2014 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF), heading erro
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Eisenberg (Burgenland)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical measurements conducted in the area of Eisenberg (Burgenland) between 2007 and 2008 by GeoSphere Austria in cooperation with the Austrian Federal Army. Processing included correction for temporal variations of the Earth’s magnetic field, removal of the International Geomagnetic Reference Field (IGRF
GeoSphere Tethys2026 · Raster · GeoTIFF
Aeromagnetic anomaly grid – Drautal/Gailtal area (Carinthia)The dataset comprises processed magnetic total intensity anomalies derived from airborne geophysical surveys conducted in the area of Drautal/Gailtal (Carinthia) between 2003 and 2006 by GeoSphere Austria in cooperation with the Austrian Federal Army. Data from multiple survey campaigns were harmonized and merged into a consistent regional dataset. Processing included correction for temporal varia
GeoSphere Tethys2026 · Text
Aeroradiometrie im Bereich Rankweil (Vorarlberg)Die aerogeophysikalischen Messungen im Bereich Rankweil (Vorarlberg) wurden im Zuge der geologischen Landesaufnahme im Jahr 2009 von der GeoSphere Austria (vormals Geologische Bundesanstalt) in Kooperation mit dem österreichischen Bundesheer durchgeführt. Die Messflüge wurden mit einem Hubschrauber vom Typ AB212 durchgeführt und sollten in erster Linie geowissenschaftliche Beiträge bezüglich der o
GeoSphere Tethys2026 · Text
Aeroradiometrie im Bereich Pechgraben (Oberösterreich)Die aerogeophysikalischen Messungen im Bereich Pechgraben (Oberösterreich) wurden im Zuge eines Assistenzeinsatzes für das Land Oberösterreich im Jahr 2013 von der GeoSphere Austria (vormals Geologische Bundesanstalt) in Kooperation mit dem österreichischen Bundesheer durchgeführt. Die Messflüge wurden mit einem Hubschrauber vom Typ AB212 durchgeführt und dienten in erster Linie der Untersuchung e
GeoSphere Tethys2026 · Text
Aeroradiometrie im Bereich Höttinger Alm (Tirol)Die aerogeophysikalischen Messungen im Bereich Höttinger Alm (Tirol) wurden im Jahr 2012 von der GeoSphere Austria (vormals Geologische Bundesanstalt) in Kooperation mit dem österreichischen Bundesheer durchgeführt. Die Messflüge wurden mit einem Hubschrauber vom Typ AB212 durchgeführt und sollten in erster Linie geowissenschaftliche Beiträge bezüglich Bodenerosion für das Forschungsprojekt EROSTA
GeoSphere Tethys2026 · Text
Aeroradiometrie im Bereich Ardagger (Niederösterreich)Die aerogeophysikalischen Messungen über einem Testgebiet im Bereich Ardagger (Niederösterreich) wurden im Jahr 2006 von der GeoSphere Austria (vormals Geologische Bundesanstalt) in Kooperation mit dem österreichischen Bundesheer durchgeführt. Die Messflüge wurden mit einem Hubschrauber vom Typ AB212 durchgeführt und dienten in erster Linie als Testmessungen zur Bestimmung des Einflusses von Veget
GeoSphere Tethys2026 · Text
Aeroradiometrie im Bereich Hallstatt (Oberösterreich)Die aerogeophysikalischen Messungen im Bereich Hallstatt (Oberösterreich) wurden im Zuge der geologischen Landesaufnahme im Jahr 2014 von der GeoSphere Austria (vormals Geologische Bundesanstalt) in Kooperation mit dem österreichischen Bundesheer durchgeführt. Die Messflüge wurden mit einem Hubschrauber vom Typ AB212 durchgeführt und dienten in erster Linie der Untersuchung von Felssturz- und Mass