Ingrid Schlögel
Biographic Data
| ID | 6101209 |
|---|---|
| NAME | Ingrid Schlögel |
| GIVEN NAMES | Ingrid |
| FAMILY NAME | Schlögel |
| SIGNATURE | SCHLÖGEL I |
| AFFILIATIONS | Institute of Geosphere Dynamics |
| ORCID | 0000-0002-0796-158X |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 6 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 1 |
Extracting archaeological information from geophysical prospection data
Optimal processing leads to maximisation of the archaeological information obtained
Visualising the invisible – Archaeogeophysical research at manor houses in the Baltic Sea Region
Manor houses, gardens, and parks are studied via geophysical and historical data, GPR visualized a uniquely well-preserved baroque garden layout in Sweden
Claudivium? - How to discover a new Roman town
Unknown Roman town discovered by non-destructive prospection methods in Austria, Integrated application of different prospection methods identified all structures, Settlement shows clear signs of a planned town (orthogonal street layout, etc.)
Combining geophysical prospection and core drilling
Prehistoric mines are often too large and too deep for conventional archaeological excavations. Non-destructive and minimally invasive methods of prospection can help to overcome these limits. Our case study of a Late Bronze Age opencast mine (ca. 1050 to 780 BC) shows the potential of geophysical prospection methods combined with core drillings. For the reconstruction of this mine, we combined electrical resistivity and induced polarization (IP)…
Multimodal Remote Sensing Applications in the Etruscan-Roman City of Vulci
Vulci (Viterbo Province, Italy) was one of the most important Etruscan city-states in the 1st millennium b.c. and became a Roman city in 280 b.c. The habitation site had over 1500 years of continuous life and a very large funerary area around the volcanic plateau. An international research cooperation investigated the site in 2014–2019 using remote sensing technologies and conducting archaeological excavations in the urban area. This paper presen…
Combining geophysical prospection and core drilling
Prehistoric mines are often too large and too deep for conventional archaeological excavations. Non-destructive and minimally invasive methods of prospection can help to overcome these limits. Our case study of a Late Bronze Age opencast mine (ca. 1050 to 780 BC) shows the potential of geophysical prospection methods combined with core drillings. For the reconstruction of this mine, we combined electrical resistivity and induced polarization (IP)…
Multimodal Remote Sensing Applications in the Etruscan-Roman City of Vulci
Vulci (Viterbo Province, Italy) was one of the most important Etruscan city-states in the 1st millennium b.c. and became a Roman city in 280 b.c. The habitation site had over 1500 years of continuous life and a very large funerary area around the volcanic plateau. An international research cooperation investigated the site in 2014–2019 using remote sensing technologies and conducting archaeological excavations in the urban area. This paper presen…
Combining geophysical prospection and core drilling
Prehistoric mines are often too large and too deep for conventional archaeological excavations. Non-destructive and minimally invasive methods of prospection can help to overcome these limits. Our case study of a Late Bronze Age opencast mine (ca. 1050 to 780 BC) shows the potential of geophysical prospection methods combined with core drillings. For the reconstruction of this mine, we combined electrical resistivity and induced polarization (IP)…
Multimodal Remote Sensing Applications in the Etruscan-Roman City of Vulci
Vulci (Viterbo Province, Italy) was one of the most important Etruscan city-states in the 1st millennium b.c. and became a Roman city in 280 b.c. The habitation site had over 1500 years of continuous life and a very large funerary area around the volcanic plateau. An international research cooperation investigated the site in 2014–2019 using remote sensing technologies and conducting archaeological excavations in the urban area. This paper presen…
Extracting archaeological information from geophysical prospection data
Optimal processing leads to maximisation of the archaeological information obtained
Visualising the invisible – Archaeogeophysical research at manor houses in the Baltic Sea Region
Manor houses, gardens, and parks are studied via geophysical and historical data, GPR visualized a uniquely well-preserved baroque garden layout in Sweden
Claudivium? - How to discover a new Roman town
Unknown Roman town discovered by non-destructive prospection methods in Austria, Integrated application of different prospection methods identified all structures, Settlement shows clear signs of a planned town (orthogonal street layout, etc.)
Prospection (4 works) · Ancient Mediterranean Archaeology and History (2 works) · Archaeology (2 works) · Excavation (2 works) · Geology (2 works) · Ground-Penetrating Radar (2 works) · 3D Surveying and Cultural Heritage (1 works) · Aerial photography (1 works) · Ancient city (1 works) · Archaeological Research and Protection (1 works)