Using digital outcrops to make the high Arctic more accessible through the Svalbox database K Senger, P Betlem, T Birchall, SJ Buckley, B Coakley, CH Eide, PP Flaig, ... Journal of Geoscience Education 69 (2), 123-137, 2021 | 29 | 2021 |
MOSSBAUER SPECTRAL STUDIES OF IRON. ENRICHED SEDIMENTS FROM HAMILTON HARBOR, ONTARIO W JONES Canadian Mineralogist 18, 29l-299, 1980 | 27 | 1980 |
Forms of iron, phosphorus and trace-metal ions in a layered sediment core from Lake Ontario PG Manning, KR Lum, T Birchall The Canadian Mineralogist 21 (1), 121-128, 1983 | 25 | 1983 |
Discovery of shale gas in organic-rich Jurassic successions, Adventdalen, Central Spitsbergen, Norway SE Ohm, L Larsen, S Olaussen, K Senger, T Birchall, T Demchuk, ... Norsk Geologisk Tidsskrift 99 (2), 349, 2019 | 23 | 2019 |
Resistivity of reservoir sandstones and organic rich shales on the Barents Shelf: Implications for interpreting CSEM data K Senger, T Birchall, P Betlem, K Ogata, S Ohm, S Olaussen, RS Paulsen Geoscience Frontiers 12 (6), 101063, 2021 | 22 | 2021 |
Underpressure in the northern Barents shelf: Causes and implications for hydrocarbon exploration T Birchall, K Senger, MT Hornum, S Olaussen, A Braathen AAPG Bulletin 104 (11), 2267-2295, 2020 | 21 | 2020 |
Mössbauer spectral studies of the diagnesis of iron in a sulphide-rich sediment core PG Manning, JDH Williams, MN Charlton, LA Ash, T Birchall Nature 280 (5718), 134-136, 1979 | 21 | 1979 |
Teaching with digital geology in the high Arctic: opportunities and challenges K Senger, P Betlem, SA Grundvåg, RK Horota, SJ Buckley, ... Geoscience Communication 4 (3), 399-420, 2021 | 19 | 2021 |
Seeing beyond the outcrop: Integration of ground-penetrating radar with digital outcrop models of a paleokarst system J Janocha, A Smyrak-Sikora, K Senger, T Birchall Marine and Petroleum Geology 125, 104833, 2021 | 17 | 2021 |
The partitioning of non-apatite inorganic phosphorus in sediments from lakes Erie and Ontario PG Manning, T Birchall, W Jones The Canadian Mineralogist 22 (2), 357-365, 1984 | 17 | 1984 |
Digital drill core models: Structure-from-motion as a tool for the characterisation, orientation, and digital archiving of drill core samples P Betlem, T Birchall, K Ogata, J Park, E Skurtveit, K Senger Remote Sensing 12 (2), 330, 2020 | 15 | 2020 |
Svalbox Digital Model Database: A geoscientific window into the High Arctic P Betlem, N Rodés, T Birchall, A Dahlin, A Smyrak-Sikora, K Senger Geosphere 19 (6), 1640-1666, 2023 | 12 | 2023 |
Modelling of the gas hydrate potential in Svalbard’s fjords P Betlem, S Roy, T Birchall, A Hodson, R Noormets, M Römer, ... Journal of Natural Gas Science and Engineering 94, 104127, 2021 | 10 | 2021 |
Svalbard composite tectono-sedimentary element, Barents Sea S Olaussen, SA Grundvåg, K Senger, I Anell, P Betlem, T Birchall, ... Geological Society, London, Memoirs 57 (1), M57-2021-36, 2024 | 9 | 2024 |
The Svalbard Carboniferous to Cenozoic composite tectono-stratigraphic element S Olaussen, SA Grundvåg, K Senger, I Anell, P Betlem, T Birchall, ... The Geological Society of London, 2022 | 9 | 2022 |
Origin and age of the ferrihydrite layer in Lake Ontario sediments PG Manning, KR Lum, KT Wong, T Birchall Canadian Mineral 23, 103-110, 1985 | 8 | 1985 |
Naturally occurring underpressure–a global review T Birchall, K Senger, R Swarbrick Petroleum Geoscience 28 (2), petgeo2021-051, 2022 | 7 | 2022 |
Digitising Svalbard’s geology: the Festningen digital outcrop model K Senger, P Betlem, T Birchall, L Gonzaga Jr, SA Grundvåg, RK Horota, ... First Break 40 (3), 47-55, 2022 | 7 | 2022 |
Shallow and deep subsurface sediment remobilization and intrusion in the Middle Jurassic to Lower Cretaceous Agardhfjellet Formation (Svalbard) K Ogata, A Weert, P Betlem, T Birchall, K Senger Geosphere 19 (3), 801-822, 2023 | 5 | 2023 |
Seal characterization and integrity in uplifted basins: Insights from the northern Barents Shelf RS Paulsen, T Birchall, K Senger, SA Grundvåg Marine and Petroleum Geology 139, 105588, 2022 | 5 | 2022 |