Aarhus Universitets segl

Publikationsoversigt for Institut for Geoscience

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Clausen, O. R., Petersen, K. D., Hansen, T. H. & Andresen, K. J. (2023). Variations in the Porosity of the Chalk Group in the North Sea Basin Due to Subsidence Related Deformation. I Geomechanical Controls on Fracture Development in Chalk and Marl in the Danish North Sea (s. 121). Springer Nature. https://doi.org/10.1007/978-3-031-35327-7_5
Clausen, J. A., Gabrielsen, R. H., Johnsen, E. & Korstgård, J. A. (2003). Fault architecture and clay smear distribution. Examples from field studies and drained ring-shear experiments. Norsk Geologisk Tidsskrift, 83(2), 131-146.
Clausen, O. R., Petersen, K. D., Hansen, T. H. & Andresen, K. J. (2025). Variationen in der Porosität der Kreidegruppe im Nordseebecken aufgrund von absinkungsbedingten Verformungen. I Geomechanische Kontrollen der Rissentwicklung in Kreide und Mergel in der dänischen Nordsee: Verstehen und Vorhersagen von Riss-Systemen (s. 133-153). Springer Nature. https://doi.org/10.1007/978-3-031-81345-0_5
Clemmensen, L. B., Andreasen, F., Heinemeier, J. & Murray, A. S. (2001). A Holocene coastal aeolian system, Vejers, Denmark: landscape evolution and sequence stratigraphy. Terra Nova, 13(2), 129-134.
Clemmensen, A. & Thomsen, E. (2006). Paleoenvironmental interpretation of the Danian-Selandian transition (Paleocene) in the North Sea Basin based on foraminifera. I Forams 2006, International Symposium on Foraminifera (s. 482-483). Anuário do Instituto de Geoscièncias, vol.29-1.
Clemmensen, L. B., Bjørnsen, M., Murray, A. S. & Pedersen, K. (2007). Formation of aeolian dunes on Anholt, Denmark since AD 1560: A record of deforestation and increased storminess. Sedimentary Geology, 199, 171-187.
Clemmensen, L. B., Bendixen, M., Hede, M. U., Kroon, A., Nielsen, L. & Murray, A. S. (2014). Morphological records of storm floods exemplified by the impact of the 1872 Baltic storm on a sandy spit system in south-eastern Denmark. Earth Surface Processes and Landforms, 39(4), 499-508. https://doi.org/10.1002/esp.3466
Colangeli, L., Lopez-Moreno, J. J., Nørnberg, P., Della Corte, V., Esposito, F., Mazzotta Epifani, E., Merrison, J. P., Molfese, C., Palumbo, P., Rodriguez-Gomez, J. F., Rotundi, A., Visconti, G. & Zarnecki, J. C. (2009). MEDUSA. The ExoMars experiment for in-situ monitoring of dust and water vapour. Planetary and Space Science, 57(8-9, Special Issue), 1043-1049. https://doi.org/10.1016/j.pss.2008.07.013
Colgan, W., Wansing, A., Mankoff, K., Lösing, M., Hopper, J., Louden, K., Ebbing, J., Christiansen, F. G., Ingeman-Nielsen, T., Liljedahl, L. C., MacGregor, J. A., Hjartarson, Á., Bernstein, S., Karlsson, N. B., Fuchs, S., Hartikainen, J., Liakka, J., Fausto, R. S., Dahl-Jensen, D. ... Løkkegaard, A. (2022). Greenland Geothermal Heat Flow Database and Map (Version 1). Earth System Science Data, 14(5), 2209-2238. https://doi.org/10.5194/essd-14-2209-2022
Collinson, M. E., Barke, J., van der Burg, J., van Konijnenburg-van Cittert, J. H. A., Heilmann-Clausen, C., Howard, L. E. & Brinkhuis, H. (2010). Did a single species of Eocene Azolla spread from the Arctic Basin to the southern North Sea? Review of Palaeobotany and Palynology, 159(3-4), 152-165. https://doi.org/10.1016/j.revpalbo.2009.12.001
Commer, M., Kowalsky, M. B., Doetsch, J., Newman, G. A. & Finsterle, S. (2014). MPiTOUGH2: A parallel parameter estimation framework for hydrological and hydrogeophysical applications. Computers & Geosciences, 65, 127-135. https://doi.org/10.1016/j.cageo.2013.06.011
Constantin, D., Veres, D., Panaiotu, C., Anechitei-Deacu, V., Groza, S. M., Begy, R., Kelemen, S., Buylaert, J. P., Hambach, U., Marković, S. B., Gerasimenko, N. & Timar-Gabor, A. (2019). Luminescence age constraints on the Pleistocene-Holocene transition recorded in loess sequences across SE Europe. Quaternary Geochronology, 49(February), 71-77. https://doi.org/10.1016/j.quageo.2018.07.011
Cooper, N. P., Scott, J. M., Pearson, D. G., Azzone, R. G., Leitzke, F. P., Woodland, S., Donatti-Filho, J. P., Palmer, M., Reid, M. R. & Schaeffer, A. J. (2025). Extent of the São Francisco Craton, South America: a mantle perspective. Mineralogy and Petrology, 119(4), 771-794. https://doi.org/10.1007/s00710-025-00909-1
Cooper, N. P., Pearson, D. G., Auer, A., Bongartz, T., Bussweiler, Y., Fischer-Gödde, M., Hellers, M., Howarth, G., Locock, A. J., Luguet, A., Münker, C., Stachel, T., Wainwright, A. N., Woodland, S. & Scott, J. M. (2026). Proterozoic highly siderophile element enrichment of the Kaapvaal cratonic Archean mantle. Chemical Geology, 702, Artikel 123201. https://doi.org/10.1016/j.chemgeo.2025.123201
Costa, P. J. M., Costas, S., González-Villanueva, R., Oliveira, M. A., Roelvink, D., Andrade, C., Freitas, M. C., Cunha, P. P., Martins, A., Buylaert, J. P. & Murray, A. (2016). How did the AD 1755 tsunami impact on sand barriers across the southern coast of Portugal? Geomorphology, 268, 296-311. https://doi.org/10.1016/j.geomorph.2016.06.019