Late Mesozoic magmatism in Svalbard: A review

K Senger, J Tveranger, K Ogata, A Braathen… - Earth-Science …, 2014 - Elsevier
Late Mesozoic mafic igneous rocks are widespread across the Arctic region, and are
collectively referred to as the High Arctic Large Igneous Province (HALIP). In Svalbard the …

[HTML][HTML] The Early Cretaceous Barents Sea Sill Complex: distribution, 40Ar/39Ar geochronology, and implications for carbon gas formation

S Polteau, BWH Hendriks, S Planke, M Ganerød… - Palaeogeography …, 2016 - Elsevier
Mafic igneous rocks of Cretaceous age (80–130 Ma) scattered around the Arctic Ocean are
commonly referred to as the High Arctic Large Igneous Province (HALIP). We have mapped …

Circum-Arctic Lithosphere Evolution (CALE) Transect C: displacement of the Arctic Alaska–Chukotka microplate towards the Pacific during opening of the Amerasia …

EL Miller, KE Meisling, VV Akinin, K Brumley… - 2018 - pubs.geoscienceworld.org
This paper synthesizes the framework and geological evolution of the Arctic Alaska–
Chukotka microplate (AACM), from its origin as part of the continental platform fringing …

Stratigraphic and spatial extent of HALIP magmatism in central Spitsbergen

K Senger, O Galland - Geochemistry, Geophysics, Geosystems, 2022 - Wiley Online Library
Rapid extensive magmatism may have a profound effect on global climate by liberating and
releasing greenhouse gases to the atmosphere through contact metamorphism of …

Challenges and opportunities for hydrocarbon exploration within the Mesozoic sub-basalt plays of the Norwegian Atlantic Margin

B Kilhams, L Chedburn, L Layfield, N Schofield… - Petroleum …, 2022 - earthdoc.org
The sub-basalt domain of the Norwegian continental shelf (NCS) is one of the last remaining
hydrocarbon exploration frontiers in Europe. While there is an established geological and …

[HTML][HTML] West Spitsbergen fold and thrust belt: A digital educational data package for teaching structural geology

RK Horota, K Senger, N Rodes, P Betlem… - Journal of Structural …, 2023 - Elsevier
The discipline of structural geology is taking an advantage of compiling observations from
multiple field sites to comprehend the bigger picture and constrain the region's geological …

High-resolution organic carbon–isotope stratigraphy of the Middle Jurassic–Lower Cretaceous Agardhfjellet Formation of central Spitsbergen, Svalbard

MJ Koevoets, TB Abay, Ø Hammer… - Palaeogeography …, 2016 - Elsevier
We present the first complete organic carbon–isotope curve from the Agardhfjellet
Formation, central Spitsbergen (Svalbard). Samples from two drill cores (DH2 and DH5R) …

Petroleum, coal and research drilling onshore Svalbard: a historical perspective

K Senger, P Brugmans, SA Grundvåg, MM Jochmann… - 2019 - munin.uit.no
The beginning of the Norwegian oil industry is often attributed to the first exploration drilling
in the North Sea in 1966, the first discovery in 1967 and the discovery of the supergiant …

Dyke emplacement and crustal structure within a continental large igneous province, northern Barents Sea

A Minakov, V Yarushina, JI Faleide, N Krupnova… - 2018 - pubs.geoscienceworld.org
We perform an integrated analysis of magnetic anomalies, multichannel seismic and wide-
angle seismic data across an Early Cretaceous continental large igneous province in the …

You learn as long as you drill; research synthesis from the Longyearbyen CO2 Laboratory, Svalbard, Norway.

S Olaussen, K Senger, A Braathen… - Norwegian Journal of …, 2019 - duo.uio.no
From 2007 to 2015, eight wells were drilled and fully cored to test the feasibility of storing
CO2 emitted from the coal-fueled power plant in Longyearbyen, Svalbard. The drilling …