The North American Midcontinent Rift beneath Lake Superior from Glimpce seismic reflection profiling
- 1 April 1989
- journal article
- Published by American Geophysical Union (AGU) in Tectonics
- Vol. 8 (2) , 305-332
- https://doi.org/10.1029/tc008i002p00305
Abstract
The Midcontinent rift system is a 1.1‐b.y.‐old structure extending from Kansas, through the Lake Superior region, and into southern Michigan. The rift is filled with thick sequences of basaltic volcanic rocks and clastic sediments. For most of its extent it is buried beneath Paleozoic rocks but can be traced by its strong gravity and magnetic anomalies. The rocks of the rift system are exposed only in the Lake Superior region and comprise the Keweenawan Supergroup. Much of the geology of the Keweenawan is beneath Lake Superior and has only been inferred from potential field studies and seismic refraction studies and extrapolation from on‐shore geology. Seismic reflection surveys by the Great Lakes International Multidisciplinary Program on Crustal Evolution in 1986 imaged much of the deep structure of the rift beneath the lake in detail. The reflection profiles across the rift reveal a deep, asymmetrical central graben whose existence and magnitude was not previously documented. They show that, in addition to crustal sagging documented by previous investigations, normal faulting played a major role in subsidence of the axial region of the rift. A sequence of volcanic and sedimentary rocks, in places greater than 30 km thick, fills the graben. Thinner volcanic and sedimentary units lie on broad flanks of the rift outside of the graben. Near the axis, the prerift crust is thinned to about one fourth of its original thickness, apparently by a combination of low‐angle extensional faulting and ductile stretching or distributed shear. The sense of asymmetry of the central graben changes along the trend of the rift, documenting the segmented nature of the structure and suggesting the existence of accommodation zones between the segments. The location of the accommodation zones is inferred from abrupt disruptions in the Bouguer gravity signature of the rift. Uplift of the central graben occurred when the original graben‐bounding normal faults were reactivated as high‐angle reverse faults with throws of 5 km or more in places. The Midcontinent rift has some striking similarities to some younger passive continental margins. We propose that it preserves a record of nearly complete continental separation which, had it not been arrested, would have created a Middle Proterozoic ocean basin.Keywords
This publication has 52 references indexed in Scilit:
- The Blake Plateau Basin and Carolina TroughPublished by Geological Society of America ,2015
- Crustal structure of the Midcontinent rift system: Results from GLIMPCE deep seismic reflection profilesGeology, 1988
- Off-axis volcanism in the Gregory rift, east Africa: Implications for models of continental riftingGeology, 1987
- Comparative Precambrian Stratigraphy and Structure Along the Mid-Continent RiftAAPG Bulletin, 1986
- U-Pb ages from the Nipigon plate and northern Lake SuperiorGSA Bulletin, 1985
- 7C: Upper Precambrian sedimentary rocks: Oronto Group, Michigan- WisconsinPublished by Geological Society of America ,1982
- Rift structure beneath the Michigan Basin from COCORP profilingGeology, 1982
- Relationships of till to bed rock in the Lake Superior regionGeology, 1975
- Keweenawan volcanic rocks of Michipicoten Island, Lake Superior, Ontario, an eruptive centre of proterozoic agePublished by Natural Resources Canada/CMSS/Information Management ,1974
- Plume-Generated Triple Junctions: Key Indicators in Applying Plate Tectonics to Old RocksThe Journal of Geology, 1973