Western Interior Seaway

Western Interior Seaway
Western Interior Seaway during the mid-Cretaceous, about 100 million years before the present

The Western Interior Seaway, also called the Cretaceous Seaway, the Niobraran Sea, and the North American Inland Sea, was a huge inland sea that split the continent of North America into two halves, Laramidia and Appalachia, during most of the mid- and late-Cretaceous Period. It was 2,500 feet (760 m) deep, 600 miles (970 km) wide and over 2,000 miles (3,200 km) long.

Contents

Origin and geology

Western Interior Seaway during the late Campanian Stage, about 75 mya
A broken concretion with fossils inside; Late Cretaceous Pierre Shale near Ekalaka, Montana.

The Seaway was created as the Farallon tectonic plate subducted under the North American Plate during Cretaceous time. As plate convergence proceeded, younger and more buoyant lithosphere of the Farallon Plate started to become subducted. This caused it to subduct at a much more shallow angle, in what is known as a "flat slab". This shallowly-subducting slab exerted a traction on the base of the lithosphere, pulling it down and producing "dynamic topography" at the surface that caused the opening of the Western Interior Seaway.[1] This depression and the high eustatic sea levels existing during the Cretaceous allowed waters from the Arctic Ocean in the north and the Gulf of Mexico in the south to meet and flood the central lowlands, forming a sea that transgressed (grew) and regressed (receded) over the course of the Cretaceous.

The earliest phase of the Seaway began in the mid-Cretaceous, when an arm of the Arctic Ocean transgressed south over western North America; this formed the Mowry Sea, so named for the Mowry Shale, an organic-rich rock formation.[2] In the south, the Gulf of Mexico was an extension of the Tethys Sea, which met with the Mowry Sea in the late Cretaceous, forming the "complete" Seaway.[2]

At its largest, the Western Interior Seaway stretched from the Rockies to the Appalachians in the east, some 1000 km wide. At its deepest, it may have been only 800 or 900 meters deep, shallow in terms of seas. Two great continental watersheds drained into it from east and west, diluting its waters and bringing resources in eroded silt that formed shifting delta systems along its low-lying coasts. There was little sedimentation on the eastern shores of the Seaway; the western boundary, however, consisted of a thick clastic wedge eroded eastward from the Sevier orogenic belt.[2][3] The western shore was thus highly variable, depending on variations in sea level and sediment supply.[2]

Widespread carbonate deposition suggests that the Seaway was warm and tropical, with abundant calcareous algae.[4]

At the end of the Cretaceous, a continuing uplift in a mountain-building episode called the Laramide orogeny hoisted the sandbanks (sandstone) and muddy brackish lagoons (shale) – the thick sequences of silt and sandstone still seen today as the Laramie Formation – while low-lying basins between them gradually subsided. The Western Interior Seaway divided across the Dakotas and retreated south towards the Gulf of Mexico. This shrunken, regressive phase of the Western Interior Seaway is sometimes called the Pierre Seaway.[5]

During the early Paleocene, parts of the Western Interior Seaway (marine waters) still occupied areas of the Mississippi Embayment, submerging the site of present-day Memphis. Later transgression, however, was associated with the Cenozoic Tejas sequence, rather than with the previous event responsible for the Seaway.

Fauna

Inoceramus from the Cretaceous of South Dakota.
Artist's impression of a Cretoxyrhina and two Squalicorax circling a dead Claosaurus in the Western Interior Seaway

The Western Interior Seaway was a shallow sea, filled with abundant marine life. Interior Seaway denizens included predatory marine reptiles such as plesiosaurs, and mosasaurs that grew up to 18 meters long. Other marine life included sharks such as Squalicorax and the giant shellfish-eating Ptychodus mortoni (believed to be 10 meters long)[6]; and advanced bony fish including Pachyrhizodus, Enchodus, and also the massive 5-meter long Xiphactinus – a fish larger than any modern bony fish. Other sea life included invertebrates such as mollusks, ammonites, squid-like belemnites, and plankton including coccolithophores that secreted the chalky platelets that give the Cretaceous its name, foraminiferans and radiolarians.[citation needed]

The Western Interior Seaway was home to early birds also, including the flightless Hesperornis which had stout legs for swimming through water and small wing-like appendages used for marine steering rather than flight; and the tern-like Ichthyornis, an early avian with a toothy beak. Icthyornis shared the sky with large pterosaurs such as Nyctosaurus and Pteranodon. Pteranodon fossils are very common and it was likely a major component of the surface ecosystem, though it was only found in the southern reaches of the Seaway.[7]

On the bottom, the giant clam Inoceramus left common fossilized shells in the Pierre Shale. This clam had a thick shell paved with "prisms" of calcite deposited perpendicular to the surface, giving it it a pearly luster in life. Paleontologists suggest that its giant size was an adaptation for life in the murky bottom waters, where a correspondingly large gill area would have allowed the animal to cope with oxygen-depleted waters.

See also

References

  1. ^ Mitrovica, J. X.; Beaumont, C.; Jarvis, G. T. (1989). "Tilting of continental interiors by the dynamical effects of subduction". Tectonics 8: 1079. doi:10.1029/TC008i005p01079. 
  2. ^ a b c d Stanley, Steven M. Earth System History. New York: W.H. Freeman and Company, 1999. ISBN 0-7167-2882-6 pp. 487-9
  3. ^ Monroe, James S., and Reed Wicander. The Changing Earth: Exploring Geology and Evolution, 2nd ed. Belmont: West Publishing Company, 1997. ISBN 0-314-09577-2 p. 610
  4. ^ "Oceans of Kansas Paleontology". Mike Everhart. http://www.oceansofkansas.com/index2.html. Retrieved 2007-02-06. 
  5. ^ Stanley, Steven M. Earth System History. New York: W.H. Freeman and Company, 1999. ISBN 0-7167-2882-6 pp. 487-9
  6. ^ BBC: Giant predatory shark fossil unearthed in Kansas
  7. ^ Benton, S.C. (1994). "The Pterosaurs of the Niobrara Chalk." The Earth Scientist, 11(1): 22-25.

External links


Wikimedia Foundation. 2010.

Игры ⚽ Нужен реферат?

Look at other dictionaries:

  • Western Interior Seaway — Der Western Interior Seaway während der mittleren Kreide vor etwa 100 Millionen Jahren Inoceramus …   Deutsch Wikipedia

  • Cretaceous Interior Seaway — Der Western Interior Seaway während der mittleren Kreide vor etwa 100 Millionen Jahren Der Western Interior Seaway, auch Cretaceous Interior Seaway, war ein ausgedehntes epikontinentales Flachmeer in der mittleren und späten Kreidezeit, das als… …   Deutsch Wikipedia

  • Interior Plains — Auf der Karte von Nordamerika sind die Interior Plains rot markiert. Die Interior Plains sind eine große physiogeographische Region des Urkontinents Laurentia im heutigen Nordamerika. Sie entstanden als Kratone vor 1,8 bis 1,9 Millionen Jahren in …   Deutsch Wikipedia

  • Interior Plains — The Interior Plains is a vast physiographic region that spreads across the Laurentian craton of North America. This area was originally formed when cratons collided and welded together 1.9 ndash;1.8 billion years ago in the Trans Hudson orogeny… …   Wikipedia

  • Hudson Seaway — The Hudson Seaway was made up of mostly the present day Hudson Bay some 75 million years ago. Along with the Western Interior Seaway, the Hudson Seaway split the western and eastern parts of modern day North America …   Wikipedia

  • Saint Lawrence River and Seaway — ▪ river, North America Introduction  hydrographic system of east central North America. It connects the North River (source of the St. Louis River, in the U.S. state of Minnesota, which flows into Lake Superior) with Cabot Strait, leading into… …   Universalium

  • Geology of the Grand Teton area — The geology of the Grand Teton area consists of some of the oldest rocks and one of the youngest mountain ranges in North America. The Teton Range, mostly located in Grand Teton National Park, started to grow some 9 million years ago. An older… …   Wikipedia

  • Dakota Formation — Stratigraphic range: Upper Cretaceous Outcrop of Dakota Formation at crest of Dinosaur Ridge, near Golden, Colorado Type Geologic formation …   Wikipedia

  • Daspletosaurus torosus — Daspletosaurus Lebendsbild von Daspletosaurus torosus Zeitraum Obere Kreide 80 bis 73 Mio. Jahre Fundorte …   Deutsch Wikipedia

  • Geology of the Capitol Reef area — [ Waterpocket Fold is the major geographic feature in the area of the park. This view is from above Capitol Reef Scenic Drive looking back at the west face of the broken and eroded fold.] The exposed geology of the Capitol Reef area presents a… …   Wikipedia

Share the article and excerpts

Direct link
Do a right-click on the link above
and select “Copy Link”