Prairie, Peak, and Plateau: A Guide to the Geology of Colorado — John Shaqi
Prairie, Peak, and Plateau: A Guide to the Geology of ColoradoChronic, John
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Prairie, Peak, and Plateau: A Guide to the Geology of Colorado
Chronic, John
Geology -- Colorado -- Guidebooks
The names Tertiary and Quaternary, used for the two Cenozoic Periods,
are holdovers from early studies in geology in which rocks were divided
into Primary (very hard, crystalline rocks such as igneous and
metamorphic rocks), Secondary (well consolidated layered rocks),
Tertiary (layered rocks which are not fully cemented but which are
nevertheless fairly well consolidated), and Quaternary (sediments in
which the grains have not become cemented together).
Tertiary Period
(3-70 million years ago)
During the first part of the Tertiary Period, uplift began in earnest in
Colorado and adjacent states. This uplift was part of the great Laramide
Orogeny that built the Rocky Mountain chain from Alaska to New Mexico.
The entire area rose above the level of the sea, and mountains were
thrust up in a great series of north-south ranges that extended unbroken
almost the length of the continent. Between the ranges, thick layers of
gravel and sand, derived from the surrounding highlands, were deposited
in intermontane basins. Occasional freshwater limestones and shales
indicate the presence of lakes.
In Colorado, many details of the formation of the Rockies stand out in
bold relief. The Front Range moved upward sharply, mostly as a linear
block broken or faulted along both edges. Paleozoic and Mesozoic
sediments along the margins of the block were steeply tipped and in some
places even overturned, while in some localities Precambrian rocks were
thrust out over the younger sediments.
Just east of the Front Range, especially in the area around Denver, the
land remained lower and was the site of thick deposits of gravel and
sand eroded from the range. The Denver Formation, the Arapahoe
Conglomerate, and the Dawson Arkose are more than 2,000 feet thick in
this area. These are delta and river sediments, all varying a great deal
from place to place. Individual layers of sand or gravel are not
continuous over extensive areas, but some, such as the Castle Rock
Conglomerate, are very prominent locally.
[Illustration: On Wolford Mountain, just north of Kremmling, Precambrian
granite lies on top of Cretaceous shale. The older rocks were thrust up
and over younger rocks during the Laramide Orogeny. The position of the
fault shows clearly because trees prefer the granite soil above the
fault to the shale below. (Jack Rathbone photo)]
Along the eastern margin of the Front Range west of Castle Rock and
Sedalia, rocks deposited at this time are now folded steeply, indicating
that the mountains continued to rise even as basin sediments were being
deposited.
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