The Geologic Story of Arches National Park: Geological Survey Bulletin 1393Lohman, Stanley William
Science
The Geologic Story of Arches National Park: Geological Survey Bulletin 1393
Lohman, Stanley William
Arches National Park (Utah); Geology -- Utah -- Arches National Park -- Guidebooks
Arches National Park contains four northwesterly trending major
folds—the Salt Valley and Cache Valley salt anticlines, the Courthouse
syncline, and the faulted Moab-Seven Mile anticline, which forms the
southwestern border. How these folds were formed was explained on pages
27-32. The history of their growth, however, was a long one that began
about 300 million years ago in the Pennsylvanian and ended about 50
million years ago in the early Tertiary. The growth of these folds
occurred in two stages. The first stage, which involved the development
of the salt cores of the anticlines, ended in the Jurassic with the
beginning of Morrison time; the second stage, which involved additional
folding that intensified the magnitude and shape of existing folds,
occurred in the early Tertiary and was followed later by collapse of the
salt anticlines. The formation and collapse of the Salt Valley and Cache
Valley anticlines was accompanied by pronounced jointing (fig. 12),
which allowed differential erosion to produce the tall fins in which the
arches were formed.
The old Uncompahgre Highland continued to shed debris into the bordering
basins until Triassic time, when it began to be covered by a veneer of
red sandstone and siltstone of the Chinle Formation (Lohman, 1965). The
area remained above sea level during the Triassic Period and most, if
not all, of the Jurassic Period, although the Jurassic Carmel Formation
was laid down in a sea that lay just to the west.
Late in the Cretaceous Period a large part of Central and Southeastern
United States, including the eastern half of Utah, sank beneath the sea
and received thousands of feet of mud, silt, and some sand that later
compacted into the Mancos Shale. This formation, as well as all younger
and some older strata, has long since been eroded from most of the park
area, but a little of the Mancos is preserved in the Cache Valley graben
(fig. 11), and the entire Mancos Shale and younger rocks are present in
adjacent areas, such as the Book Cliffs north of Green River, Crescent
Junction, and Cisco (figs. 7, 50, 56).
The land rose above the sea at about the close of the Cretaceous and has
remained above ever since, although inland basins and lakes received
sediment during parts of the Tertiary Period. Compressive forces in the
Earth’s crust produced some gentle folding of the strata at the close of
the Cretaceous, but more pronounced folding and some faulting occurred
during the Eocene Epoch, when most of the Rocky Mountains took form.
During the Miocene Epoch igneous rock welled up into older rocks to form
the cores of the nearby La Sal, Abajo, and Henry Mountains. Additional
uplift and some folding occurred in the Pliocene and Pleistocene Epochs.
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