The Geologic Story of Mount Rainier: A look at the geologic past of one of America's most scenic volcanoesCrandell, Dwight R. (Dwight Raymond)
Science
The Geologic Story of Mount Rainier: A look at the geologic past of one of America's most scenic volcanoes
Crandell, Dwight R. (Dwight Raymond)
Geology -- Washington (State) -- Rainier, Mount; Rainier, Mount (Wash.)
Geologic Years ago Geologic events in the area of the park
time scale
“Postglacial” Present summit cone of Mount Rainier
probably was built about 2,000 years
ago. The last known pumice eruption
occurred between 1820 and 1854.
Glaciers started to grow and advance
about 3,000 years ago. Maximum
extents were reached about 1850 A.D.
From then until about 1955, glaciers
were receding; now they are in
balance or advancing.
Huge masses of rock have slid from the
volcano repeatedly during the last
10,000 years. One of these destroyed
the summit of Mount Rainier and
formed the Osceola Mudflow about
5,800 years ago.
10,000
Pleistocene Last major glaciation.
(Ice Age)
25,000
Birth and growth of Mount Rainier
volcano, and repeated glaciation.
2-3 million
Pliocene Uplift and erosion of the Cascade Range.
12 million
Miocene Intrusion of granodiorite.
Folding of older rocks.
Deposition of Fifes Peak and Stevens
Ridge Formations.
26 million
Oligocene Deposition of Ohanapecosh Formation.
37-38 million
Eocene Deposition of Puget Group.
53-54 million
Avalanches and mudflows like those described are normal events at Mount
Rainier and are expected to happen again in the future. Almost any cliff
on the volcano can produce a large rockfall, but which cliff will
collapse next, or when, cannot be predicted. Should the volcano again
become active, earthquakes and volcanic explosions would trigger
avalanches and mudflows that would rush down the mountain. Molten rock
would melt snow and ice at the volcano’s summit and send floods of water
down the volcano’s flanks. These indirect effects of an eruption would
be much more hazardous than lava flows and pumice, if eruptions are on a
scale similar to that of the past 10,000 years.
The Volcano’s Future?
Public-domain text, read in full here on John Shaqi.
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