The Geologic Story of Yellowstone National ParkKeefer, William R.
Science
The Geologic Story of Yellowstone National Park
Keefer, William R.
Geology -- Yellowstone National Park
No two geysers have the same size, shape, and arrangement of tubes and
chambers. Also, some geysers, such as Great Fountain, have large surface
pools not present in cone-type geysers such as Old Faithful. Hence, each
geyser behaves differently from all others in frequency of eruption,
length of individual eruptions, and amount of water discharged. Geysers
may also vary in their own behavior as their plumbing features change
through the years. The great amount of energy that builds up in some of
them from time to time creates enough explosive force to shatter parts
of the plumbing system, thereby causing a change in their eruptive
behavior. In fact, some geyser eruptions have been so violent that large
chunks of rock have been exploded out of the ground and scattered around
the surrounding area (fig. 51). With time, the precipitation of minerals
may partly seal a tube or chamber, gradually altering the eruptive
mechanism.
Despite all the variable factors involved in geyser eruptions, and all
the changes that can take place from time to time to alter the pattern
of those eruptions, several of the Yellowstone geysers function
regularly, day after day, week after week, and year after year. Within
this group of regulars is the most famous feature of all—Old
Faithful—which has not missed an eruption in all the many decades that
it has been under close observation (fig. 52). We can only conclude that
nature has provided this incredible geyser with a stable plumbing system
that is just right to trigger delightfully graceful eruptions at
close-enough time intervals to suit the convenience of all Park
visitors.
Mudpots
Mudpots are among the most fascinating and interesting of the
Yellowstone thermal features. They are also a type of hot spring, but
one for which water is in short supply. Whatever water is available
becomes thoroughly mixed with clay and other fine undissolved mineral
matter. The mud is generally gray, black, white, or cream colored, but
some is tinted pale pink and red by iron compounds (fig. 43); hence, the
picturesque term “paint pots” is commonly used.
Mudpots form in places where the upflowing thermal fluids have
chemically decomposed the surface rocks to form clay. Such small amounts
of water are involved, however, that the surface discharge is not great
enough to flush the clay out of the spring. Caldrons of mud of all
consistencies result, from the very thin soupy material in many mudpots
to the almost hard-baked material in the less active features. Some
mudpots expel pellets of very thick viscous mud which build up circular
cones or mounds; this type is commonly called a “mud volcano” (fig. 53).
Public-domain text, read in full here on John Shaqi.
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