The Underworld of Oregon Caves National Monument — John Shaqi
The Underworld of Oregon Caves National MonumentContor, Roger J.
Science
The Underworld of Oregon Caves National Monument
Contor, Roger J.
Oregon Caves National Monument (Or.)
So a state of chemical balance tends to develop in normal phreatic drift
through the marble. Water saturated with minerals might easily move
through many hundreds of feet of marble strata without further enlarging
the openings. Instead, it might even deposit some of the dissolved
minerals, filling small cracks and veins, possibly even blocking its own
passage during dry cycles when phreatic flow is at a low ebb. The “dry”
room in the cave is an example of vein filling. Clay, gravel, and other
surface sediments can also be washed into the openings, plugging them up
and halting further solution for a time. All these factors lead toward a
stabilization of the solution process. Openings and small passages
continue to be formed, yet normal phreatic movement at Oregon Caves
seems to lack the force for large scale cave sculpture.
This opens the door to our third consideration; we know the greatest
amount of solution occurs in the water table zone. Therefore, to gain
the impetus needed to carve out a cave system, some local condition must
have _increased the water table flow_ in the immediate vicinity of
Oregon Caves. The solution process was magnified as larger quantities of
freshly acidic phreatic waters were channeled into a restricted zone.
Surging on, they scoured through the marble, dissolving larger volumes
of calcium carbonate and sweeping it away. The early solution pattern of
enlarged cracks had set the stage for the onset of this swift phreatic
erosion. But some geologically sudden event was necessary to trigger the
forces which completed the act.
We do not know exactly what the triggering action was. We know that the
water table either received a _sudden increase in supply_ from surface
drainage, or found a _larger or lower outlet_ downslope which tapped
phreatic water over a widespread zone and channeled it through a
localized area. There are several possibilities.
1. A perched water table may have been held in the cave zone by a
lower and impervious layer of rock. This barrier may have been
suddenly cut through by erosion, as if the plug were pulled in a
bathtub. The perched water would now pass _through_ the barrier,
rather than over it, evacuating parts of the former phreatic zone, and
inducing surface streams to channel underground through the same
route. With such a subterranean diversion of water from a higher to a
lower drainage pattern, the water table flow would increase
considerably. A cave-forming condition would exist.
Several small streams lose their identity and sink into the ground a
few hundred yards above the caves. Doubtless, they join the water
table inside the caverns to emerge at the entrance as the River Styx
(called Cave Creek outside). Possibly they aided in the early stages
of cave formation in a manner described above.
Public-domain text, read in full here on John Shaqi.
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