Knights Templar
on September 25, 2026 74 views
Mount Rainier is the most glaciated peak in the contiguous United States and carries more ice than every other volcano in the Cascade Range combined. Its greatest threat is not lava, not ash, and not pyroclastic flow. It is the mountain's own rotting interior, mixed with a cubic mile of glacial water, sliding down on top of a metropolitan area of two and a half million people. The eruption is optional. The catastrophe is not.
This documentary traces the geological mechanism of the Osceola Mudflow of approximately 5,600 years ago, the Electron Mudflow of 1507, the hydrothermal alteration that has been weakening the upper west flank for hundreds of thousands of years, and the modern arrival-time models that quantify what the next event will cost the cities downstream.
CHAPTERS
00:00 Rainier's Deadliest Threat Is Not Lava
00:15 The Osceola Mudflow Reaches Puget Sound
01:49 Takhoma, Cities, and Forgotten Warnings
02:20 Why Rainier Is Not Mount St. Helens
03:49 Glaciers on a Heat Source
04:50 What a Lahar Really Is
06:53 The Mountain Rotting From Within
09:37 The Osceola Collapse Mechanism
11:35 The 1507 Electron Mudflow
14:07 Sirens, Drills, and Evacuation Routes
15:16 A Lahar Without an Eruption
18:11 The Warning System Can Only Detect Motion
19:14 USGS Simulations and Arrival Times
21:05 Hazard Maps, Zoning, and Unequal Risk
23:00 The 500-Year Clock and a Warming Mountain
SOURCES
Vallance, J. W., and Scott, K. M. (1997). The Osceola Mudflow from Mount Rainier: Sedimentology and hazard implications of a huge clay-rich debris flow. Geological Society of America Bulletin, 109(2), 143–163. DOI: 10.1130/0016-7606(1997)1090143:TOMFMR 2.3.CO;2
John, D. A., Sisson, T. W., Breit, G. N., Rye, R. O., and Vallance, J. W. (2008). Characteristics, extent and origin of hydrothermal alteration at Mount Rainier Volcano, Cascades Arc, USA: Implications for debris-flow hazards and mineral deposits. Journal of Volcanology and Geothermal Research, 175(3), 289–314. DOI: 10.1016/j.jvolgeores.2008.03.024
Iverson, R. M., Schilling, S. P., and Vallance, J. W. (1998). Objective delineation of lahar-inundation hazard zones. Geological Society of America Bulletin, 110(8), 972–984. DOI: 10.1130/0016-7606(1998)110 0972:ODOLIH 2.3.CO;2
Crandell, D. R. (1971). Postglacial lahars from Mount Rainier volcano, Washington. U.S. Geological Survey Professional Paper 677, 75 pages.
Driedger, C. L., and Kennard, P. M. (1986). Glacier volumes on Cascade volcanoes — Mount Rainier, Mount Hood, Three Sisters, and Mount Shasta. U.S. Geological Survey Professional Paper 1365.
Atwater, B. F., Musumi-Rokkaku, S., Satake, K., Tsuji, Y., Ueda, K., and Yamaguchi, D. K. (2005). The Orphan Tsunami of 1700: Japanese clues to a parent earthquake in North America. U.S. Geological Survey Professional Paper 1707.
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