HR: 0830h
AN: V51F-0343 [PDF]
TI: The Mount Rainier Lahar Detection System
AU: * Lockhart, A B
EM: ablock@usgs.gov
AF: USGS - Cascades Volcano Observatory, 1300 Cardinal Court, Bldg 10, Vancouver, WA 98683 United States
AU: Murray, T L
EM: tlmurray@usgs.gov
AF: USGS- Alaska Volcano Observatory, 4200 University Dr., Anchorage, AK 99508 United States
AB:
To mitigate the risk of unheralded lahars from Mount Rainier, the U.S. Geological Survey, in cooperation with Pierce County,
Washington, installed a lahar-detection system on the Puyallup and Carbon rivers that originate on Mount Rainier's western
slopes. The system, installed in 1998, is designed to automatically detect the passage of lahars large enough to potentially
affect populated areas downstream (approximate volume threshold 40 million cubic meters), while ignoring small lahars,
earthquakes, extreme weather and floods. Along each river valley upstream, arrays of independent lahar-monitoring stations
equipped with geophones and short tripwires telemeter data to a pair of redundant computer base stations located in and near
Tacoma at existing public safety facilities that are staffed around the clock. Monitored data consist of ground-vibration
levels, tripwire status, and transmissions at regular intervals. The base stations automatically evaluate these data to
determine if a dangerous lahar is passing through the station array. The detection algorithm requires significant ground
vibration to occur at those stations in the array that are above the anticipated level of inundation, while lower level
`deadman' stations, inundated by the flow, experience tripwire breakage or are destroyed. Once a base station detects a
lahar, it alerts staff who execute a call-down of public-safety officials and schools, initiating evacuation of areas
potentially at risk. Because the system's risk-mitigation task imposes high standards of reliability on all components, it
has been under test for several years. To date, the system has operated reliably and without false alarms, including during
the nearby M6.8 Nisqually Earthquake on February 28, 2001. The system is being turned over to Pierce County, and activated
as part of their lahar warning system.
DE: 6339 System design
DE: 8419 Eruption monitoring (7280)
DE: 8494 Instruments and techniques
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2003 Fall Meeting