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GeoRef Categories
Era and Period
Date
Availability
The 2023 Alaska National Seismic Hazard Model Open Access
Geologic Input Databases for the 2025 Puerto Rico—U.S. Virgin Islands National Seismic Hazard Model Update: Crustal Faults Component Available to Purchase
The 2023 US National Seismic Hazard Model: Subduction ground-motion models Open Access
The 2023 US 50-State National Seismic Hazard Model: Overview and implications Open Access
Earthquake Rupture Forecast Model Construction for the 2023 U.S. 50‐State National Seismic Hazard Model Update: Central and Eastern U.S. Fault‐Based Source Model Available to Purchase
The USGS 2023 Conterminous U.S. Time‐Independent Earthquake Rupture Forecast Available to Purchase
Large-volume Barriles and Caisán debris avalanche deposits from Volcán Barú, Panama Available to Purchase
Geologic mapping at the base of Volcán Barú, Panama, characterizes two large andesitic volcanic debris avalanche deposits attributed to sector collapse at Volcán Barú. The older Caisán debris avalanche deposit is at or beyond the radiocarbon dating range, >43,500 yr B.P., whereas the younger Barriles debris avalanche deposit is constrained by two radiocarbon ages that are ca. 9000 yr B.P. The total runout length of the Caisán deposit was ~50 km, covering nearly 1200 km 2 . The Barriles deposit extended to ~45 km and covered >990 km 2 , overlapping most of the Caisán. Over 4000 hummocks from these deposits were digitized, and statistical analysis of hummock location and geometry depicts flow patterns of highly fragmented material affected by underlying topography and also helps to define the shorter runout limit of the Barriles deposit. The Barriles and Caisán deposits are primarily unconfined deposits that are among the world's most voluminous subaerial debris avalanche deposits. Two different geospatial procedures, utilizing deposit thicknesses and edifice reconstruction, yield calculated volumes ~30 km 3 and larger for both deposits. Subaerial deposits of comparable scale include those from Mount Shasta, Socompa, and Shiveluch. Currently, the modern edifice is 200–400 m lower than the estimated precollapse Barriles and Caisán summits, and only 16%–25% of the former edifice has been replaced since the last failure. The ~10 km 3 postcollapse lava-dome complex, however, implies a Holocene magma production rate of 1.1 km 3 /k.y., comparable to elevated eruptive pulses documented at other stratovolcanoes, underscoring the importance of hazards assessment and monitoring of this active volcano.