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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
3D Geometry and Slip Distribution in the Long Beach Earthquake Gate, Newport–Inglewood Fault, Los Angeles, California Available to Purchase
Fault activity in the San Gabriel Mountains, southern California, USA: Insights from landscape morphometrics, erosion rates, and fault-slip rates Available to Purchase
San Andreas Fault Earthquake Hazard Model Validation Using Probabilistic Analysis of Precariously Balanced Rocks and Bayesian Updating Available to Purchase
Applications of Nonergodic Site Response Models to ShakeAlert Case Studies in the Los Angeles Area Available to Purchase
Applications of fiber optic distributed acoustic sensing technology Available to Purchase
Mobile home fragility curves Available to Purchase
Empirical Map‐Based Nonergodic Models of Site Response in the Greater Los Angeles Area Available to Purchase
Development of Qube: A Low‐Cost Internet of Things Device for On‐Site and Regional Earthquake Warning Available to Purchase
Morphologic signatures of autogenic waterfalls: A case study in the San Gabriel Mountains, California Available to Purchase
Inelastic response spectra of self-centering structures with the flag-shaped hysteretic response subjected to near-fault pulse-type ground motions Available to Purchase
Deep Clustering to Identify Sources of Urban Seismic Noise in Long Beach, California Available to Purchase
Sensitivity Analysis of the Interfrequency Correlation of Synthetic Ground Motions to Pseudodynamic Source Models Available to Purchase
Effects of Shallow‐Velocity Reductions on 3D Propagation of Seismic Waves Available to Purchase
Response study of the tallest California building inferred from the Mw7.1 Ridgecrest, California earthquake of 5 July 2019 and ambient motions Available to Purchase
Late Quaternary slip rates on the Sierra Madre fault zone and paleoseismic evidence on the size and frequency of past ruptures Available to Purchase
ABSTRACT The Sierra Madre fault zone is a south-vergent, active reverse fault that accommodates shortening between basins on the northern margin of the Los Angeles region and the San Gabriel Mountains. The preservation of late Quaternary alluvial fill and fan surfaces in the hanging wall of the fault provides evidence of long-term uplift. Surface rupture from the 1971 Mw 6.6 San Fernando earthquake and evidence of large prehistoric displacements from trenching investigations emphasize the ongoing hazard posed by the fault system to the region. This one-day field trip visits some of the key locations near Pasadena and San Fernando, California, where slip rates have been determined from cosmogenic and luminescence dating of abandoned surfaces dating to 50–70, ca. 30, and ca. 12 ka and surface offsets measured from lidar and pre-development topographic maps. Another stop is the site of a paleoseismic trench, which provided key evidence on the timing and displacement of past ruptures on the fault. In combination, results from these field investigations converge on a slip rate for the eastern ~100 km of the fault zone of 1–2 mm/yr, which matches or exceeds the rates for other reverse faults in southern California. This rate, in combination with trenching data that show no evidence of post–mid Holocene ruptures along the central and eastern portions of the fault, indicate the fault zone poses a significant seismic hazard to the region.