Engineering observations on ground motion at the Van Norman Complex after the 1994 Northridge earthquake
- 1 February 1996
- journal article
- Published by Seismological Society of America (SSA) in Bulletin of the Seismological Society of America
- Vol. 86 (1B) , S333-S349
- https://doi.org/10.1785/bssa08601bs333
Abstract
During the 1994 Northridge earthquake, the Van Norman Complex yielded an unprecedented number of recordings with high acceleration, in the close proximity of the fault rupture. These strong-motion recordings exhibited the pulses of the main event. One station recorded the largest velocity ever instrumentally recorded (177 cm/sec), resulting from a 0.86 g peak acceleration with a low frequency. Throughout the complex, the horizontal accelerations reached peak values ranging from 0.56 to 1.0 g, except for the complex center, where the peak acceleration did not exceed 0.43 g. The vertical acceleration reached maximum peak values comparable with those of the horizontal acceleration. The acceleration response spectra in the longitudinal and transverse directions were significantly different. Such a difference, which is not yet well documented in the field of geotechnical earthquake engineering, indicates that the amplitude and frequency content of the ground motion was directionally dependent in the Van Norman Complex.Keywords
This publication has 12 references indexed in Scilit:
- Response of High-Rise and Base-Isolated Buildings to a Hypothetical M w 7.0 Blind Thrust EarthquakeScience, 1995
- A note on distribution of uncorrected peak ground accelerations during the Northridge, California, earthquake of 17 January 1994Soil Dynamics and Earthquake Engineering, 1994
- The Magnitude 6.7 Northridge, California, Earthquake of 17 January 1994Science, 1994
- Accelerograms recorded at USGS National Strong-Motion Network stations during the Ms=6.6 Northridge, California earthquake of January 17, 1994Published by US Geological Survey ,1994
- A dislocation model of the 1994 Northridge, California, earthquake determined from strong ground motionsPublished by US Geological Survey ,1994
- Long period Fourier amplitude spectra of strong motion accelerationSoil Dynamics and Earthquake Engineering, 1993
- Conditions that give rise to unusually large long period ground motionsThe Structural Design of Tall Buildings, 1993
- How to model amplification of strong earthquake motions by local soil and geologic site conditionsEarthquake Engineering & Structural Dynamics, 1990
- Noise in Earthquake AccelerogramsJournal of the Engineering Mechanics Division, 1982
- Properties of Soil in the San Fernando Hydraulic Fill DamsJournal of the Geotechnical Engineering Division, 1975