An NGA Model for the Average Horizontal Component of Peak Ground Motion and Response Spectra

Author:

Chiou BrianS-J.1,Youngs Robert R.2

Affiliation:

1. Division of Research and Innovation, California Department of Transportation, Sacramento, CA

2. Geomatrix consultants, Inc., 2101 Webster St., 12th Floor, Oakland, CA 94612

Abstract

We present a model for estimating horizontal ground motion amplitudes caused by shallow crustal earthquakes occurring in active tectonic environments. The model provides predictive relationships for the orientation-independent average horizontal component of ground motions. Relationships are provided for peak acceleration, peak velocity, and 5-percent damped pseudo-spectral acceleration for spectral periods of 0.01 to 10 seconds. The model represents an update of the relationships developed by Sadigh et. al. (1997) and incorporates improved magnitude and distance scaling forms as well as hanging-wall effects. Site effects are represented by smooth functions of average shear wave velocity of the upper 30 m (VS30) and sediment depth. The new model predicts median ground motion that is similar to Sadigh et. al. (1997) at short spectral period, but lower ground motions at longer periods. The new model produces slightly lower ground motions in the distance range of 10 to 50 km and larger ground motions at larger distances. The aleatory variability in ground motion amplitude was found to depend upon earthquake magnitude and on the degree of nonlinear soil response, For large magnitude earthquakes, the aleatory variability is larger than found by Sadigh et. al. (1997).

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

Reference53 articles.

1. Empirical Response Spectral Attenuation Relations for Shallow Crustal Earthquakes

2. Equations for the Estimation of Strong Ground Motions from Shallow Crustal Earthquakes Using Data from Europe and the Middle East: Horizontal Peak Ground Acceleration and Spectral Acceleration

3. BSSC , 2004.NEHRP Recommended Provisions for Seismic Regulations for New Buildings and Other Structures, 2003 Edition, FEMA Publication 450, Building Seismic Safety Council, Washington, D.C.

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