Simulation of Ground Motion Using the Stochastic Method
Моделирование грунтовых движений с использованием стохастического метода
2003-01-01
SCID: 54.1/yben6uun
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amplitude spectrumearthquake source-path-site effectshigh-frequency ground motionrandom phase spectrumstochastic ground-motion simulation
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Abstract (AI)
A simple and powerful method for simulating ground motions is to combine parametric or functional descriptions of the ground motion’s amplitude spectrum with a random phase spectrum modified such that the motion is distributed over a duration related to the earthquake magnitude and to the distance from the source. This method of simulating ground motions often goes by the name “the stochastic method.” It is particularly useful for simulating the higher-frequency ground motions of most interest to engineers (generally, f > 0.1 Hz), and it is widely used to predict ground motions for regions of the world in which recordings of motion from potentially damaging earthquakes are not available. This simple method has been successful in matching a variety of ground-motion measures for earthquakes with seismic moments spanning more than 12 orders of magnitude and in diverse tectonic environments. One of the essential characteristics of the method is that it distills what is known about the various factors affecting ground motions (source, path, and site) into simple functional forms. This provides a means by which the results of the rigorous studies reported in other papers in this volume can be incorporated into practical predictions of ground motion.
Key Findings
1
It enables ground-motion prediction in regions lacking recordings from potentially damaging earthquakes.
2
The approach has matched diverse ground-motion measures across earthquakes spanning more than 12 orders of magnitude in seismic moment and varied tectonic environments.
3
The method incorporates source, path, and site effects into simple functional forms, allowing rigorous research results to be translated into practical predictions.
4
The method is particularly effective for simulating higher-frequency ground motions above approximately 0.1 Hz, which are important for engineering applications.
5
The stochastic method simulates ground motions by combining a parametric amplitude spectrum with a randomized phase spectrum distributed over an earthquake- and distance-dependent duration.
Research Object
earthquake ground motions, particularly higher-frequency motions (f > 0.1 Hz)
Research Subject
stochastic simulation of ground-motion amplitude spectra and duration as functions of earthquake magnitude and source distance, incorporating source, path, and site effects
Publication Details
Publication Date
2003-01-01
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