This study introduces an attenuation model based on the strain energy approach for estimating earthquake demand energy (EDE) to evaluate soil liquefaction potential. A new method is presented to estimate the EDE at a free-field site when only one record of the ground surface acceleration is available. This method was generated after analyzing the earthquake data of 18 downhole arrays in California. The developed method was later employed for calculating the EDE values of 328 earthquake records worldwide. Results showed that several parameters affected the EDE amount, including earthquake magnitude, faulting mechanism, site-to-source distance, shear wave velocity, and peak ground acceleration (PGA). These parameters were categorized by three main functions including source, distance, and site effect functions. An attenuation model was incorporated as a result of these three functions. Finally, the demand energy of two liquefaction array sites—Port Island (PI) site in Japan and Wildlife Liquefaction Array (WLA) site in California—were predicted by the proposed attenuation model and compared to the calculated capacity energies of these sites with satisfactory results.
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Research Article|
May 01, 2017
Earthquake Demand Energy Attenuation Model for Liquefaction Potential Assessment
Mohammad H. Baziar;
a
Center of Excellence for Fundamental Studies in Structural Engineering, School of Civil Engineering, Iran University of Science and Technology, Tehran, Iran;Email: [email protected]
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Hamid Rostami
b
School of Civil Engineering, Iran University of Science and Technology, Tehran, Iran;Email: [email protected]
Search for other works by this author on:
a
Center of Excellence for Fundamental Studies in Structural Engineering, School of Civil Engineering, Iran University of Science and Technology, Tehran, Iran;Email: [email protected]
Email: [email protected]
Publisher: Earthquake Engineering Research Institute
Received:
08 Mar 2016
Accepted:
27 Dec 2016
First Online:
01 Jun 2020
Online ISSN: 1944-8201
Print ISSN: 8755-2930
© 2017 Earthquake Engineering Research Institute
Earthquake Engineering Research Institute
Earthquake Spectra (2017) 33 (2): 757–780.
Article history
Received:
08 Mar 2016
Accepted:
27 Dec 2016
First Online:
01 Jun 2020
Citation
Mohammad H. Baziar, Hamid Rostami; Earthquake Demand Energy Attenuation Model for Liquefaction Potential Assessment. Earthquake Spectra 2017;; 33 (2): 757–780. doi: https://doi.org/10.1193/030816EQS037M
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Index Terms/Descriptors
- acceleration
- Asia
- attenuation
- body waves
- boreholes
- California
- data bases
- data processing
- earthquakes
- elastic waves
- Far East
- faults
- ground motion
- Honshu
- Hyogo Japan
- Hyogo-ken Nanbu earthquake 1995
- Imperial Valley
- Japan
- Kobe Japan
- liquefaction
- magnitude
- normal faults
- reverse faults
- risk assessment
- S-waves
- San Jacinto Fault
- seismic energy
- seismic waves
- shear stress
- soils
- strain
- strike-slip faults
- Superstition Hills earthquake 1987
- United States
- velocity
- Elmore Ranch earthquake 1987
- Port Island
- Chino Hills earthquake 2008
- PEER data base
Latitude & Longitude
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