Site Response Analysis and Its Significance at Nonlinear Sites
Description:
This study presents a case history of one-dimensional time-domain nonlinear site response analysis for a major infrastructure project in the San José area, California, USA. The subsurface material of the study site consists of Holocene alluvial deposits with interbedded and crosscut clays and silts, sands, and gravels. Two levels of design earthquakes were considered herein associated with the return periods of 225 and 975 years. For each design level, site response analyses were performed to propagate a suite of eleven pairs of horizontal input ground motions at the reference soil horizon (a depth of about 75 m; VS30 of about 490 m/s) through a site-specific ground model. Also, a series of sensitivity evaluations were also conducted for verifying and enhancing understanding of dynamic response of the study site. The site response analysis results show the site exhibits high nonlinearity, de-amplifying short-to-intermediate period content (0.01 to 1 s) while amplifying long period content. A comparison of surface response spectra from the site response analysis versus ground motion models and probabilistic seismic hazard analysis (PSHA) is presented herein highlighting the design implications of conducting site response analyses at soft sites, where high nonlinearity is anticipated.
Session: Integrative Assessment of Soil-Structure Interaction and Local Site Effects in Seismic Hazard Analysis [Poster Session]
Type: Poster
Date: 5/3/2024
Presentation Time: 08:00 AM (local time)
Presenting Author: Jongwon
Student Presenter: No
Invited Presentation:
Authors
Jongwon Lee Presenting Author Corresponding Author jongwon.lee@mottmac.com Mott MacDonald |
Alvin Bayudanto alvin.bayudanto@mottmac.com Mott MacDonald |
Mohammad Yazdi mohammad.yazdi@mottmac.com Mott MacDonald |
Wenyong Rong wenyong.rong@mottmac.com Mott MacDonald |
Martin Walker martin.j.walker@mottmac.com Mott MacDonald |
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Site Response Analysis and Its Significance at Nonlinear Sites
Category
Integrative Assessment of Soil-Structure Interaction and Local Site Effects in Seismic Hazard Analysis