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contributor authorYoungkyu Cho
contributor authorJin Tae Han
contributor authorYun Wook Choo
contributor authorJinsun Lee
contributor authorJongkwan Kim
contributor authorKiseog Kim
contributor authorKa-hyun Park
contributor authorJae-Hyun Kim
contributor authorHeon-Joon Park
contributor authorDongyoup Kwak
contributor authorDuhee Park
contributor authorJae-Soon Choi
contributor authorSung-Ryul Kim
contributor authorByungmin Kim
date accessioned2025-04-20T10:09:14Z
date available2025-04-20T10:09:14Z
date copyright10/14/2024 12:00:00 AM
date issued2024
identifier otherJGGEFK.GTENG-12135.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4304097
description abstractThe 2017 Pohang earthquake [the second largest local magnitude (ML) of 5.4 since 1978] caused significant damage: numerous sand boils and a few building settlements were observed in rice paddies and residential areas, respectively, representing unprecedented case histories of earthquake-triggered liquefaction and cyclic softening. This study evaluated liquefaction triggering and cyclic softening potentials using three in situ tests [standard penetration test (SPT), cone penetration test (CPT), and downhole (DH) test for shear wave velocity (VS)] and laboratory tests (grain size and soil indices) for the observed sand boils and building settlements. We selected six sites, four of which had sand boils (Sites 1, 2, 3, and 4), and two of which had experienced building settlements that may have resulted from cyclic softening (Sites 5 and 6). The SPT, CPT, and VS adequately assessed liquefaction triggering [i.e., factor of safety (FS)<1 or ∼1] at Sites 1 through 4 (except for VS at Sites 1 and 2), where sand boils were prevalent. The cyclic softening potential was fairly evaluated from the SPT and CPT (FS<1 or ∼1 at several depths) at Sites 5 and 6, consistent with the building settlement, whereas VS led to FS>2 at all depths. The site-specific cyclic stress ratio through the maximum shear stress ratio computed from site response analysis appropriately evaluated the liquefaction triggering and cyclic softening at the considered sites. The results of the soil index test are consistent with the liquefaction and cyclic softening susceptibility criteria for fine-grained soils. We publicly provide the field and laboratory measurements in this study to enrich case history data on liquefaction and cyclic softening induced by intermediate-size earthquakes (e.g., a moment magnitude, M<6), which might significantly contribute to geotechnical earthquake engineering and engineering geoscience communities.
publisherAmerican Society of Civil Engineers
titleAssessments of Liquefaction Triggering Using In Situ and Laboratory Tests in Pohang, South Korea
typeJournal Article
journal volume150
journal issue12
journal titleJournal of Geotechnical and Geoenvironmental Engineering
identifier doi10.1061/JGGEFK.GTENG-12135
journal fristpage04024132-1
journal lastpage04024132-17
page17
treeJournal of Geotechnical and Geoenvironmental Engineering:;2024:;Volume ( 150 ):;issue: 012
contenttypeFulltext


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