Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus

The 2016 Kumamoto earthquakes struck Kumamoto and Ōita regions and caused several devastating liquefaction induced damages. The primary damage was due to the extreme ground shaking of the foreshock and main shock sequence. Therefore, it is essential to develop a quick reliable approach with a high a...

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Main Authors: Liu Guojun, Yasufuku Noriyuki, Ishikura Ryohei, Liu Qiang
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/18/e3sconf_isg2019_04009.pdf
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spelling doaj-301e901a19a44e70bcf52c91d19d6bc52021-03-02T09:05:43ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01920400910.1051/e3sconf/20199204009e3sconf_isg2019_04009Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatusLiu GuojunYasufuku NoriyukiIshikura RyoheiLiu QiangThe 2016 Kumamoto earthquakes struck Kumamoto and Ōita regions and caused several devastating liquefaction induced damages. The primary damage was due to the extreme ground shaking of the foreshock and main shock sequence. Therefore, it is essential to develop a quick reliable approach with a high accuracy to assess the ground situation after foreshock or several shocks. Velocity of small shear wave (Vs) was widely used for evaluating the potential liquefaction. This study investigates the possibility of using Vs as a new indicator of the stress state in the soil after earthquake and evaluation of post liquefaction resistance of soil. Cyclic tri-axial apparatus equipped with bender elements were used to conduct two consecutives liquefaction tests on sandy soil. The Vs measured by bender elements was discussed on the relationship with effective stress during the liquefying processes. The results showed that for the sandy soils, a) Vs could not clearly reflect the significant reduction in resistance at re-liquefaction stages by directly comparing the Vs at the end of consolidation between first and stages, b) The shear wave velocity is significantly affected by effective confining pressure c) the shear wave velocity of 190 m/s was at confining pressure of 100 kPa. The shear wave velocity reaches to after 100 m/s after consolidations and re-consolidations. The shear wave velocity was found to reduce to 100 m/s when the effective confining stress reaches to 0 and to around 25 m/s when the double amplitude reaches to 5%; d) the velocity and effective stress decreases with a similar rate in liquefying process.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/18/e3sconf_isg2019_04009.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Liu Guojun
Yasufuku Noriyuki
Ishikura Ryohei
Liu Qiang
spellingShingle Liu Guojun
Yasufuku Noriyuki
Ishikura Ryohei
Liu Qiang
Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
E3S Web of Conferences
author_facet Liu Guojun
Yasufuku Noriyuki
Ishikura Ryohei
Liu Qiang
author_sort Liu Guojun
title Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
title_short Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
title_full Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
title_fullStr Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
title_full_unstemmed Correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
title_sort correlation between shear wave velocity and effective confining pressure using cyclic triaxial testing apparatus
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The 2016 Kumamoto earthquakes struck Kumamoto and Ōita regions and caused several devastating liquefaction induced damages. The primary damage was due to the extreme ground shaking of the foreshock and main shock sequence. Therefore, it is essential to develop a quick reliable approach with a high accuracy to assess the ground situation after foreshock or several shocks. Velocity of small shear wave (Vs) was widely used for evaluating the potential liquefaction. This study investigates the possibility of using Vs as a new indicator of the stress state in the soil after earthquake and evaluation of post liquefaction resistance of soil. Cyclic tri-axial apparatus equipped with bender elements were used to conduct two consecutives liquefaction tests on sandy soil. The Vs measured by bender elements was discussed on the relationship with effective stress during the liquefying processes. The results showed that for the sandy soils, a) Vs could not clearly reflect the significant reduction in resistance at re-liquefaction stages by directly comparing the Vs at the end of consolidation between first and stages, b) The shear wave velocity is significantly affected by effective confining pressure c) the shear wave velocity of 190 m/s was at confining pressure of 100 kPa. The shear wave velocity reaches to after 100 m/s after consolidations and re-consolidations. The shear wave velocity was found to reduce to 100 m/s when the effective confining stress reaches to 0 and to around 25 m/s when the double amplitude reaches to 5%; d) the velocity and effective stress decreases with a similar rate in liquefying process.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/18/e3sconf_isg2019_04009.pdf
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AT yasufukunoriyuki correlationbetweenshearwavevelocityandeffectiveconfiningpressureusingcyclictriaxialtestingapparatus
AT ishikuraryohei correlationbetweenshearwavevelocityandeffectiveconfiningpressureusingcyclictriaxialtestingapparatus
AT liuqiang correlationbetweenshearwavevelocityandeffectiveconfiningpressureusingcyclictriaxialtestingapparatus
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