Estimating in-situ undrained shear strength and stress history of clays via water content
碩士 === 臺灣大學 === 土木工程學研究所 === 98 === Liquidity index has been long believed to correlate to design parameters of clays such as undrained shear strength, sensitivity, overconsolidation ratio, etc. Such correlations are important because liquidity index is usually the most basic and available index fro...
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ndltd-TW-098NTU050150762015-10-13T18:49:40Z http://ndltd.ncl.edu.tw/handle/59979460000239521909 Estimating in-situ undrained shear strength and stress history of clays via water content 根據含水量推估黏土之不排水剪力強度與歷史應力 Shou-Hong Hsue 徐碩鴻 碩士 臺灣大學 土木工程學研究所 98 Liquidity index has been long believed to correlate to design parameters of clays such as undrained shear strength, sensitivity, overconsolidation ratio, etc. Such correlations are important because liquidity index is usually the most basic and available index from site investigation information. This study compiles a large database of lightly overconsolidated and sensitive clays to construct the joint probability distribution among the liquidity index and several design parameters. This joint distribution is then used to simulate the correlations between liquidity index and the design parameter of interest. The main results are a set of equations whose inputs are the observed liquidity index and outputs are the updated mean values and coefficients of variation (c.o.v.) of the design parameters of interest, which are necessary for reliability-based design. These equations are further validated by another independent database of lightly overconsolidated and sensitive clays as well as by empirical equations proposed in literature. Jian-Ye Ching 卿建業 2010 學位論文 ; thesis 109 zh-TW |
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碩士 === 臺灣大學 === 土木工程學研究所 === 98 === Liquidity index has been long believed to correlate to design parameters of clays such as undrained shear strength, sensitivity, overconsolidation ratio, etc. Such correlations are important because liquidity index is usually the most basic and available index from site investigation information. This study compiles a large database of lightly overconsolidated and sensitive clays to construct the joint probability distribution among the liquidity index and several design parameters. This joint distribution is then used to simulate the correlations between liquidity index and the design parameter of interest. The main results are a set of equations whose inputs are the observed liquidity index and outputs are the updated mean values and coefficients of variation (c.o.v.) of the design parameters of interest, which are necessary for reliability-based design. These equations are further validated by another independent database of lightly overconsolidated and sensitive clays as well as by empirical equations proposed in literature.
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Jian-Ye Ching |
author_facet |
Jian-Ye Ching Shou-Hong Hsue 徐碩鴻 |
author |
Shou-Hong Hsue 徐碩鴻 |
spellingShingle |
Shou-Hong Hsue 徐碩鴻 Estimating in-situ undrained shear strength and stress history of clays via water content |
author_sort |
Shou-Hong Hsue |
title |
Estimating in-situ undrained shear strength and stress history of clays via water content |
title_short |
Estimating in-situ undrained shear strength and stress history of clays via water content |
title_full |
Estimating in-situ undrained shear strength and stress history of clays via water content |
title_fullStr |
Estimating in-situ undrained shear strength and stress history of clays via water content |
title_full_unstemmed |
Estimating in-situ undrained shear strength and stress history of clays via water content |
title_sort |
estimating in-situ undrained shear strength and stress history of clays via water content |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/59979460000239521909 |
work_keys_str_mv |
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