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CPT-Based estimation of undrained shear strength of fine-grained soils in the Huanghe River Delta
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作者 Zhongnian Yang Xuesen Liu +4 位作者 Lei Guo Yuxue Cui Xiuting Su Chao Jia Xianzhang Ling 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2022年第5期136-146,共11页
The Huanghe River(Yellow River)Delta has a wide distribution of fine-grained soils.Fluvial alluviation,erosion,and wave loads affect the shoal area,resulting complex physical and mechanical properties to sensitive fin... The Huanghe River(Yellow River)Delta has a wide distribution of fine-grained soils.Fluvial alluviation,erosion,and wave loads affect the shoal area,resulting complex physical and mechanical properties to sensitive finegrained soil located at the river-sea boundary.The cone penetration test(CPT)is a convenient and effective in situ testing method which can accurately identify various soil parameters.Studies on undrained shear strength only roughly determine the fine content(FC)without making the FC effect clear.We studied four stations formed in different the Huanghe River Delta periods.We conducted in situ CPT and corresponding laboratory tests,examined the fine content influence on undrained shear strength(S_(u)),and determined the cone coefficient(N_(k)).The conclusions are as follows.(1)The fine content in the area exceeded 90%,and the silt content was high,accounting for more than 70%of all fine particle compositions.(2)The undrained shear strength gradually increased with depth with a maximum of approximately 250 kPa.When the silt content was lower than 60%–70%,the undrained shear strength decreased.(3)The silt and clay content influenced undrained shear strength,and the fitted f_(s)h/q_(t) function model was established,which could be applied to strata with a high fine content.The cone coefficients were between 20 and 25,and the overconsolidated soil layer had a greater cone coefficient. 展开更多
关键词 Huanghe River(Yellow River)Delta fine content(FC) cone penetration test(CPT) undrained shear strength(S_(u)) cone coefficient(N_(k))
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基于孔压静力触探(CPTU)及扁铲侧胀试验(DMT)南沙软土力学特性研究 被引量:4
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作者 郭全元 钟仕兴 肖旺 《广东土木与建筑》 2022年第6期26-29,共4页
基于南沙地区深厚软土地基含水量高、高压缩性、低渗透性、地基承载力低的特征。为获取软土工程特性及力学参数,为南沙深厚软土力学性能指标取值的合理性提供行之有效的判定方法,首先利用原位测试技术孔压静力触探试验(CPTU)、扁铲侧胀... 基于南沙地区深厚软土地基含水量高、高压缩性、低渗透性、地基承载力低的特征。为获取软土工程特性及力学参数,为南沙深厚软土力学性能指标取值的合理性提供行之有效的判定方法,首先利用原位测试技术孔压静力触探试验(CPTU)、扁铲侧胀试验(DMT)测定软土不排水抗剪强度和变形参数,并对比两种原位测试参数的沿深度变化的发展规律;其次通过统计与回归相结合的方法建立了CPTU与DMT参数的线性回归关系、压缩模量E_(s)与杨氏模量E_(u)的线性回归关系。研究结果表明:软土的不排水抗剪强度σ_(u)、压缩模量E_(s)、不排水杨氏模量E_(u),CPTU试验与DMT试验两种测试结果存在线性拟合关系;CPTU试验和DMT试验检测所得的不排水杨氏模量Eu与压缩模量E_(s)存在线性拟合关系。 展开更多
关键词 CPTu DMT 不排水抗剪强度σ_(u)
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用扁铲侧胀试验计算饱和软粘土的不排水抗剪强度 被引量:9
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作者 孙莉 孙仕林 《岩土工程技术》 2002年第6期334-337,共4页
评价上海地区饱和软粘土的不排水抗剪强度。通过室内试验及十字板剪切试验得到的不排水抗剪强度cu 与用扁铲指数 (水平应力指数KD)计算得到的不排水抗剪强度cu 进行比较 ,说明Marchetti(1980 )计算cu 的公式适用于上海地区的饱和软粘土... 评价上海地区饱和软粘土的不排水抗剪强度。通过室内试验及十字板剪切试验得到的不排水抗剪强度cu 与用扁铲指数 (水平应力指数KD)计算得到的不排水抗剪强度cu 进行比较 ,说明Marchetti(1980 )计算cu 的公式适用于上海地区的饱和软粘土。同时 ,扁铲模量ED 与不排水抗剪强度cu 具有线性相关性 ,故找到了一个更为简便的计算不排水抗剪强度cu 的公式。 展开更多
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