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鲱骨状根构型对典型土体抗倾覆力的有限元分析 被引量:6
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作者 及金楠 张志强 +1 位作者 Fourcaud Thierry 劳尔平 《中国水土保持科学》 CSCD 2007年第3期14-18,共5页
设计和实施治理重力侵蚀的生物工程措施需要深入地分析和研究树木根系对土体的抗倾覆力学特性。本文以单株鲱骨(Herringbone)状根构型为研究对象建立二维有限元模型,通过控制侧根与主根的夹角、删减根系不同部分等方法,建立了12种不... 设计和实施治理重力侵蚀的生物工程措施需要深入地分析和研究树木根系对土体的抗倾覆力学特性。本文以单株鲱骨(Herringbone)状根构型为研究对象建立二维有限元模型,通过控制侧根与主根的夹角、删减根系不同部分等方法,建立了12种不同几何形态的鲱骨状根结构,并分别验证其在黏土和砂土中的抗倾覆力,由此定量评价根系的不同部分和土壤的差异分别对土体抗倾覆力的贡献率。模拟结果显示:浅层侧根的作用是不可低估的,在黏土中,其贡献率约占整个固土效果的35%-40%;根、土复合体在整个破坏过程中形成一个旋转轴,此轴的位置随根系形态、土壤类型的不同而变化。 展开更多
关键词 根系结构 抗倾覆力 有限元分析
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一种固结桩式薄板丁坝及其桩体的抗倾覆能力 被引量:1
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作者 廖艺康 李富春 +2 位作者 黄本胜 张民曦 喻国良 《水利水电科技进展》 CSCD 北大核心 2021年第2期82-88,共7页
介绍一种新型且经济的、带固结桩的预制插板丁坝,其固结桩是该丁坝的主要抗倾覆构件。通过室内试验和三维扫描技术,在细砂基床上开展了固结桩的抗倾覆性能研究。结果表明:固化剂与土体反应后在桩周形成“脚靴”状固结体,显著提高了桩的... 介绍一种新型且经济的、带固结桩的预制插板丁坝,其固结桩是该丁坝的主要抗倾覆构件。通过室内试验和三维扫描技术,在细砂基床上开展了固结桩的抗倾覆性能研究。结果表明:固化剂与土体反应后在桩周形成“脚靴”状固结体,显著提高了桩的抗倾覆力;固结桩的倾覆过程分为微偏阶段、倾斜阶段、倾覆阶段和拔移阶段;固结桩抗倾覆力主要受桩体几何形状、埋深、土体性质、固化剂注浆剂量和注入流量等因素的影响。通过量纲分析和试验数据拟合,提出了固结桩临界水平抗倾覆力及临界倾斜角的计算公式。 展开更多
关键词 平板丁坝 固化剂 注浆 抗倾覆力 细砂基床
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Critical embedment depth of a rigid retaining wall against overturning in unsaturated soils considering intermediate principal stress and strength nonlinearity 被引量:4
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作者 张常光 陈新栋 范文 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期944-954,共11页
The overturning stability is vital for the retaining wall design of foundation pits, where the surrounding soils are usually unsaturated due to water draining. Moreover, the intermediate principal stress does affect t... The overturning stability is vital for the retaining wall design of foundation pits, where the surrounding soils are usually unsaturated due to water draining. Moreover, the intermediate principal stress does affect the unsaturated soil strength; meanwhile, the relationship between the unsaturated soil strength and matric suction is nonlinear. This work is to present closed-form equations of critical embedment depth for a rigid retaining wall against overturning by means of moment equilibrium. Matric suction is considered to be distributed uniformly and linearly with depth. The unified shear strength formulation for unsaturated soils under the plane strain condition is adopted to characterize the intermediate principal stress effect, and strength nonlinearity is described by a hyperbolic model of suction angle. The result obtained is orderly series solutions rather than one specific answer; thus, it has wide theoretical significance and good applicability. The validity of this present work is demonstrated by comparing it with a lower bound solution. The traditional overturning designs for rigid retaining walls, in which the saturated soil mechanics neglecting matric suction or the unsaturated soil mechanics based on the Mohr-Coulomb criterion are employed, are special cases of the proposed result. Parametric studies about the intermediate principal stress, matric suction and its distributions along with two strength nonlinearity methods on a new defined critical buried coefficient are discussed. 展开更多
关键词 unsaturated soils retaining walls overturning stability critical embedment depth intermediate principal stress strength nonlinearity
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