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1.
文章通过对泥质岩的黏土质矿物组分、成岩作用中黏土质矿物变化综合研究,认为泥质岩中存在大量黏土矿物,且泥质沉积物由松散到固结成岩实质上是黏土矿物组成的变化。泥质岩中主要黏土矿物包括高岭石、蒙皂石、绿泥石、伊利石以及其组成的混层型矿物伊利石/蒙皂石、绿泥石/蒙皂石,其成岩过程可划分为成岩早期的压实阶段、成岩晚期的黏土矿物转化阶段。压实阶段的泥质沉积物中黏土矿物具有物源的继承性、沉积水体古环境指示意义;受压实作用孔隙水、层间水被排出,原生絮凝团被压破,使片状质点趋于平行排列,黏土矿物与孔隙水发生反应,亦形成少量的新生作用矿物,因而黏土矿物具继承源和新生作用源特性。成岩晚期阶段发生层间水释放及层间阳离子交换,从而使得矿物晶体结构与成分发生变化,主要表现为一元黏土矿物向二元混层型转化,最后再到一元型黏土矿物的转化,最终形成转变源黏土矿物。  相似文献   

2.
大连滨海粉质黏土剪切力学特性环剪试验   总被引:2,自引:0,他引:2  
以大连滨海地区典型粉质黏土为研究对象,利用大型高速环剪仪,针对不同法向应力和剪切速率条件下该粉质黏土大剪切力学性质的变化情况进行了试验。环剪试验结果显示:1)该滨海粉质黏土在正常固结状态下出现明显的应变软化现象,分析表明其应变软化特性主要与土中黏土矿物质量分数及其在剪切过程中的定向排列有关。2)在相同剪切速率下,峰值强度和残余强度随法向应力的增加而增大,峰值强度与法向应力之间表现出良好的线性关系。3)由于峰值强度产生过程中土体内部黏聚力的变化,峰值强度随剪切速率的增加而增大;残余强度变化与剪切速率具有一定的相关性,这与不同剪切速率下剪切带(面)处黏土颗粒定向排列程度不同有关。  相似文献   

3.
为了从深层次揭示控制黏土矿物天然气吸附能力的主要因素, 选择不同来源和成因的泥页岩中的常见黏土矿物进行了甲烷等温吸附实验.分析显示不同类型的黏土矿物气体吸附能力差异明显, 各种黏土矿物甲烷吸附容量次序为蒙脱石>>伊蒙混层>高岭石>绿泥石>伊利石>粉砂岩>石英岩.黏土矿物结晶结构决定了矿物片层之间的层间孔隙和聚合体颗粒之间粒间孔隙的形态和大小, 从而决定着其表面积和气体吸附性能.黏土矿物甲烷吸附能力与电镜扫描所反映的微孔隙发育程度密切相关.研究表明, 黏土矿物的气体吸附能力不仅与黏土类型有关, 而且明显受成岩演化程度和岩石成因的影响.此外, 随粒度减小孔隙连通性和内表面积的不断增加, 黏土矿物气体吸附能力有所升高.   相似文献   

4.
陈建旭  宋文武 《岩土力学》2019,40(6):2284-2292
针对平动模式下墙背倾斜的挡土墙,假定墙后所形成的土拱为圆弧形,建立位移同内摩擦角、外摩擦角的非线性函数,并考虑土层间剪应力作用,通过水平层分析法,得出了挡土墙平动模式下非极限主动土压力分布、合力、作用点高度的解答,其解析解与试验值较其他方法吻合得更好,验证了该方法的合理性。结果表明:是否考虑土层间剪应力,土压力的大小均随墙体位移的增大而减小,不会影响土压力合力大小,仅影响土压力的分布,且考虑剪应力作用的土压力在墙体上部较不考虑剪应力要小,下部反之。剪应力对土体起阻碍作用,随内摩擦角的增大,剪应力出现先显著增大后略微减小的状态;随外摩擦角、位移的增大,剪应力增大;随着墙背倾角的增大,剪应力先减小,再反向增大,土压力随之增大。同时考虑土拱效应与剪应力所得出的合力作用点高度介于仅考虑土拱效应与库仑解之间。  相似文献   

5.
针对三轴压缩试验中含夹层盐岩特殊的破坏形式和机制开展研究。基于夹层单元的受力平衡和界面剪应力的传递机制,建立了夹层径向位移的微分方程,通过求解该微分方程得到了界面剪应力、夹层应力和应变的理论公式,并采用数值模拟验证了应力公式的准确性,进而结合多种破坏准则分析了含夹层盐岩的两种破坏形式及其机制。结果表明:界面剪应力和夹层应力分布不均匀,其最大值一般分别在边缘和中心位置出现;对于试样中夹层纵向劈裂,计算显示夹层存在横向的拉应力或拉应变;在一些试样界面边缘发现了环状白色裂纹,这是由于界面边缘剪应力最大,该处容易发生界面滑移破坏。夹层和界面的破坏会导致含夹层盐岩的密闭性降低,研究成果可在这一方面提供参考。  相似文献   

6.
秦建敏  迟璐璐 《岩土力学》2013,34(5):1508-1514
剪胀性是颗粒材料在加载过程中表现出来的重要变形特性。以孔隙胞元描述颗粒材料内部结构的最小单元,通过对单个孔隙胞元进行剪切受力分析,探讨了剪切过程中颗粒材料体积的改变对应力比和单个孔隙胞元形状的依赖关系,解释了排列密实的颗粒材料在剪切过程中先压缩后剪胀的微观机制。用离散元数值模拟得到了在双轴剪切过程中单个孔隙胞元形状以及孔隙胞元体积变形的演化过程。离散元数值结果表明,加载过程中孔隙胞元形状由初始各向同性到沿大主应力方向变大变长、体积变形先压缩后膨胀,并且体积变形在加载过程中存在局部化现象,体积变化大的孔隙胞元在较大变形时,排列成倾斜的窄带。综合孔隙胞元的受力分析和离散元数值结果表明,致密排列颗粒材料的剪胀性与微观尺度上孔隙胞元的几何结构及其内部的力链传递方式密切相关。  相似文献   

7.
A computational framework is presented for dynamic strain localization and deformation analyses of water‐saturated clay by using a cyclic elasto‐viscoplastic constitutive model. In the model, the nonlinear kinematic hardening rule and softening due to the structural degradation of soil particles are considered. In order to appropriately simulate the large deformation phenomenon in strain localization analysis, the dynamic finite element formulation for a two‐phase mixture is derived in the updated Lagrangian framework. The shear band development is shown through the distributions of viscoplastic shear strain, the axial strain, the mean effective stress, and the pore water pressure in a normally consolidated clay specimen. From the local stress–strain relations, more brittleness is found inside the shear bands than outside of them. The effects of partially drained conditions and mesh‐size dependency on the shear banding are also investigated. The effect of a partially drained boundary is found to be insignificant on the dynamic shear band propagation because of the rapid rate of applied loading and low permeability of the clay. Using the finer mesh results in slightly narrower shear bands; nonetheless, the results manifest convergency through the mesh refinement in terms of the overall shape of shear banding and stress–strain relations. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

8.
二叠系炭质页岩软弱夹层剪切蠕变特性研究   总被引:2,自引:0,他引:2  
朱赛楠  殷跃平  李滨 《岩土力学》2019,40(4):1377-1386
以西南灰岩山区二叠系炭质页岩软弱夹层为研究对象,开展了原生软岩、层间剪切带和滑带3个演化阶段的矿物组成成分、微结构和不同正应力水平的剪切蠕变力学特性分析。结果表明:软弱夹层在演化过程中,矿物组分发生改变,黏土矿物含量在原生软岩中小于5%,层间剪切带中在5%~10%之间,滑带中大于10%。微结构由致密变得疏松,颗粒间连接力减弱;软弱夹层的蠕变位移和蠕变速率随着剪应力增加而增大,呈非线性关系。在相同剪应力条件下,蠕变位移和蠕变速率的关系为:滑带>层间剪切带>原岩。长期剪切强度逐渐降低,黏聚力的降幅大于内摩擦角,对时间的敏感程度较高。为受软弱夹层控制的层状基岩滑坡的发育发展过程、失稳机制研究提供了重要借鉴意义。  相似文献   

9.
The paper presents a simple approximate analytical solution of the remote stresses that cause the collapse of a borehole or other circular cylindrical cavity in an infinite elastic space. Regions of parallel equidistant splitting cracks are assumed to form on the sides of the cavity. Their boundary is assumed to be an ellipse of a growing horizontal axis, the other axis remaining equal to the borehole diameter. The slabs of rock between the splitting cracks are assumed to buckle as slender columns, and their post-critical stress is considered as the residual stress in the cracked rock. The buckling of these slab columns is assumed to be resisted not only by their elastic bending stiffness but also shear stresses produced on rough crack faces by relative shear displacements. The energy release from the infinite medium caused by the growth of the elliptical cracking region is evaluated according to Eschelby's theorem. This release is set equal to the energy dissipated by the formation of all the splitting cracks, which is calculated under the assumption of constant fracture energy. This yields the collapse stress as a function of the elastic moduli, fracture energy, ratio of the remote principal stresses, crack shear resistance characteristic and borehole diameter. The collapse stress as a function of crack spacing is found to have a minimum, and the correct crack spacing is determined from this minimum. For small enough diameters, the crack spacing increases as the (4/5)-power of the borehole diameter, while for large enough diameters a constant spacing is approached. In contrast to plastic solutions, the breakout stress exhibits a size effect, such that for small enough diameters the breakout stress decreases as the (? 2/5)-power of the borehole diameter, while for large enough diameters a constant limiting value is approached. Finally, some numerical estimates are given and the validity of various simplifying assumptions made is discussed.  相似文献   

10.
This paper presents analytical elastic-plastic solutions for static stress loading analysis and quasi-static expansion analysis of a cylindrical cavity in Tresca materials, considering biaxial far-field stresses and shear stresses along the inner cavity wall. The two-dimensional static stress solution is obtained by assuming that the plastic zone is statically determinate and using the complex variable theory in the elastic analysis. A rigorous conformal mapping function is constructed, which predicts that the elastic-plastic boundary is in an elliptic shape under biaxial in situ stresses, and the range of the plastic zone extends with increasing internal shear stresses. The major axis of the elliptical elastic-plastic boundary coincides with the direction of the maximum far-field compression stress. Furthermore, considering the internal shear stresses, an analytical large-strain displacement solution is derived for continuous cavity expansion analysis in a hydrostatic initial stress filed. Based on the derived analytical stress and displacement solutions, the influence of the internal shear stresses on the quasi-static cavity expansion process is studied. It is shown that additional shear stresses could reduce the required normal expansion pressure to a certain degree, which partly explains the great reduction of the axial soil resistance due to rotations in rotating cone penetration tests. In addition, through additionally considering the potential influences of biaxial in situ stresses and shear stresses generated around the borehole during drillings, an improved cavity expansion approach for estimating the maximum allowable mud pressure of horizontal directional drillings (HDDs) in undrained clays is proposed and validated.  相似文献   

11.
Bentonite clay is a micro-inhomogeneous material, which consists of clay minerals (mainly montmorillonite), macro-grains (mainly quartz), water, air and others. Properties of the saturated bentonite clay are essentially characterized by the montmorillonite and water (i.e. montmorillonite hydrate). We analyze the molecular behavior of sodium montmorillonite hydrate Na1/3Al2[Si11/3Al1/3]O10(OH)2·nH2O by applying a molecular dynamics (MD) simulation method. And by using the MD results we calculate the swelling property of the montmorillonite hydrate, and compare with an experimental result. Next, by using the same MD procedure we treat a montmorillonite mineral with a large number of external water molecules to check the properties of the water. Here we treat pure- and salt-water. Then we calculate the diffusivity and viscosity of water molecules and Na+ and Cl ions.

For extending the microscopic characteristics of constituent materials to a macroscopic seepage behavior of the micro-inhomogeneous material we apply a homogenization analysis (HA). That is, starting with the Navier–Stokes equation with distributed viscosity that is calculated by the former MD procedure we determine macroscopic permeability characteristics of bentonite for both cases of pure- and salt-water. Then, by using the permeability property we calculate long-term consolidation behavior of buffering clay, which is planed to be used for high-level radioactive waste (HLRW) management. Here the deformation is treated under the well-defined Cam clay model.  相似文献   


12.
黄曼  杜时贵  罗战友  倪骁慧 《岩土力学》2013,34(11):3180-3186
开展岩石模型结构面抗剪强度特征的多尺度(尤其大尺寸)直剪试验研究对于理解岩石结构面力学特性具有重要的理论价值和实践意义。首先,基于多尺度直剪试验仪(MSJ-DST),对20 cm×20 cm、40 cm×40 cm、60 cm×60 cm、80 cm×80 cm和100 cm×100 cm的岩石模型结构面试样采用法向应力分别为200~1 000 kPa进行直接剪切试验;然后,研究不同尺寸岩石模型结构面抗剪强度的特征。结果表明:不同法向荷载作用下模型的受力变形特点相近,峰值剪切位移总体上随着某一数值附近上下浮动;在同一法向应力作用下,不同尺寸结构面试样的峰值抗剪强度表现出在某一数值附近上下浮动的特征,残余抗剪强度则表现出随尺寸的增加有小幅度增加;5级法向应力作用下,不同尺寸的峰值抗剪强度和残余抗剪强度随着法向应力的变化规律均近似相同,抗剪强度残余值与峰值的比值随着法向应力的增大逐渐增大并趋于稳定。  相似文献   

13.
复杂应力路径下杭州原状软黏土破坏标准研究   总被引:2,自引:1,他引:1  
温晓贵  张勋  周建  谢新宇 《岩土力学》2010,31(9):2793-2798
采用空心圆柱扭剪仪对主应力轴方向固定不变定向不排水剪切应力路径下杭州原状软黏土破坏标准进行试验研究,重点探讨了中主应力参数b、大主应力方向角?及孔压积累对剪切过程中黏土抗剪强度的影响,并提出原状软黏土剪切破坏的标准。试验结果表明,中主应力参数的变化没有对应力应变变化模式和试验应力路径产生影响,随着中主应力参数的增大,黏土抗剪强度的变化并没有呈现出一定的规律性;大主应力方向角对原状软黏土强度的影响反映出原生各向异性对黏土抗剪强度的控制作用;黏土样在剪切后期会产生显著的孔压积累,影响了黏土强度的发挥。考虑中主应力参数等影响因素,通过分析广义剪应力-应变曲线的变化情况,取广义剪应力qJ的峰值作为原状软黏土的剪切破坏标准。  相似文献   

14.
利用自主改造的、大主应力与小主应力方向由刚性加压板加载、中主应力方向由围压室液压加载的自动控制刚柔复合真三轴仪,对上海原状软土进行同一π面上不同洛德角真三轴固结排水剪切试验。原状土样通过分块抽样法获取,共进行了5组不同洛德角(0°、15°、30°、45°和60°)排水剪切试验。试验结果显示,上海原状软土抗剪强度、屈服和破坏点位置随洛德角的增大而减小,体积变化量先增大后减小。三向应力状态下上海软土的破坏强度接近空间滑移面(SMP)破坏准则。  相似文献   

15.
Fractal analysis of the fabric changes in a consolidating clay   总被引:5,自引:0,他引:5  
Electron microscopy and mercury intrusion porosimetry studies on the fabric of clays undergoing consolidation tests have indicated that the clays have pores of different sizes and shapes. After pressure is applied to the clay samples, the larger pores change in size and shape, with the smaller pores being relatively unaffected. The size of the pores and their distribution have been determined from mercury porosimeter tests. The shape of the pores and the changes they experience during the consolidation process have received only a qualitative evaluation from the photomicrographs obtained with the scanning electron microscope. In this study, a quantitative evaluation of the shape of the pores in a clay subjected to consolidation stresses is presented. This evaluation is done using fractal theory. Fractal theory employs the concept of fractal dimension to evaluate the shape (roughness) of closed profiles such as pores. The larger the fractal dimension, the rougher is the shape of a closed profile. The fractal dimension of a pore in a clay sample undergoing consolidation changed progressively from 1.4623 (very rough pore) to 0.9856 (very smooth pore). Thus, during consolidation, the pore, besides changing in size, also experienced a change in its degree of roughness. In addition, a theoretical analysis of the influence of the shape of the pores on the rate of water flow from a saturated clay undergoing consolidation is presented.  相似文献   

16.
旋转平推式滑坡在青藏高原东北缘地区集中分布,论文系统梳理了该类滑坡的分布特征、几何应变模型,结合室外调查、试验与数值模拟计算,探讨了近水平滑动带变形的动力机制。研究表明:(1)旋转平推滑坡集中分布于东北缘上新世泥岩盆地内,其活动强度受到青藏高原隆升过程的影响,自高原腹地至边缘盆地,滑体体积逐步减小。巨大型滑坡群集中于黄河水系上游地区;大、中型型滑坡群分别集中于下游地区;(2)旋转平推滑坡均由高黏粒含量、超固结上新世泥岩组成,河流的侵蚀是近水平剪切应力形成的控制性因素。在水平应力作用下,超固结泥岩趋向与膨胀,表现出剪胀、渐进性破坏。薄层剪切带呈现韧、脆性变形,区域内随机排列的黏土颗粒的逐步定向,表现出低于10o的内摩擦角。(3)滑动带的蠕变、裂隙扩展与地下水的增湿加速材料的流变,滑面选择粘粒含量高、碳酸钙的含量低的软弱层扩展。滑带内粘土矿物蠕变、呈粘滞性流动,导致宏观变形逐步积累,并逐步出现剪切面、裂纹的扩展,是滑坡变形的动力因素之一。  相似文献   

17.
桩基负摩阻力时间效应试验研究   总被引:2,自引:0,他引:2  
黄挺  龚维明  戴国亮  郑金海  徐国平 《岩土力学》2013,34(10):2841-2846
由于黏土固结缓慢,桩基负摩阻力存在明显的时间效应,然而目前相关研究仍显不足。设计实施了能实现桩顶加载及较大超载值的单桩及双桩负摩阻力模型试验,桩周土采用砂土和软黏土夹层,测定了模型桩身应力、桩顶位移以及土体分层沉降随固结时间的变化。试验结果显示,沉降、负摩阻力具有明显的时间效应。土表超载作用下土体沉降带动桩沉降,桩与土体的沉降均表现出早期快、后期慢的趋势。试验加载初期,黏土夹层处的负摩阻力略小于砂层,但随土体固结而增长,其基本变化规律与沉降相同。因桩端砂土层沉降稳定迅速,中性点随桩身沉降增长略呈上移趋势。此外,相同荷载作用下桩间距较小的双桩,由于下拉力较小,其沉降较小。试验条件下,3D桩间距的负摩阻力群桩效应系数在0.71~0.77之间,6D桩间距时不存在负摩阻力群桩效应。  相似文献   

18.
Geosynthetic clay liners (GCLs) have been widely used as a hydraulic barrier along with HDPE geomembrane (GM) in landfills. Both the internal and interface strengths of GCLs are very important for evaluating landfill stability. An improved simple shear apparatus used in this study does not force the shear failure to occur along a pre-determined plane. The composite specimens can fail along any interface or through shearing of the GCL internally. The displacement of each component of the specimen can also be measured during the tests. When non-woven geotextile side contacts textured GM (NWGT/GMX) and woven geotextile side contacts compacted clay layer (WGT/CCL) for a dry GCL, the failure interface can change from NWGT/GMX interface to WGT/CCL interface with the increases of the normal stresses. Conversely, when woven geotextile side contacts textured GM (WGT/GMX) and non-woven geotextile side contacts compacted clay layer (NWGT/CCL) for a dry GCL, the failure always occurs at the WGT/GMX interface for all applied normal stresses. The internal failure of the GCL did not occur when the normal stress increased up to 1,500 kPa for the GCL in dry condition.  相似文献   

19.
粒间作用力是控制土体强度和压缩特性的重要参量,但由于黏土中矿物颗粒与孔隙水间存在复杂的物理化学作用,其粒间应力及其变化规律一直无法确定。对泥浆重塑样在不同水化学条件下进行了一系列黏土一维侧限压缩试验,探讨不同浓度的NaCl溶液对饱和黏土压缩过程的影响,并确定土中粒间应力的大小及其变化规律。结果表明:同一级固结应力作用下,随替换溶液浓度的增加渗透固结变形量增大;对于相同浓度的孔隙溶液,固结应力越大,相应的渗透固结变形量越小。根据太沙基有效应力原理,提出了一种利用渗透固结变形来计算平均粒间应力的方法,在此基础上确立了粒间应力(或广义渗透压力)相对变化量与浓度和孔隙比之间的定量关系。该研究提供了一种简单有效的确定饱和黏土粒间应力的方法,为今后校正和验证多场耦合下土本构理论模型奠定基础。  相似文献   

20.
云南东川蒋家沟泥石流形成内因初探   总被引:6,自引:2,他引:4  
陈中学  汪稔  胡明鉴  魏厚振  王新志 《岩土力学》2009,30(10):3053-3056
泥石流形成的因素众多,不仅与地形地貌、降雨特征、地震、人类活动等外部因素有关,还与泥石流岩土体自身的黏土矿物成分、颗粒级配、化学成分、土体分散性、地下水环境等内部因素密切相关。在室内对蒋家沟泥石流源区土体进行黏土矿物分析、颗粒分析、化学成分定量分析、分散度和ESP值测试、地下水分析,初步探讨了蒋家沟泥石流形成的内在原因,得到:蒋家沟泥石流体的黏土矿物成分以伊利石为主,占30 %,其化学成分也与伊利石接近;ESP值、分散度平均值分别达到24.6 %、59.1 %,属于高分散性土,且土壤贫瘠;地下水矿化度高,硬度大,破坏了岩土体自身的结构和稳定性,形成大量松散物质,为泥石流的形成提供丰富的物源。  相似文献   

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