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1.
In order to investigate the effects of temperature, thickness of soil layer, wetting and drying cycles and soil types on geometrical structure of surface shrinkage cracks in clayey soils, special software Crack Image Analysis System (CIAS) for analyzing shrinkage crack patterns was developed. Eight groups of soil samples were prepared and subjected to drying to crack in laboratory. The number of crack segments and intersections, average crack length, width and aggregate area, crack intensity factor (CIF), and the corresponding probability density functions (PDF) of these parameters were determined by analyzing several crack patterns derived from different experimental conditions. The results show that the soil cracking behavior and the geometrical structure of crack patterns are significantly influenced by these considered factors. There is a tendency of crack length, width, aggregate area and their most probable value (MPV) related to the PDF increases with temperature increase. With thicker soil layers, the average crack length, width, aggregate area and CIF are increased, and the main distribution ranges of crack length, width and aggregate area are increased also. When the soil is subjected to multiple wetting–drying cycles, the soil surface generates more irregular and coarse cracks. The number of short and narrow crack segments increases significantly, and the CIF decreases with an increase in wetting–drying cycles. It is also observed that the extent of cracking is directly related to the soil fines fraction and its plasticity index (IP). The greatest CIF and crack width are observed in the soils with the largest fines fraction and highest IP. In addition, the ratio of numbers of crack segments to intersections ranges from 1.5 to 2, and cracking mainly takes place in three stages: main-cracks initiation stage; sub-cracks initiation stage; terminal stable stage.  相似文献   

2.
干燥失水现象是引起膨胀土裂隙萌生和扩展的关键性因素,裂隙的演化过程对土体结构完整性和地基的长期稳定与安全具有重要影响。为了研究膨胀土干缩裂隙的演化特点,对原状土试样开展显微CT扫描试验,结合图像分析技术获取了土体细观裂隙的二维/三维图像与特征参数,从定性和定量角度分析了干缩裂隙的演化规律。结果表明:三维重构后的数字模型还原了膨胀土在干燥过程中的体积收缩特征,与试样实测的体积有较好的一致性;从显微CT图像中可以提取细观裂隙的量化指标,如裂隙率、裂隙数量、裂隙体积与裂隙结构特征参数等;随着含水率从24.0%下降至12.0%,膨胀土的裂隙率、裂隙体积呈增大趋势,裂隙数量呈减小趋势;根据裂隙的体积和几何形态特征将其分为连通裂隙和独立裂隙,干燥过程中连通裂隙的体积占比显著提高,独立裂隙数量不断减少;球棒模型有效地模拟了膨胀土裂隙的几何形态特征,在干燥失水过程中等效孔隙半径、喉道半径、喉道长度与孔喉配位数均有增大趋势,裂隙连通性显著增强;SEM图像表明细观裂隙的连通与黏土颗粒排列形式、粒间孔隙发育程度等存在重要关联。  相似文献   

3.
The problem of desiccation cracks in soils has received increasing attention in the last few years, in both experimental investigations and modeling. Experimental research has been mainly focused on the behavior of slurries subjected to drying in plates of different shapes, sizes and thickness. The main objectives of these studies were to learn about the process of crack formation under controlled environmental conditions, and also to understand better the impact of different factors (e.g. soil type, boundary conditions, soil thickness) on the morphology of the crack network. As for the numerical modeling, different approaches have been proposed to describe the behavior of drying cracks in soils. One aspect that it is still difficult to simulate properly is the 3-D crack pattern typically observed in desiccated soils. In this work we present a numerical technique to model the behavior of drying soils. The proposed approach inserts high aspect ratio elements in-between standard elements of a finite element mesh. This mesh fragmentation technique can be easily adapted to standard finite element programs. We used this technique to analyze multiple case studies related to soil desiccation cracks developed under laboratory and field conditions. We focused our attention in some key factors that control the 3-D morphology of the drying cracks network in soils. We show that the proposed technique is able to simulate very satisfactorily the main patterns typically observed in cracked soils.  相似文献   

4.
Study of desiccation crack initiation and development at ground surface   总被引:3,自引:0,他引:3  
Cracks are common in clayey or expansive soils and provide preferential pathways for water infiltration into soils. A field study was conducted to investigate the mechanisms of initiation and development of desiccation cracks on two soils. Based on results of the field study and measurements of soil-water retention curves and soil shrinkage properties in the laboratory, the conditions of crack initiation and the development of crack geometric parameters (i.e., crack porosity, crack aperture, and crack density) with water content or drying time were quantified. The results show that desiccation cracks developed in three stages: initial stage, primary stage, and steady state stage. In the initial stage, few cracks developed with gradually decreasing water content. When the water content reached a critical value for crack initiation, cracks developed quickly and this was the start of the primary stage. The critical suction at crack initiation was calculated using a stress criterion, which is in the range of 5.3–21.3 times the preconsolidation pressure of the soil. As the water content approached the shrinkage limit of the soil, cracks developed slowly and approached a steady state. The cracks were found to be repeatable during three drying–wetting cycles.  相似文献   

5.
Particle flow code (PFC2D) software was adopted to investigate the anchorage behaviour and the characteristics of crack initiation, propagation and coalescence of reinforced specimens containing a single fissure (RSCSF). The microscopic parameters of the specimens in the numerical simulation were first validated by experimental outcomes of intact specimens, while the microscopic parameters of the rock bolts were validated based on the results of the RSCSF tests. Then, the mechanical parameters as well as the failure modes in the physical experiments were compared with those derived by the numerical simulation; the results showed good agreement between the simulated macroscopic mechanical properties and failure modes and those obtained in the laboratory experiments. The peak strength, number of cracks and the failure mode varied considerably as the anchorage angle α and fissure angle β increased. Three types of stress–strain curves, types I to III, were obtained from the RSCSF. Shear cracks were observed for all three categories of curves, but the tensile cracks were dominant. The number of cracks and the rate of bond failures decreased as the curve changed from type II to type I to type III. RSCSF failure can be classified into three failure modes: (1) tip crack propagation mode, (2) midpoint crack propagation mode and (3) rock bolt crack propagation mode. These failure modes are primarily differentiated by relations between α and β, and the ratio UCSS/UCSI between the uniaxial compressive strength (UCS, σ max) of the RSCSF (UCSS) and the uniaxial compressive strength of the intact specimen (UCSI).  相似文献   

6.
王媛  冯迪  陈尚星  吴昊宸 《岩土力学》2013,34(10):2774-2780
由于干湿循环、剪切或其它作用,自然界土壤表面发育着大量裂隙。裂隙相互连接形成网络,裂隙网络是一个随机无序的系统,常规统计方法描述裂隙的分布特征存在很大的难度。网状土体裂隙一般具有分形特征,可以用分维数来进行描述。用数码相机拍摄土体表面的裂隙,将其转换成灰度图像,并结合分形理论,建立了摄影法测定土体裂隙分维数的方法,得到了土体裂隙的分维数。根据表征单元体的物理意义,建立了基于分维数估算表征单元体的方法,并对实例进行了分析。研究表明:分维数随裂隙密度,裂隙宽度和次一级裂隙发育程度的增大而增大;表征单元体与裂隙的密度均匀性和隙宽均匀性相关,基于分维数估算表征单元体的方法简便可行。  相似文献   

7.
压实黏土的脆性断裂模型及有限元算法   总被引:4,自引:0,他引:4  
利用弥散裂缝理论,提出了压实黏土拉伸状态下的脆性断裂模型.当压实黏土达到其极限抗拉强度后,通过建立单元的各向异性刚度矩阵,将土体裂缝弥散于实体单元,构造了平面应变条件下考虑压实黏土脆性开裂的有限元计算模式.通过对某压实黏土单轴拉伸试验成果的模拟计算,验证了构建的脆性断裂模型和有限元算法对土体拉伸破坏特性和裂缝发展过程的适用性.本文还进行了模拟软弱面水压“楔劈效应”的简单数值试验,表明压实黏土脆性开裂模型和算法可较好地模拟裂缝扩展行为.  相似文献   

8.
膨胀土干湿循环胀缩裂隙演化的CT试验研究   总被引:33,自引:7,他引:33  
对南阳重塑膨胀土在干湿循环过程中裂隙的演化进行了CT试验研究,试样的CT图像显示了原有裂隙开展,新裂隙产生,裂缝数量增加并连通,最后形成裂隙网络的过程。定义了基于CT数据的裂隙损伤变量,分析了裂隙损伤变量随累计干缩体变的变化规律。  相似文献   

9.
为了探究土体干缩开裂问题,文章采用ERT技术,对黏性土开展了一维干缩开裂动态监测试验。配制初始状态饱和 的泥浆试样,在自然条件下干燥,采用ERT技术获得试样干燥过程中的电阻值变化。结合试样的电阻值图像和裂隙图像, 对土体干缩开裂规律进行了分析。研究结果表明:在干燥蒸发初期,土体电阻值随时间增加缓慢减小,其原因在于土体干 燥收缩导致土颗粒间接触面积增大,颗粒水化膜变薄,进而使得土颗粒表面双电层导电性增强。随着干燥继续进行,气体 进入土体内部,土体由初始饱和状态转变为非饱和状态,电阻值转为缓慢增加。当土体产生裂隙时,裂隙周围土体电阻值 急剧增大,而未发育裂隙的土体电阻依然保持缓慢增加的趋势。通过对比试样电阻值变化曲线和裂隙图像,发现两者所呈 现的裂隙发育位置和状态存在良好的一致性。因此,ERT技术能对干燥过程中土体裂隙发育进行有效的动态监测,准确掌 握裂隙发育的时空动态信息,并且能提前预测裂隙发育的可能位置,为研究极端干旱气候作用下土体的工程性质响应提供 了理想手段。  相似文献   

10.
Besides experimental investigations related to the strengthening effects of resins to natural stone, there have been hardly any numerical simulations conducted to the effects of the conservation on the mechanical behaviour of conserved objects. In the present study a three-dimensional finite element code MASA was used to investigate the influence of the conservation procedure on the mechanical properties of the natural stone. The finite element code is based on the microplane material model. As a localization limiter the crack band method was used. A typical profile of sandstone resembling parts of a sculpture—with scaling, sandy decay and sound zones was discretized by solid finite elements. Varied were material properties, temperature distribution over the depth of the specimen, cyclic effects due to the temperature variation and geometry of the specimen. Numerical results show that as a consequence of change of material properties after conservation procedure the cracks can be generated under environmental conditions that are most likely possible in practice. This is especially true for extreme temperature gradients, for repeated temperature conditions (cyclic loading) and for complex geometries. The numerical results have been partly verified by experiments.  相似文献   

11.
粘性土在不同温度下龟裂的发展及其机理讨论   总被引:5,自引:0,他引:5  
通过试验,研究了粘性土在不同温度下龟裂的发生和发展规律,运用计算机图像处理和编程技术,对不同温度下获得的粘性土龟裂网络的几何结构和形态特征进行了定量分析。结果表明:龟裂的发展过程可分为四个阶段,温度效应十分明显。温度越高,龟裂形貌越简单,龟裂条纹越宽,而在较低的温度下,龟裂的形貌比较复杂,龟裂条纹纤细且间距较密,表面比较破碎;从粘土矿物双电层理论对龟裂的形成机理提出了一种新的解释;在试验中还发现了一个十分有趣的现象,即大部分龟裂都呈垂直或近似垂直相交,被龟裂分割出的区块形状多以四边形为主,其它多边形较少;最后提出了龟裂研究的下一步课题。  相似文献   

12.
Mixed-Mode Fracturing of Rocks Under Static and Cyclic Loading   总被引:1,自引:1,他引:0  
Static diametrical compression tests conducted on inclined cracked chevron notched Brazilian disc (CCNBD) Brisbane tuff specimens showed that the notched cracks at the centre of the specimens opened (Mode I) up to 30° crack inclination angle (β), whereas crack closure (Mode II) started for β > 33°, and closure became more pronounced at even higher β of 45° and 70°. Both the experimental and numerical results showed that the crack initiation angle (θ) was a function of the β. Scanning electron microscope (SEM) images showed that fatigue damage on cyclic loading of Brisbane tuff is strongly influenced by the failure of the matrix due to both intergranular and transgranular fracturing.  相似文献   

13.
在干燥环境中,由于蒸发失水,膨胀土发生收缩,表面容易产生纵横交错的裂隙网络(龟裂)。龟裂的产生会极大弱化土体的工程性质,并导致各种工程问题。随着极端干旱气候的频发,膨胀土龟裂问题将会越来越多,越来越显著。开展龟裂研究对揭示龟裂现象的本质规律和指导膨胀土地区的工程实践有重要意义。龟裂的形成和发展是一个动态的过程,与土中水分的蒸发速率、应力状态、收缩特性等直接相关:龟裂形成时水分蒸发处于常速率阶段; 吸力和抗拉强度是制约龟裂形成的两个关键力学参数,当土体中的吸力引起的张拉应力超过土体的抗拉强度时,龟裂便会产生; 龟裂是孔隙发生收缩的直观表现。总体上,力的作用和收缩空间是土体龟裂形成的两个必要条件。此外,膨胀土龟裂具有非常复杂的发生发展过程,受土质学、土力学、土结构、试验条件和方法等许多因素的影响。龟裂定量分析是龟裂研究的重要内容之一,能为龟裂机理研究及相关理论模型的建立提供必要参数。计算机图形处理技术具有效率高、操作性强、精度高等优点,为龟裂定量分析提供了强有力的工具。目前关于土体龟裂研究还存在许多不足之处,在今后的工作中,应该重视龟裂形成和发展过程的动态特征,围绕与土体龟裂相关的水-土作用关系、力学机制、收缩变形机制、大尺度现场试验和三维观测分析技术等方面开展更多的针对性研究,综合考虑龟裂形成过程中的土质学、土力学和土结构因素,结合宏观现象与微观分析,建立土体龟裂的理论体系。  相似文献   

14.
干湿循环条件下重塑膨胀土的裂隙发育特征及量化研究   总被引:2,自引:0,他引:2  
裂隙性是膨胀土的典型工程地质特性之一,对其工程性质有重要影响,直接或间接地导致各种工程问题。通过对重塑膨胀土开展室内干湿循环试验,对获得的裂隙数字图像采用图像处理技术进行一系列预处理操作,提出了表面裂隙率、裂隙条数、裂隙总长度、裂隙平均宽度和绝对收缩率等量化指标,定量描述裂隙的形态特征,分析干湿循环过程中压实膨胀土的裂隙发育规律。结果表明:含水率和干湿循环次数是影响膨胀土裂隙发育的重要因素。随着含水率的减小,重塑膨胀土的裂隙发育程度总体上有增加的趋势。表面裂隙率、裂隙条数和总长度随含水率的减小逐渐增加,绝对收缩率随含水率减小而增大,而裂隙宽度与含水率之间没有明显的规律;随干湿循环次数的增加,裂隙进一步发育,裂隙条数、裂隙总长度、表面裂隙率增加,绝对收缩率总体增大,但裂隙平均宽度存在减小的现象,这与后期发育的大量微裂隙有关。  相似文献   

15.
干燥过程中膨胀土抗拉强度特性研究   总被引:4,自引:0,他引:4  
膨胀土在干燥过程中由于失水收缩容易产生龟裂,裂隙产生后会极大削弱土体的工程性质.了解膨胀土在干燥过程中的抗拉强度特性,对从力学上进一步认识龟裂的形成和发展过程有重要意义.在室内配制了若干组初始饱和的膨胀土泥浆试样,当试样干燥到不同含水率时,利用改装的超微型贯入仪对试样开展了一系列抗拉试验,获得了膨胀土在干燥过程中抗拉强...  相似文献   

16.
Clays generally crack upon drying and the cracks gradually close up because of expansion of the clays induced by rainfall infiltration. Based on the concept of air drainage ratio, we introduce an improved simplified consolidation theory for unsaturated soils and apply it to solve the crack formation problem. We present initial conditions, special consideration, and finite-element (FEM) formulations for simulation of cracks under axisymmetric conditions. Similar to finding solutions for sand-well consolidation problems, a prism of clays surrounded by polygonal distributed cracks is simplified as a cylinder. Numerical simulations using the FEM formulations are performed on the processes of crack occurrence, propagation, and closure during drying and wetting. To investigate the influence of air drainage ratio distribution, three different schemes are adopted for computation. It is found that the behaviour of cracks in clays during drying and wetting can be well represented using the approach proposed in the paper. The simplified consolidation theory used in the paper for unsaturated soils is more suitable for crack analysis than the general consolidation theory currently applied.  相似文献   

17.
在工程建设与自然环境中,土体因失水而产生收缩、开裂的过程受多重因素的影响,且各因素之间的相互作用关系十分复杂。其中,环境温度在土体开裂的起始与结束中,起至关重要的影响;同时,鲜见关于土体内部黏土、砂粒配比对于裂隙发育影响的研究。故本研究设置了不同环境温度、含砂率条件,展开一系列室内蒸发试验,通过记录试验过程中土体内部水分散失以及表面裂隙发育、发展情况,利用相关图形分析软件,对裂隙率、裂隙网络的几何形态进行定量分析,进而探究不同温度、含砂率对土体干缩、开裂的影响机理。研究结果表明:(1)砂粒的存在,导致土体内部的结构发生改变,部分输水通道被堵塞,从而延长了自由水的运移路径,水分蒸发速率随着含砂率的增加而降低。(2)砂粒的存在将导致土体表面提前产生开裂,此现象受含砂率的影响较小,与是否含砂有关。(3)土体内部含砂率越高,裂隙发育纵深越小,延伸长度越短,同时裂隙的宽度与含砂率呈反比。(4)相同含砂率条件下,环境温度越高,水分蒸发速率、土体表面形成的裂隙宽度越大,且在一定程度上促使表面裂隙提前产生。  相似文献   

18.
Exploring desiccation cracks in soils using a 2D profile laser device   总被引:4,自引:0,他引:4  
The study of desiccation cracks in soils has been a subject of increasing attention in recent research. This paper presents the use of a 2D profile laser that is coupled with a motion controller (that allows scanning the overall surface of a drying soil) and electronic balance (to measure the water loss). The aim is to accurately track the three most relevant variables associated with the behavior of soils during desiccation: volume change, water loss and evolving crack network’s morphology. The paper presents the methodology to obtain a digital model of the soil using the experimental setup described above. The main results of a natural soil subjected to drying are presented and discussed, including evolution of cracks aperture; evolution of cracks depth, surface contour levels (at different times); and evolution of volume change. It is shown that the proposed methodology provides very useful information for studying the behavior of soils subjected to desiccation.  相似文献   

19.
裂缝对膨胀土抗剪强度指标影响的试验研究   总被引:11,自引:1,他引:10  
刘华强  殷宗泽 《岩土力学》2010,31(3):727-731
基于室内直剪试验,测定了膨胀土经历干湿循环后的抗剪强度指标。试验基本反映了膨胀土在干湿循环过程中裂缝的开展现象,揭示了正是由于裂缝的开展使膨胀土强度降低。结果表明,无论是黏聚力还是内摩擦角随裂缝的开展,都会产生一定程度的衰减,相比之下,裂缝对黏聚力的影响更加突出,对其取值也应更为谨慎。膨胀土的抗剪强度随裂缝的开展而衰减的规律符合双曲线模式,提出反映膨胀土抗剪强度随干湿循环次数增加,实际上是随裂缝的开展,而降低规律的经验公式。工程实际中膨胀土的抗剪强度反映的是包含各种裂隙的土体复合强度,因此在设计中,强度参数的取用应以考虑裂隙作用的土体强度为基本依据。所建议的方法可以使今后研究膨胀土裂隙的发生、发展对抗剪强度的影响变得相对简单,具有可操作性。  相似文献   

20.
膨胀土具有多裂缝性的不良工程特性,对边坡等膨胀土地区工程具有潜在威胁。再生橡胶加筋膨胀土(ESR)对膨胀土动力、静力以及胀缩性有良好的改良效果。膨胀土的裂缝演化形态会受到土样厚度的影响,本文使用橡胶加筋膨胀土,对照素膨胀土探究橡胶粉末对膨胀土裂缝演化的影响与ESR裂缝的厚度效应。试验共设计未添加橡胶素膨胀土与ESR各4组不同厚度试样展开研究,结果如下:(1)膨胀土自然干燥过程含水率可分为3阶段变化,ESR的含水率变化更为迅速;(2)膨胀土的开裂过程存在明显厚度效应,ESR的厚度效应相较更不明显,裂缝演化更具有均匀性;(3)膨胀土开裂过程中的裂缝总长度与总面积受厚度效应影响严重,橡胶加筋可以约束膨胀土裂缝长度与面积并减少不同厚度样品间差值;(4)膨胀土裂缝发育的分形维数最终在1.4~1.5之间,不同厚度橡胶加筋膨胀土的分形维数变化更为接近。  相似文献   

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