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1.
The main objective of this paper is to examine how different engineering soils react to environmental variations and to provide correlations to characterize their behaviour under null external mechanical stress. Two French and two Algerian soils with liquid limits ranging from 36 to 112 were prepared under both slurry and Proctor compaction conditions, and then subjected to drying–wetting paths with suction controlled from several kPa to several hundreds of MPa. Experimental results are presented in five diagrams to show globally and simultaneously the shrinkage–swelling, saturation–desaturation and water retention characteristics. A reasonable consistency was observed between the oedometric and drying curves of slurry, confirming the equivalence between hydraulic loading (suction) and mechanical loading (consolidation stress) on the volume change behaviour of different soils. As an intrinsic parameter of soil nature, liquid limit was found to have a significant influence on the shrinkage limit, air-entry suction and compressibility of both slurry and compacted samples. For that reason, correlations between these characteristics and liquid limit were set up, providing a good basis for a first estimation of the drying–wetting curves. At the micro-scale, new experimental results were obtained: either on drying or wetting path, the micro-pores were almost unaffected, whereas, when matrix suction increased from 0.1 to 8 MPa, the volume of macro-pores decreased to quasi-closure. At last, the analogy between the compaction and drying–wetting curves, and the comparison of different methods to determine the water retention curve were addressed. Such analogies and comparisons contribute to a better understanding of the mechanisms of mechanical stress and suction.  相似文献   

2.
The paper presents the results of an experimental study on the effects of the initial water content and dry density on the soil–water retention curve and the shrinkage behavior of a compacted Lias-clay. The initial conditions after compaction (initial water content and initial dry density) have been chosen on the basis of three Proctor tests of different compaction efforts. According to the eight chosen initial conditions clay samples have been compacted statically. The relation between total suction and water content was determined for the drying path starting from the initial conditions without previous saturation of the specimens. A chilled-mirror dew-point hygrometer was used for the suction measurements. For the investigation of the shrinkage behavior cylindrical specimens were dried to desired water contents step-by-step without previous saturation. The volume of the specimens was measured by means of a caliper. Based on the test results the influence of different initial conditions on the soil suction and the shrinkage behavior is analyzed. The soil–water retention curves obtained in terms of the gravimetric water content are independent of the initial dry density. At water contents above approximately 11–12.5% a strong influence of the compaction water content is observed. At smaller water contents, the soil–water retention curve is independent of the compaction water content. The results of the shrinkage tests show that the influence of the compaction dry density on the shrinkage behavior is negligible. Similar to the drying behavior of saturated samples a primary and a residual drying process could be distinguished. The primary drying process is strongly influenced by the initial water content. In contrast, the rate of the volume change of the residual drying process is unaffected by the initial water content.  相似文献   

3.
This paper presents a three‐dimensional elastoplastic constitutive model for predicting the hydraulic and mechanical behaviour of unsaturated soils. It is based on experimental results obtained from a series of controlled‐suction triaxial tests on unsaturated compacted clay with different initial densities. Hydraulic hysteresis in the water‐retention behaviour is modelled as an elastoplastic process, with the elastic part modelled by a series of scanning curves and the elastoplastic part modelled by the main drying and wetting curves. The effect of void ratio on the water‐retention behaviour is studied using data obtained from controlled‐suction wetting–drying cyclic tests on unsaturated compacted clay with different initial densities. The effect of the degree of saturation on the stress–strain‐strength behaviour and the effect of void ratio on the water‐retention behaviour are considered in the model, as is the effect of suction on the hydraulic and mechanical behaviour. The initial density dependency of the compacted soil behaviour is modelled by experimental relationships between the initial density and the corresponding yield stress and, thereby, between the initial density and the normal compression line. The model is generalized to three‐dimensional stress states by assuming that the shapes of the failure and yield surfaces in the deviatoric stress plane are given by the Matsuoka–Nakai criterion. Model predictions of the stress–strain and water‐retention behaviour are compared with those obtained from triaxial tests with different initial densities under isotropic compression, triaxial compression and triaxial extension, with or without variation in suction. The comparisons indicate that the model accurately predicts the hydraulic and mechanical behaviour of unsaturated compacted soils with different initial densities using the same material constant. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

4.
为了研究变形对非饱和黄土土-水特征和滞后效应的影响,通过先构建恒定吸力条件下土体含水率与孔隙比的关系,再引入吸力的影响,建立了一个能够考虑变形的三维土-水特征曲面模型,模型能够很好地描述不同初始孔隙比黄土吸脱湿过程中含水率随孔隙比和吸力的变化规律。为了证实所提出模型的可靠性,对压实黄土进行一系列吸脱湿过程的土-水特征试验。试验结果表明,恒定吸力条件下土体含水率与孔隙比成线性关系,验证了模型的理论假设。另外由模型可以确定恒定孔隙比状态的土-水特征,将其与试验结果对比发现,脱湿路径由吸力引起的变形对土-水特征影响较大,会使特征参数减小,并抑制滞后效应。  相似文献   

5.
李宣  孙德安  张俊然 《岩土力学》2018,39(8):2829-2836
以非饱和粉土为研究对象,利用吸力可控的动三轴仪对其进行动力变形试验,得到了在不同净围压和不同吸力路径下非饱和粉土试样的骨架曲线、动弹性模量和阻尼比,研究了先脱湿后吸湿的吸力历史对其动力变形特性的影响。结果表明,在同一净围压和吸力下,非饱和粉土试样经历过先脱湿后吸湿的骨架曲线和动弹性模量比仅经过脱湿的要高,而试样经历过先脱湿后吸湿的阻尼比比仅经过脱湿的要小;此外,随着非饱和粉土试样经历过最大吸力的增大,其骨架曲线和动弹性模量增大,而阻尼比减小。试验结果可用非饱和土的平均骨架应力和弯液面水的表面张力作用来解释,并用两项联合预测非饱和土试样的最大剪切模量。  相似文献   

6.
汤连生  王昊  孙银磊  刘其鑫 《岩土力学》2022,43(7):1749-1760
利用自制的土体直拉强度测试仪,研究了重塑花岗岩残积土在不同含水率下、增湿过程和干燥过程中抗拉强度的变化规律,并从胶结力和湿吸力的角度讨论了抗拉强度变化规律的微观机制。结果表明:不同含水率条件下抗拉强度随含水率增加呈现先增后减,峰值两侧呈较好的指数规律;增湿过程中抗拉强度随含水率增加呈先增后减趋势,峰值两侧为一次函数规律;干燥过程中抗拉强度随含水率降低出现指数增加阶段、平稳阶段和小幅降低阶段3个阶段,其抗拉强度峰值为不同含水率条件下抗拉强度的4倍。花岗岩残积土在不同含水率和增湿过程中的抗拉强度的变化主要受湿吸力控制,而干燥过程中抗拉强度变化的同时受湿吸力和胶结力的控制,且胶结力对抗拉强度的贡献超过70%。土体的干燥开裂过程对应干燥过程中抗拉强度变化的几个阶段,干燥时湿吸力是土体内部拉应力的来源,这说明湿吸力既是抗拉强度的贡献者,同时也是抗拉强度的破坏者。该研究结果从另一种角度解释了土体抗拉强度的形成来源及其变化的主控因素。  相似文献   

7.
非饱和残积土的土-水特征曲线试验及模拟   总被引:4,自引:0,他引:4  
陈东霞  龚晓南 《岩土力学》2014,35(7):1885-1891
土-水特征曲线是指基质吸力与含水率或饱和度的关系曲线。土-水特征及其相关数学模型可用于非饱和土性质如渗透系数和抗剪强度模型的建立。通常,土-水特征曲线仅有脱湿曲线。笔者详细讨论了初始含水率、干密度、竖向应力及干湿循环对脱湿曲线的影响。采用滤纸法测试了厦门地区残积土的土-水特征曲线(SWCC)及滞回环。结果表明,初始含水率对SWCC影响较小,最优含水率干侧试样SWCC的进气值小,滞回环小;湿侧试样的进气值大,滞回环大;最优含水率试样的滞回环居中。初始干密度对SWCC有显著影响,低干密度试样SWCC进气值小,脱湿速率快;高干密度试样SWCC进气值高,脱湿速率低。滞回环的大小随着初始干密度的减小而增大。不同竖向应力下SWCC变化较大。随着竖向应力的增加,进气值增大,脱湿速率减小,滞回环减小并趋于稳定。第1次干湿循环对SWCC影响最大,随着循环次数的增加,进气值减小,滞回环减小并趋于稳定。由于残积砂质黏性土SWCC的过渡区和残余区不易区分,残余含水率难以确定,因此,提出5种剔除残余含水率参数的修正SWCC模型,计算分析得出,修正Gardner模型最适合厦门地区残积土的SWCC建模。  相似文献   

8.
土-水特征曲线滞后现象的微观机制与计算分析   总被引:3,自引:0,他引:3  
贺炜  赵明华  陈永贵  王泓华 《岩土力学》2010,31(4):1078-1083
对吸湿与脱湿过程中引起非饱和土土-水特征曲线滞后性质进行机制分析,认为在微观角度看,接触角的差异是主要原因。基于热力学原理,假定粒间弯液面为一圆弧,综合考虑不等径颗粒半径比、接触角等因素,应用几何关系导得了两接触土颗粒填充角之间的迭代关系,并进行编程计算。在此基础上,引入热力学弯液面压强计算公式和水量体积计算公式,得到了不等径土颗粒间基质吸力-水量计算方法。应用该方法对不同接触角条件下的单个弯液面和不同堆积形式土粒的土-水特征曲线进行了解算,结果表明,由于接触角不同,土-水特征曲线具有明显的滞后现象;孔隙填充将引起低吸力状态土体含水率增加,其对松散颗粒影响较大,含水率可增大达90%;颗粒堆积形式及级配对接触角不同引起的滞后现象影响不大。此外,仅考虑接触角因素无法解释滞回圈的形成,其计算理论有待进一步深入研究。  相似文献   

9.
Cracks initiate and propagate when tensile stress, caused by an increase in suction, becomes greater than tensile strength in expansive soils. It is important to understand the variation of tensile stress with suction for properly tackling the problems associated with cracks. In this paper, a new practical model is presented for predicting tensile stress from suction, and is verified using finite element analysis. The parametric study shows that drying time and diffusion coefficient control the distribution of tensile stress with depth and the depth to zero tensile stress, while elastic modulus, the difference between final surface suction and initial suction, and suction compression index control the magnitude of tensile stress. The new model can be used to predict the suction where the crack initiates using the soil water characteristic curve (SWCC), to estimate the depth of crack for a specific region, and to estimate the required drying time for a specific crack depth. The new model widens the general application of the SWCC approach in unsaturated soils and can be a useful tool to analyze the interaction between foundation or pavement subgrade and local climatic conditions.  相似文献   

10.
全吸力范围南阳膨胀土的土-水特征曲线   总被引:1,自引:0,他引:1  
孙德安  张俊然  吕海波 《岩土力学》2013,34(7):1839-1846
膨胀土的失水收缩、吸水膨胀过程分别对应着土-水特征曲线的脱湿和吸湿阶段。土-水特征曲线对于研究非饱和土的水力与力学特性有着重要作用。用压力板法(吸力范围0~1.5 MPa)、滤纸法(吸力范围0~40 MPa)和蒸汽平衡法(吸力范围3~368 MPa),分别对南阳膨胀土进行了土-水特性试验,得到全吸力范围内的土-水特征曲线。试验结果表明:初始孔隙比大致相同土样的土-水特征曲线,在低吸力范围内脱湿曲线与吸湿曲线具有明显的滞回现象。当吸力大于300 MPa时,土-水特征曲线的滞回效应基本消失,即脱湿曲线与吸湿曲线基本重合。滤纸法所测出的土-水特性落在主脱湿和主吸湿曲线的滞回圈内。当吸力等于367.54 MPa时,含水率仅为0.325%,几乎近于0。孔隙比随着吸力的变化规律中,不仅受到吸力大小的影响,还受到吸力历史和吸力路径影响;孔隙比与吸力关系中,相同吸力时吸湿路径的孔隙比要比脱湿路径的大;在吸力低范围,吸湿路径与脱湿路径的孔隙比相近。孔隙比与饱和度关系因吸力路径的不同也存在着明显的滞回效应,接近饱和时趋近一致。变吸力情况条件下,饱和度随着孔隙比的增加而增加,蒸汽平衡法得出的孔隙比与饱和度的关系具有明显的线性关系,而压力板法做出来的低吸力范围内的线性关系不明显。  相似文献   

11.
通过对具有不同初始含水率和干密度的两种压实黏质砂土的脱湿曲线进行测试、分析和对比,并结合核磁共振技术,探讨了干密度、初始含水率和土样组分对压实黏质砂土脱湿过程的影响规律。利用核磁共振测得了试样在各级吸力下的T2时间(横向弛豫时间)分布曲线,定性地探讨了不同吸力下试样中的水分分布特征,揭示了干密度、初始含水率和土样组分对试样脱湿过程的微观机制影响。试验结果表明:干密度仅在低基质吸力条件下对试样脱湿过程产生重要影响,而在高吸力条件下初始含水率和试样组分起主导作用;核磁共振结果证实在压实黏质砂土中,小孔隙结构主要由初始含水率和试样组分控制,而大孔隙的结构主要取决于干密度;试样组分对压实土的内部结构和孔隙大小分布的影响比初始含水率大。  相似文献   

12.
This paper presents the experimental study conducted on a clayey soil originating from the region of Béja, north-west of Tunisia. The evaporation, shrinkage and permeability behaviours were studied. The Soil Water Retention Curve (SWRC) was determined from the slurry state to dry state, under the desiccation path (called initial drying curve). The Crack Intensity Factor (CIF), settlement and void ratio were also studied to characterise the shrinkage phenomenon during desiccation. Moisture content (ω), saturation degree (Sr) and evaporation rate (Re) evolutions during desiccation path were also presented. This type of slurry clay presents three stages during the desiccation process (pendular, funicular and capillary regimes). During desiccation process, the evaporation rate presents a linear relationship as a saturation degree function. Furthermore, the evaporation rate versus suction presents two phases: quasi-saturated and unsaturated states. This paper introduces a study of the hygroscopic and mechanical parameters naturally modified during a desiccation process and proposes some analytical models to describe clay behaviour. Using these parameters, we can determine the intrinsic permeability during the desiccation process.  相似文献   

13.
水泥-水玻璃浆液在灌浆、堵水等工程中具有广泛的应用,而浆液的凝固特性对灌浆、堵水效果具有直接的影响。在对水泥-水玻璃浆液凝结硬化机理分析的基础上,对不同水灰比浆液的胶凝时间和流动度进行了试验研究,并对FDN、SM、NF、UNF-5、柠檬酸、多聚磷酸钠、酒石酸钾钠、酒石酸、磷酸氢二钠等外加剂对浆液凝固特性的影响进行了对比试验研究。在此基础上重点对磷酸氢二钠的缓凝性能进行了试验分析,初步获得了磷酸氢二钠对水泥-水玻璃浆液的凝固性能的影响规律。最后按初凝时间设计了几种水泥-水玻璃浆液的配方。  相似文献   

14.
失水过程孔隙结构、孔隙比、含水率变化规律   总被引:2,自引:0,他引:2  
李旭  张利民  敖国栋 《岩土力学》2011,32(Z1):100-105
当土体总应力状态保持不变时,基质吸力的提高是导致孔隙水排出、土样收缩、孔隙结构改变的主要原因。对于特定吸力下的土样,其微观孔隙结构决定了土壤孔隙比;而土壤孔隙结构,土壤基质吸力共同决定了土壤的含水率。假定在失水过程中,当孔隙水尚未排出时,其土壤孔隙孔径不会收缩,孔隙体积保持不变。可通过吸力建立起变化的土壤孔隙体积曲线和土-水特征曲线、土壤收缩曲线之间的对应关系:(1)累计孔隙体积曲线的包络线即为实际发生的土水特征曲线;(2)基于累计孔隙体积曲线,能够有效确定土样收缩曲线的上下限范围  相似文献   

15.
徐筱  赵成刚 《岩土力学》2018,39(5):1598-1611
非饱和土中土-水之间的相互作用可区分为毛细作用和吸附作用,已有的非饱和土力学特性的研究大都局限于较低吸力、毛细作用占优范围。实践中由于环境的变化,地表土体常经历干湿循环及处在低含水率、高吸力状态,此时吸附作用占优。针对高岭土-河砂配制的非膨胀性黏性土,采用饱和盐溶液蒸汽平衡法,从脱湿和吸湿两种吸力路径下对土体施加高吸力。测试了高吸力下土体的强度和变形特性,试验中选用了0(接近无侧限)、25、50、100 kPa共4组小围压。试验结果表明,高吸力下土体表现为应变软化型破坏和剪胀性。随着围压的施加,土体从沿纵向开裂的张裂破坏过渡为剪切破坏。验证了修正后的Bishop非饱和土强度公式不适用于描述高吸力时峰值抗剪强度的变化,得到了高吸力下峰值抗剪强度可用相对于净应力的临界状态强度和剪胀作用来表示。分析发现,高吸力时土体的抗剪强度和比表面积直接相关,吸力对土体抗剪强度的作用取决于土体集聚体组构的形成和发展程度及其导致的剪胀作用。  相似文献   

16.
The method of drying by a fluidized bed that contains inert particles was used to dry slurries of sodium chloride, limestone, clay, and a 50 - 50 wt.% mixture of clay and limestone. The slurries were prepared by mixing specified weights of the material with a specified weight of distilled water. The slurry was fed into the air-fluidized bed either by the use of compressed air or the use of a sectorized feeder. The bed contains fluidized inert particles on which the slurry was dried. The inert particles used here were sand particles. The drying rate of the slurries depends on a number of factors. These factors are air mass velocity, air inlet temperature, latent heat of vaporization and the logarithmic-mean temperature difference. Combining these factors a general drying rate equation was obtained. The results were compared with method of drying by through-circulation; drying by fluidized bed was far better.  相似文献   

17.
Abstract: Soil water retention curves (SWRCs) provide an important means of describing the response of unsaturated soils during drying / wetting processes in terms of variations of degree of saturation, water content or void ratio with suction. A key consideration in generating these curves is how to measure the suction. Frequently the filter paper technique is adopted, especially when high suctions are developed, e.g. with plastic clays. As each measurement takes at least a week with this technique, it can take months or years to generate a full SWRC in drying and wetting. Developments in laboratory tensiometers now allow matrix suctions up to about 1.5 MPa to be measured. With such a device it is possible to develop SWRCs for granular soils such as silts and clays in hours or days by continuous measurement. This paper describes an experimental set-up that was developed to measure changes in volume, water content and matrix suction during drying of three granular soils. Limitations of the apparatus and usefulness of the curves are discussed.  相似文献   

18.
采用轴平移技术对砂土、粉质黏土、黏土3种土质的土-水特征曲线进行了测试分析,并结合核磁共振技术测得了试样在不同基质吸力加载步条件下的T2时间(横向弛豫时间)分布曲线,从细微观角度分析了脱湿过程中孔隙水在土体中赋存分布的情况。实验结果表明:3种土质的体积含水率随着控制吸力的增大而减少,该脱湿曲线可分为边界效应区、过渡区与残余区3个区域。其中,黏土的持水特性明显大于粉质黏土和砂土。核磁共振的试验结果与压力板仪获得的脱湿过程是对应的,从微细观角度展示了土体的排水过程。在排水过程中,总体上具有较大势能的大孔隙水先排出,随后小孔隙开始排水,但这一规律并不绝对,由于土体孔隙结构的复杂性,会出现大小孔隙同时排水以及土样中水分重分布的现象。  相似文献   

19.
在我国西北干旱半干旱地区,处于高吸力范围内的非饱和土广泛存在于各种岩土工程中。非饱和土土水特性的研究是非饱和土渗流、强度与变形研究的基础。为研究高吸力下不同初始孔隙比非饱和土的土水特性,以一种粉土试样作为研究对象,采用饱和盐溶液蒸汽平衡法控制土试样的吸力,利用阿基米德原理量测不规则土试样的体积,通过修正的Van-Gen...  相似文献   

20.
土中水分的蒸发过程试验研究   总被引:1,自引:0,他引:1  
土中水分的蒸发是含水量动态减小的过程,伴随着土结构、应力和应变状态的演化,对土体的工程性质有重要影响,是一些工程问题的直接诱因.以初始饱和的黏土试样为研究对象,在控制环境温度(25 ~45℃)和试样初始厚度(5 ~11mm)条件下,开展了一系列室内干燥试验.通过监测试样在干燥过程中的失水量变化,获得了试样的蒸发曲线.结...  相似文献   

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