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1.
A large amount of loose landslide deposits caused by a strong earthquake can cause several mountain disasters (slope failures, debris flows, and others) under heavy rainfall conditions. Loose landslide deposits are sensitive to water due to their special structural properties, such as loose structure and wide grading. There are complex conformational and mechanical responses of loose deposits, but the initial conditions and formation mechanisms of mountain disasters can be described by several different parameters. Among these parameters, the property of failure is one of the most important, and it is used to describe extremely dangerous situations for each kind of disaster. In this study, a two-dimensional particle flow code platform (PFC2D) was used to simulate the failure properties, and a laboratory test verified the validity of the numerical experiments. Different sample scales (S1, 150?×?300 mm; S2, 300?×?600 mm; S3, 600?×?1200 mm) and fine particle contents smaller than 5 mm (f-1, 20%; f-2, 30%; f-3, 40%) were considered. The simulation results show that failure stress increases with increasing sample scale or fine particle content under low confining pressure and decreases under high confining pressure. The tendency of failure stresses to vary mutates with different fine particle contents when the confining pressure changes. The mutation value of the confining pressure is 280 kPa. In addition, the phenomenon of strain softening becomes less obvious when the confining pressure increases.  相似文献   

2.
The mass movement process of a debris avalanche is a complex dynamic system and is influenced by topographic conditions, material composition, sliding-bed surface conditions and other factors. A discrete element method is used to simulate the mass movement process of debris avalanches and is validated by laboratory flume tests. Sensitivity analyses for the model parameters show that a low bond strength indicates that a small impact force can lead to slope failure. The friction coefficient has a little effect on the mass movement process. However, high particle stiffness and bond strength causes the sliding material to behave like a rigid block of rock; therefore low bond strength and particle stiffness are selected to simulate the laboratory flume tests. The velocity of the sliding material increases with the increasing slope of the flume. If the sliding material hits a barrier, the travel direction will change and energy dissipation will occur, resulting in the sudden decrease in velocity. With an increase in landslide volume, the model parameters particle stiffness and parallel bond strength should be increased to ensure the reasonableness of the simulated results. When the landslide volume is not large enough, the selection of those model parameters has no significant effect on the movement process. The proper selection of model parameters is very important for the reasonableness of the simulated results.  相似文献   

3.
为确定非饱和紫色土颗粒流宏细观力学参数间关系,采用三维颗粒流软件(PFC3D)并结合控制变量法与莫尔-库仑破坏准则,对不同含水率(8%、10%、12%、14%、16%、18%)及围压(100kPa、200kPa、300kPa、400 kPa)条件下的非饱和紫色土三轴固结不排水试验进行了数值模拟,并与室内结果进行对比。结果表明:重塑紫色土黏聚力随含水率增加呈先增后减的趋势,且存在临界含水率12%;内摩擦角与含水率呈一阶线性负相关。紫色土的宏观强度参数黏聚力与细观参数切向黏结强度呈线性正相关,而内摩擦角值由颗粒切向黏结强度及摩擦系数共同决定。建立了紫色土含水率与颗粒切向黏结强度、摩擦系数之间的定量关系,通过细观参数切向黏结强度及摩擦系数的改变来模拟不同含水率下紫色土的黏聚力与内摩擦角的变化,将数值模拟的应力-应变曲线与室内试验曲线进行对比,验证了该关系的正确性。利用PFC3D内置的切片工具对含水率为12%,围压为200kPa的数值试件进行剖切,可以较好地观察到紫色土三轴微观颗粒的运动情况及颗粒间接触力的分布特征,为深入探究紫色土的抗剪强度特性及应力-应变性状提供参考。  相似文献   

4.
降雨在松散堆积土中入渗引起内部水土力学的变化是影响稳定性的关键。目前研究多侧重考虑颗粒粒径、含量等因素对斜坡破坏的影响,但是针对斜坡体内部水土响应及稳定性时空演化方面的研究存在不足。基于野外滑坡案例,通过室内降雨滑坡模型试验、土力学试验和理论分析手段,研究了降雨触发松散堆积体斜坡变形破坏过程及模式,采用Van Genuchten模型(VG模型)重构了土体的土-水特征曲线,重点探究了斜坡内部水土力学变化以及稳定性时空演化规律。结果表明:(1)堆积体斜坡破坏经历了微裂隙发育-局部破坏-整体破坏3个阶段,呈现出“初期拉裂-坡面坍塌-塑性滑动”的破坏模式;(2)入渗过程斜坡体积含水率以及孔隙水压力急速增加,而土颗粒之间基质吸力下降甚至消散,促进了斜坡破坏发展;(3)土体力学强度随体积含水率升高呈指数下降,体积含水率为36.3%时,有效黏聚力和有效内摩擦角仅为0.27 kPa、3.39°;(4)基于极限平衡理论和斜坡土水特征监测数据,构建了斜坡稳定性时空演化图谱,与模型试验破坏特征有较好的一致性。研究结果对降雨作用下的堆积层斜坡监测预警与防灾减灾提供理论支撑。  相似文献   

5.
降雨诱发坡面型泥石流形成机理   总被引:7,自引:0,他引:7  
基于野外调查和室内测试分析,依据岩土体破坏准则理论,结合典型坡面型泥石流进行剖析,从坡面型泥石流形成的影响因素、运动学特征、动力条件、形成与演化过程等方面,探讨了降雨诱发坡面型泥石流的形成机理。研究结果表明:坡面流以平移式滑动方式破坏为主,通常发生于残坡积土层厚度小(≤2.0 m)的陡坡地带(坡度≥40°),降雨是坡面型泥石流的主要触发因素,雨水入渗促使斜坡残坡积岩土体饱和软化,当土体含水率超过28%~30%,粘聚力、内摩擦角与含水率关系曲线都出现了明显的拐点,即饱和度超过75%时,其粘聚力和内摩擦角都发生急剧降低,斜坡土体由稳定状态向破坏状态演化。遇持续降雨(或暴雨)作用,此种残坡积土局部发生失稳下滑——流土,进而在动水压力作用下发生下泻造浆形成坡面泥石流。  相似文献   

6.
在露天矿边坡稳定性计算和评价过程中,边坡稳定性评价结果与岩体力学参数的选取密切相关。而在冻融循环条件下,岩石的物理力学参数随着冻融次数的变化而变化。首先通过室内模拟的方法对粗砂岩和细砂岩进行不同次数的冻融循环试验,然后进行一系列的单轴和三轴压缩试验,得到冻融循环条件下完整粗砂岩和细砂岩的物理力学参数;基于Hoek-Brown强度准则中的爆破扰动参数D,提出冻融循环劣化参数Df,利用修正的Hoek-Brown准则得到冻融循环条件下岩体力学参数,并分析了边坡岩体的破坏模式。结果表明:随着冻融循环次数的增加,粗砂岩和细砂岩的单轴抗压强度、弹性模量和黏聚力降低减小,内摩擦角变化较小;而岩体的单轴抗压强度、整体抗压强度、抗拉强度、变形模量、黏聚力和内摩擦角均减小,这说明岩体在冻融循环环境中是不断损伤的,质量逐渐变差;随着冻融循环次数不断增加,岩体的抗剪强度劣化在不断加速,边坡的破坏形式主要为剪切破坏。修正的岩体力学参数为露天矿边坡稳定性分析提供更为准确的数据。   相似文献   

7.
结构面抗剪强度参数对岩质边坡稳定的影响   总被引:2,自引:2,他引:2  
边坡工程中,结构面抗剪强度是非常重要的力学参数,合理地选择确定抗剪强度的方法,常常要分析c、值在边坡稳定中的作用。根据极限平衡原理,对10~30m高的平面滑动型边坡不同抗剪强度的控稳结构面c、值在边坡稳定中的作用进行了定量分析。研究表明c值对稳定系数的影响随坡高增大逐渐减弱,值对稳定系数的影响随坡高增大逐渐增强。得到了不同坡高下c、值边坡稳定作用等值曲线,该曲线很容易确定抗剪强度参数c、值在边坡稳定中的作用。  相似文献   

8.
A dry debris avalanche will produce different volumes of colluviums or depositions (loose materials), which can have a significant impact on mountainous rivers or gullies. The loose material supply process caused by a debris avalanche is an important issue for understanding secondary disasters that form via the coupling of water flow and loose materials. Two flumes were designed for laboratory tests of the loose materials supply process to rivers/gullies, and the related impact factors were analyzed. Experimental results show that the supply of loose materials is a continuous process that directly relates to the avalanche’s mass movement processes. The sliding masses with smaller particle sizes are more sensitive to the flume slope and exhibited a longer supply time. The time-consuming for the debris avalanche travel in the flume decreased with the increasing particle size (such as flume B, time-consuming is decreased 0.2 s when the particle size increased from <1.0 to 20–60 mm), landslide volume and flume slope (flume A, consuming 1.6–2.1 s when flume slope is 29° decreased to consuming 1.3–1.5 s when flume slope is 41°), which means the increasing mobility of loose materials. The total supply time increased with the increasing landslide volume or decreasing particle size and flume slope. An empirical model for the process is presented based on numerous laboratory tests and numerical simulations, which can successfully describe the supply process for loose materials to a river/gully. The supply process of loose materials to mountainous gully from a dry debris avalanche is controlled by the material compositions of sliding masses, topographical conditions, landslide volume and bed friction, where large-volume debris avalanches that occur in mountainous river regions are more likely to obstruct the river flow and form a landslide-dammed lake.  相似文献   

9.
金坪子滑坡是一个位于金沙江右岸、上距乌东德水电站约900 m、总体积约6.25×108 m3的具有典型蠕滑特点的滑坡。为了进一步弄清控制该滑坡活动模式的内在机理,通过不同黏粒含量下滑带土的反复剪切试验,研究了滑坡滑带土的残余、峰值强度特性,以期为同类滑坡的防护和治理提供参考依据。研究结果显示,随着黏粒含量的增加,滑带土应变软化现象更加明显;而滑带土残余强度、峰值强度随着黏粒含量的增加,呈现非线性降低规律,但降低幅度随正压力的增大而增大;同时,残余内摩擦角、峰值内摩擦角与黏粒含量存在良好线性负相关关系,而残余黏聚力与峰值黏聚力随黏粒含量增加呈波动性增大,但在黏粒含量40%处出现一定降低幅度。关于黏聚力的波动性降低趋势,究其原因可能在于黏粒周围强结合水的分布对滑带土强度特性,尤其是黏聚力存在临界影响。本文数据和结论对金坪子滑坡的防护和治理以及不同粒径下蠕滑滑坡失稳演化进程有重要的借鉴意义。  相似文献   

10.
含水率对滑带土强度参数的影响   总被引:1,自引:0,他引:1  
滑带土是滑坡体的重要组成部分,滑带土的强度特征对于边坡稳定具有重要的控制作用。三峡库区的黄土坡滑坡因常年经受库水位变化与降雨的影响,滑带土的含水率总是处于不断变化的过程中,因而对其强度参数产生了较大的影响。针对这一问题,在三峡库区黄土坡临江二号滑坡上采集了滑带土样,对不同含水率下的滑带土进行了不排水快剪试验。试验结果显示:含水率的变化对滑带土的抗剪强度影响较为敏感;试验数据拟合发现,滑带土的黏聚力C及内摩擦角φ均随含水率增大近似呈线性减小,且φ值降低的线性规律更趋明显。   相似文献   

11.
Following a heavy rainstorm on 29 June 1999, hundreds of slope failures occurred in granitic mountains in Hiroshima Prefecture, Japan. Among these events, a highly mobile landslide (termed the Kameyama landslide in this paper), which occurred in Kameyama area of Hiroshima city, was the most catastrophic, and was investigated in detail. The displaced soil mass from the source area of this landslide traveled about 300 m and deposited a volume more than 10 times as great as that in the source area. The landslide originated in and traversed a valley-shaped concave slope covered by pre-existing colluvial debris deposits. In addition, a spring was visible in the source area and very shallow ground water was observed in an observation pit dug in the source area. Thus, it is inferred that the ground-water table rose quickly during the rainfall, and that this rise triggered the slope failure in the source area. Based on a field survey along the landslide cross section, a possible explanation for the mechanism of the landslide was obtained: the displaced soil mass from the source area impacted the debris deposit in the path of the landslide, thus triggering liquefaction failure of the saturated part of debris. The original landslide and the liquefied debris then moved downslope as a single mass. To examine this assumption, ring-shear tests were performed on samples taken from the source area. Undrained ring-shear tests on the saturated samples showed that the sample is highly liquefiable, and liquefaction failure could have been triggered in the debris deposits by a very small impact from the displaced soil mass of the initial failure. In addition, laboratory tests simulating the impacts on the debris deposits at natural water content, i.e., unsaturated (at the survey time, 2 days after the failure) showed that although shear failure could be caused by the assumed impact force, the displaced soils stopped after a few centimeters displacement, indicating that existence of a saturated zone in debris deposits is prerequisite for this kind of failure.  相似文献   

12.
冻融及含水率对压实黏质土力学性质的影响   总被引:1,自引:0,他引:1  
刘寒冰  张互助  王静 《岩土力学》2018,39(1):158-164
针对自然环境因素对季冻区路基强度与稳定性的影响,以京哈高速公路四平-长春段沿线的黏质土为研究对象,对不同含水率的土样进行0~16次冻融循环试验。通过室内三轴试验,分析了冻融次数和含水率对压实黏质土试样力学特性的影响规律,并探讨了其影响机制。研究结果表明,当试样的含水率小于最佳含水率时,随着冻融次数和含水率的增加,压实黏质土的应力-应变曲线由应变软化型向应变硬化型转变,试样的破坏形式逐渐由脆性破坏转为塑性破坏;压实黏质土的极限强度、弹性模量和黏聚力整体上均随冻融次数的增加而呈衰减趋势,内摩擦角与冻融次数的关系并无规律可循,但各个力学参数均在经历8次冻融循环后基本趋于稳定;含水率对压实黏质土的力学性质影响显著,极限强度、弹性模量、黏聚力和内摩擦角均随含水率的增加大幅减小。综合考虑冻融循环和含水率对压实黏质土力学性质的影响规律,建议季冻区路基应做好排水工作以降低路基含水率水平,并将经历8次冻融循环后的力学指标作为工程设计参考值。  相似文献   

13.
Landslides are the major natural hazards in many countries all over the world and are usually caused by heavy rainfall, water level change of reservoir, excavation, earthquake, etc. Whether the landslide occurs or not in rainfall season, the strength variation of slip-zone soils of landslide is regarded as the vital control factor. Thus, strength behavior for slip-zone soils of landslide subject to the change of water content is required to be evaluated in a potential landslide area. In this paper, the shear strength of typical slip-zone soil, six groups of 25 specimens of remolded clay samples from Daxishan reservoir landslide, was systemically investigated using the improved direct shear test apparatus in order to fully understand its physical and mechanical properties, and also the shear and failure behavior. Furthermore, the fitting equations for expressing the relationship between the shear strength (effective cohesion and internal friction angle) and vertical loadings, initial water contents of slip-zone clay were established based on the experimental results. In particular, a series of shear stress–shear strain curves under various vertical loadings and different water contents were observed. The results show that a “softening” stress–strain behavior is achieved for unsaturated slip-zone soil, while a “hardening” curve is found for saturated slip-zone soil.  相似文献   

14.
滑坡堰塞坝是大型滑坡堆积体堵塞河道形成的土石坝。正、反粒序结构作为大型远程滑坡所特有的2种具有显著差异的地质结构特征,2种情况下坝体的破坏模式差异及稳定性影响因素亟需试验研究。文章通过室内水槽物理模型实验,对比不同粒径、不同结构的滑坡堰塞坝坝体的破坏过程差异,探究了正、反粒序结构条件下堰塞坝的稳定性差异、破坏模式及影响因素。研究结果表明:(1)堰塞坝破坏模式的变化取决于浸润线在下游坡面的出露位置,相比上游水位有一定的延迟性;(2)正、反粒序堰塞坝的破坏模式取决于坡体渗流与下游坡面临界起动坡降的关系;(3)细砂层的位置分布,不同埋深细砂层的起动临界坡降差异和细砂与中粗砂的孔隙率差异是造成正、反粒序坝体破坏差异的主要原因。该研究成果可为大型滑坡堰塞坝的防灾减灾提供理论指导。  相似文献   

15.
卢坤林  朱大勇  杨扬 《岩土力学》2012,33(Z2):150-154
二维与三维边坡稳定性分析得到的安全系数存在着差异,讨论这种差异与滑体几何尺寸及土体强度参数间的变化规律及其形成机制,可为合理地评价边坡稳定性分析提供理论依据。针对均质三维边坡,利用基于滑面正应力修正模式的极限平衡法分析程序,定性地讨论滑体形态、长高比、坡比、土体强度参数等指标对二维与三维安全系数计算结果差异(以F3/F2表示)的影响,总结F3/F2与影响指标间的变化规律,分析变化规律形成的内在机制。从工程应用的角度,给出需要考虑该差异影响的分界标准。研究表明,F3/F2随着长高比L/H、内摩擦角?及坡比m的增大逐渐减小,随着黏聚力c的增大逐渐增大;对于满足下列条件之一的边坡,宜采用三维安全系数来评价其稳定性,(1) L/H ≤ 5的滑坡体;(2) 5< L/H ≤ 10且 c > 25 kPa(或? < 15°,或m < 1.0) 的滑坡体。研究成果可为合理评价边坡稳定性分析方法提供参考。  相似文献   

16.
黏性材料细观与宏观力学参数相关性研究   总被引:7,自引:0,他引:7  
周博  汪华斌  赵文锋  李纪伟  郑必灿 《岩土力学》2012,33(10):3171-3178
岩土工程数值模拟技术中参数选取的正确性是反应材料真实力学特性的基本前提。借助于颗粒离散元分析软件PFC2D,对黏性土类材料样本开展了大量的平面双轴压缩试验。通过记录不同围压下样本的轴向应力峰值,并依据摩尔-库仑强度准则对数值试样的剪切强度参数(内摩擦角、黏聚力)进行标定。着重探讨了黏性材料细观参数中颗粒刚度比kn /ks(0.5~10共12组)、颗粒粘结强度SBS(0~50 kPa共12组)、颗粒摩擦系数?(0~6共16组)以及颗粒粘结强度比K(0.1~10共15组)和材料宏观剪切强度参数以及材料剪切特性之间的相关性。研究结果表明:颗粒粘结(法向、切向)强度同对材料黏聚力呈线性相关;颗粒摩擦系数与材料内摩擦角呈近似对数相关;颗粒刚度比大小对材料剪切强度参数变化亦有微弱的影响;此外,K值(切向粘结强度/法向粘结强度)是影响材料的剪切破坏形态的重要因素。最后,采用了两个多元非线性拟合公式,定量地描述了以上各细观参数和材料宏观剪切强度参数的联合关系,并给出了K值的建议取值,为后续的研究提供重要的理论基础。  相似文献   

17.
詹美强  葛永刚  贾利蓉  严华 《现代地质》2019,33(5):1118-1127
拟建川藏铁路是自然、地质环境最为复杂的铁路工程,地质灾害作为局部乃至全线的关键控制节点,关乎川藏铁路建设的成败。野外调查表明,德弄弄巴古滑坡位于藏东地区藏曲河右岸一级阶地上,在川藏铁路选线或建设过程中备受关注,其稳定性是直接影响着铁路选线的必要条件。本文在野外调查的基础上,对德弄弄巴古滑坡堆积体的物理力学特征和稳定性进行系统分析和计算。结果表明:天然工况下,组成德弄弄巴古滑坡的碎石土干密度达1.75 g/cm^3以上,含水率低于4%,并且堆积体的黏聚力和内摩擦角与含水率呈显著相关性,随含水率增加而减小;基于FLAC3D数值模拟和GEO-SLOPE稳定性分析表明,堆积体在天然和暴雨工况下整体稳定,但在强降雨条件下,坡脚和坡体后缘地形转折处稳定性较差,坡脚稳定性系数仅0.761。该滑坡在暴雨、地震和人类活动等作用下,极有可能发生局部失稳,影响铁路建设和坡体上居民安全,应进行必要的综合治理和稳定性监测。  相似文献   

18.
为了研究堆积层-基岩接触面滑坡的形成机理,以陕西省岚皋县广泛分布的堆积层-基岩接触面滑坡为研究对象,采用野外调查和数理统计的方法,总结了该类型滑坡的基本特征,并以祖师庙滑坡为例,借助室内试验和数值模拟手段,研究了堆积层-基岩接触面滑坡的形成机理。结果表明:1)堆积层-基岩接触面滑坡主要发育在坡度为20°~40°、下伏基岩为碎裂状结构的斜坡,多为浅表层滑坡;2)碎石土和堆积层-基岩接触面的内摩擦角随含水量增大而降低,堆积层-基岩接触面是斜坡变形破坏的软弱结构面;3)细颗粒物质的增加降低了堆积层-基岩接触面的内摩擦角,且细颗粒粒径越小,内摩擦角也越小,在饱和状态下降幅度越大;4)因细颗粒物质在堆积层-基岩接触面处聚集造成的强度降低和因水文地质条件改变造成的滑带土饱和是祖师庙滑坡主要的诱发因素。研究结果对揭示堆积层-基岩接触面滑坡的形成机理和地质灾害防治具有一定的指导意义。  相似文献   

19.
以贵州省习水县某红层滑坡为例,在野外详细调查基础上,结合室内力学试验、数值模拟技术,查明该滑坡变形破坏特征,得出节理裂隙、水对泥岩力学强度的影响效应,综合分析并阐明滑坡形成机理.研究表明:该滑坡属于典型的降雨顺层滑坡,滑坡的形成是由降雨、地形、开挖以及岩土体性质综合所致.开挖为滑坡的剪出提供临空面,降雨过程中坡体渗流场显著变化,在强/中风化层界面逐渐形成连续饱和带,开挖所引起的渗流路径改变最终反映在开挖断面附近形成较大的饱和区.各监测点孔隙水压力均呈现出持续增长趋势,随着高程增大,孔隙水压力变幅逐渐减弱.节理裂隙的发育使泥岩强度弱化,遇水后节理裂隙、水的综合作用使泥岩强度发生极大衰减,内聚力降低82%,内摩擦角降低57.9%,内聚力受影响程度高于内摩擦角,进而影响坡体稳定性,在自重势能下沿层面向开挖临空方向滑动剪出,最终造成剪出口前部房屋严重损毁.  相似文献   

20.
滑(边)坡稳定性评估探讨   总被引:2,自引:0,他引:2  
任伟中  金亚兵  冯光平  李靖 《岩土力学》2010,31(7):2129-2134
滑(边)坡稳定性评估不仅取决于计算方法本身,更主要的取决于计算参数的选取是否合理,力学参数的选取是否合理将直接关系到所建立的滑(边)坡稳定性评估体系的成败。在根据试验结果等综合确定(潜在)滑动面的黏聚力、内摩擦角的取值区间和建立计算模型基础上,对滑(边)坡反算力学参数时不同发育条件下稳定系数的选取和稳定性计算方法的确定进行了较深入研究,提出了一整套滑(边)坡力学参数的综合选取方法和稳定性评估体系,并以某滑坡为例进行了实际工程应用。采用数值模拟和物理模拟对所建立的稳定性评估体系进行了验证,其工程适用性良好。  相似文献   

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