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1.
Concrete‐faced rockfill dam (CFRD) is a popular alternative to traditional dam types in the last two decades. The modelling of CFRD involves complex multi‐body contact and strong geometry and material nonlinearities. We present a numerical approach for the modelling of CFRDs in this paper. Based on the dual‐mortar finite element method, the presented approach considers different parts of rockfill and all concrete slabs as independent deformable continuum. The multi‐body contacts are modelled using Lagrange multipliers with a weak form segment‐to‐segment contact strategy. To alleviate instability induced by strong geometry nonlinearity in the slab–slab contact, we propose a mixed type of constraints for the tangential contact. A general transformation scheme is introduced to simplify the implementation of contact constraints. Three‐dimensional analysis of Tianshengqiao‐1 CFRD is performed. The nonlinear and time‐dependent deformation of the rockfill is considered. We study the influence of the rockfill deformation on the reliability of the concrete face. Three major concerns of the face, that is, the axial compression, the slab–slab separation and the face‐rockfill separation, are discussed in detail. The numerical results are compared with data from in‐situ observation. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

2.
The clay-core rockfill dam is a multibody contact system in which the hydromechanical response of the clay core plays a crucial role. This complex problem is highly challenging to model numerically. We present a numerical approach that considers the multibody contact, consolidation, and strong geometric and material nonlinearities for the modeling of clay-core rockfill dams. Within the framework of the dual mortar finite element method, the presented approach considers the contact bodies as independent porous media continuums. The nonlinear contact conditions are derived based on the effective contact traction on contact interfaces and pore pressure continuity. The weak forms are obtained by introducing Lagrange multipliers as additional unknowns, which are then condensed through an extended general transformation. The presented method is first validated with a patch test considering the contact between two porous media. Then, a three-dimensional analysis of the Rumei clay-core rockfill dam is performed. The main numerical analysis concerns are the two observation galleries planned for construction inside the clay core. The galleries consist of dozens of tunnel-like concrete blocks, giving rise to complex concrete-concrete and concrete-clay contacts. The discontinuous separation and sliding between concrete blocks are investigated. For the concrete-concrete contact, both hard and soft joint approaches are evaluated and compared. The pore pressure results of the concrete structures are also analyzed.  相似文献   

3.
刘招  苗隆德  叶林  闫正龙  蔺蕾蕾 《岩土力学》2006,27(Z2):491-496
挤压式边墙技术是近年混凝土面板堆石坝发展最具有代表性的新技术之一。本课题以使用挤压式边墙的面板堆石坝为主要研究对象,具体结合一个工程实例进行分析。运用ANSYS参数化设计语言(APDL)实现了用点面接触单元模拟面板与边墙的接触;创新性地采用非线性连接单元模拟面板垂直缝和周边缝。在此基础上,计算了有挤压式边墙和无边墙两种情况下坝体及面板分别在竣工期和蓄水期的应力、变形;最终确定两者面板应力应变之间的差异,明确挤压边墙对面板的影响。  相似文献   

4.
胡耘  张嘎  程嵩  张建民 《岩土力学》2009,30(4):1089-1094
采用三维有限元方法,研究了面板竖缝特性对面板堆石坝中面板应力变形的影响。基于类似子结构法概念,建立了精细模拟面板及其分缝特性的三维有限元分析方法。针对马来西亚巴贡面板堆石坝,计算了多种面板竖缝宽度和填料的方 案,得到坝体和面板的应力变形。计算结果表明,面板竖缝几何尺寸和填料特性对面板的挠度、顺坡向应力、水平向压应力和周边缝张合变形影响不大,而对面板的水平向拉应力和竖缝压缩量影响很大;面板竖缝填料变软和宽度增大均会导致面板的水平向压应力减小,而竖缝压缩量明显增大;采用软木作为填充材料较之填充硬木,可以大约降低一半的压应力;面板竖缝宽度及其填料特性对同期填筑的面板、特别是邻近的面板水平向压应力影响较大。  相似文献   

5.
岗曲河混凝土面板堆石坝三维静力应力变形分析   总被引:2,自引:0,他引:2  
胡再强  李宏儒  苏永江 《岩土力学》2009,30(Z2):312-0317
采用邓肯模型对岗曲河面板堆石坝进行了三维有限元分析,研究软岩填筑层对坝体工作性能的影响,计算混凝土面板与岩石填筑层的位移和应力及周边缝变形。结果表明,由于受到下游堆石3D软岩填筑区的影响,坝体最大横断面最大沉降略偏向下游,总沉降量约为坝高的0.2 %,面板周边缝位移的绝对值一般都小于2 cm,周边缝的止水设计需注意选择合理的止水形式和填缝材料,由于坝址河谷狭窄,受岸坡约束,三维效应对坝体的应力变形影响较明显,为设计施工提供了参考。  相似文献   

6.
采用挤压边墙技术的高面板坝裂缝成因分析   总被引:3,自引:2,他引:1  
周伟  花俊杰  常晓林  曹艳辉 《岩土力学》2008,29(8):2037-2042
为加快施工进度,国内很多高面板堆石坝都采用了挤压边墙技术,用上游坡面的挤压边墙代替传统的垫层。挤压边墙的施工特点决定了其与上覆面板之间的结构关系将与传统的面板-垫层有很大差别。虽然目前面板坝的施工技术和施工水平较以前有较大的提高,但少数工程仍然出现了比较严重的面板裂缝,而采用挤压边墙技术的面板坝施工期出现的裂缝分布规律与采用面板-垫层施工方法有明显的不同。面板裂缝的产生与面板施工期的应力变形状态密切相关,目前面板堆石坝计算中采用的整体模型方法对面板的概化较多,得到的面板应力精度较差。根据挤压边墙实际的施工特点,提出采用子模型法分析面板的应力变形,对某面板坝工程裂缝成因的分析结果表明,温降和上游坡面局部高程不平整引起的面板与挤压边墙之间的局部约束过大是导致面板裂缝的主要原因。  相似文献   

7.
The strong ground motion of the 2008 Wenchuan earthquake in China caused considerable damage to the Zipingpu concrete face rockfill dam (CFRD). The maximum crest settlement was approximately 1.0 m, and compressive failure and joint dislocations were observed in the face slabs. This damage has made it necessary to understand the damage pattern and safety of high CFRDs subjected to strong earthquake shaking, and the response of the Zipingpu CFRD during the Wenchuan earthquake can be used as a benchmark for this purpose. In this study, a 3D dynamic procedure was employed to simulate the dynamic responses of the Zipingpu CFRD. The rockfill materials were described using a generalized plasticity model, while the interfaces between the face slabs and cushions were modeled using zero-thickness interface elements that follow a perfect elasto-plastic stress–strain model in the tangential direction using Coulomb’s friction law. Dam deformation, face-slab stress, and face joint dislocations were simulated, and the results were compared with the field measurements. Using the generalized plastic model, the residual deformation of the dam during the earthquake could be directly obtained without being complemented by separate, semi-empirical procedures. The rockfill materials shrank to the center of the valley due to the strong shaking, causing crushing damage in the zone of the slabs. The dislocation of construction joints was also duplicated by the numerical procedure. The results of this study indicate that a 3D finite element procedure based on a generalized plasticity model can be used to evaluate the dynamic responses of CFRDs during strong earthquakes.  相似文献   

8.
流变变形对高面板堆石坝面板脱空的影响分析   总被引:8,自引:3,他引:5  
张丙印  师瑞锋 《岩土力学》2004,25(8):1179-1184
面板堆石坝尤其是高面板堆石坝的运行实践表明,堆石的流变现象比较显著。采用基于直接约束算法的接触力学分析方法模拟了混凝土面板和堆石体之间的接触关系。考虑堆石体的流变特性,并结合天生桥一级面板堆石坝的现场观测结 果,对高面板堆石坝中的面板脱空问题进行了有限元计算分析,研究了坝体流变变形对面板脱空和垫层亏坡问题的影响。  相似文献   

9.
侯文峻  张嘎  张建民 《岩土力学》2009,30(7):2147-2152
利用三维有限元数值模拟方法,分析了采用挤压墙的面板堆石坝的应力变形规律。与不采用挤压墙和采用半挤压墙型式的方案进行比较,研究了挤压墙的存在及其型式对于面板堆石坝应力变形响应的影响。计算结果表明,挤压墙的存在及其型式对于坝体的应力变形以及面板挠度变形影响较小;对面板的应力分布情况有一定影响,但不会对面板安全性产生明显影响;挤压墙的存在有利于减小周边缝的沉陷变位。  相似文献   

10.
徐远杰  潘家军  刘祖德 《岩土力学》2009,30(10):3139-3144
基于混凝土面板堆石坝面板施工的实际情况,指出了通常混凝土面板堆石数值计算在模拟面板施工算法上的缺陷。提出了面板堆石坝竣工期上游坝坡修整力学问题,建立了一种适合平面问题和三维问题的统一坝坡修整算法,对任何采用接触模型模拟垫层料和混凝土面板受力特性的有限元计算模型,都具有普遍意义,并在有限元软件ABAQUS中实现了该算法。算例分析表明:该算法简洁和有效,能够保持良好的网格形态,使接触非线性计算收敛速度极大改善,并使蓄水状态下混凝土面板和坝体计算结果更趋于真实。同时,对考虑堆石料流变特性,研究施工阶段或蓄水后混凝土面板与垫层之间是否会发生“脱空”现象提供必要基础。  相似文献   

11.
以新疆大石峡250 m级特高面板砂砾石坝为依托工程,采用大型接触面直剪试验确定了筑坝料与基岩的摩擦接触参数,建立了考虑坝体与坝基相互接触作用的面板坝三维数值模型,研究了摩擦接触效应对坝体、混凝土面板应力变形以及止水接缝三向变位的影响。结果表明:双曲线模型符合筑坝料与基岩之间剪应力与位移的非线性关系;若不考虑坝体与基岩的接触效应,坝体边界处变形梯度和主应力值计算值均偏小,导致判断该区域坝体开裂区范围偏小而拱效应被高估;蓄水期面板挠度和顺坡向应力受接触效应影响相对较小,而轴向位移和轴向应力受接触效应影响较大;周边缝变位受接触效应影响非常强烈,在高水头压力作用下,坝体局部可能出现相对基岩的滑移导致周边止水变形和坝肩竖缝张开量大幅增加。陡峻河谷筑坝若不考虑接触效应,计算结果是偏危险的。计算结果和Anchicaya 坝实测渗漏位置结果均表明,周边缝变位控制是陡峻河谷面板坝建设的关键。  相似文献   

12.
A meso‐scale particle model is presented to simulate the expansion of concrete subjected to alkali‐aggregate reaction (AAR) and to analyze the AAR‐induced degradation of the mechanical properties. It is the first attempt to evaluate the deterioration mechanism due to AAR using the discrete‐element method. A three‐phase meso‐scale model for concrete composed of aggregates, mortar and the interface is established with the combination of a pre‐processing approach and the particle flow code, PFC2D. A homogeneous aggregate expansion approach is applied to model the AAR expansion. Uniaxial compression tests are conducted for the AAR‐affected concrete to examine the effects on the mechanical properties. Two specimens with different aggregate sizes are analyzed to consider the effects of aggregate size on AAR. The results show that the meso‐scale particle model is valid to predict the expansion and the internal micro‐cracking patterns caused by AAR. The two different specimens exhibit similar behavior. The Young's modulus and compressive strength are significantly reduced with the increase of AAR expansion. The shape of the stress–strain curves obtained from the compression tests clearly reflects the influence of internal micro‐cracks: an increased nonlinearity before the peak loading and a more gradual softening for more severely affected specimens. Similar macroscopic failure patterns of the specimens under compression are observed in terms of diagonal macroscopic cracks splitting the specimen into several triangular pieces, whereas localized micro‐cracks forming in slightly affected specimens are different from branching and diffusing cracks in severely affected ones, demonstrating different failure mechanisms. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

13.
Microplane damage model for jointed rock masses   总被引:1,自引:0,他引:1  
The paper presents a new microplane constitutive model for the inelastic behavior of jointed rock masses that takes into account the mechanical behavior and geometric characteristics of cracks and joints. The basic idea is that the microplane modeling of rock masses under general triaxial loading, including compression, requires the isotropic rock matrix and the joints to be considered as two distinct phases coupled in parallel. A joint continuity factor is defined as a microplane damage variable to represent the stress‐carrying area fraction of the joint phase. Based on the assumption of parallel coupling between the rock joint and the rock matrix, the overall mechanical behavior of the rock is characterized by microplane constitutive laws for the rock matrix and for the rock joints, along with an evolution law for the microplane joint continuity factor. The inelastic response of the rock matrix and the rock joints is controlled on the microplane level by the stress–strain boundaries. Based on the arguments enunciated in developing the new microplane model M7 for concrete, the previously used volumetric–deviatoric splits of the elastic strains and of the tensile boundary are avoided. The boundaries are tensile normal, compressive normal, and shear. The numerical simulations demonstrate satisfactory fits of published triaxial test data on sandstone and on jointed plaster mortar, including quintessential features such as the strain softening and dilatancy under low confining pressure, as well as the brittle–ductile transition under higher confining pressure, and the decrease of jointed rock strength and Young's modulus with an increasing dip angle of the joint. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

14.
Yao  Yu  Wang  Rui  Liu  Tianyun  Zhang  Jian-Min 《Acta Geotechnica》2019,14(1):83-100

Analysis of the seismic response of high CFRDs under non-uniform ground motion input is conducted using a novel non-uniform input motion calculation method combined with nonlinear FEM. The non-uniform input motion calculation method and its basic assumption are validated. The response of CFRDs under uniform and non-uniform input is compared to discuss the necessity of conducting seismic analysis of high CFRDs under realistic non-uniform ground motion input. When the acceleration at the surface of the free field for dynamic simulations with uniform and non-uniform input is kept consistent, the seismic response of CFRDs under non-uniform input is in general significantly smaller, while the dynamic tensile stress around the edges of the concrete face slab is greater. The simulation results suggest that non-uniformity of the ground motion input has important effects on the seismic response of high CFRDs and should be considered in the seismic design of CFRDs. The influence of the incident angle of seismic waves is also investigated, with results indicating that the influence is waveform dependent, while being frequency independent.

  相似文献   

15.
Numerical simulation methods are extensively used to analyze the stress and displacement of concrete‐faced rockfill dams (CFRD). The results of these methods are influenced by fuzzy factors, i.e. geometric features, material properties, loads and boundary conditions, which exist widely in the engineering of CFRD as a kind of commonly uncertain factor. To solve this problem, the information entropy theory and the conventional method of structure analysis, namely, finite element method (FEM), were combined in this work. Information entropy, as an effective tool of measuring uncertainty, was used to represent the uncertainty of CFRD. Based on the model that can transform fuzzy information entropy into random information entropy, fuzzy structure can be transformed into equivalent random structure, then mechanical characteristics of CFRD were analyzed by well‐developed stochastic FEM. As an example, one CFRD was chosen to analyze the structure, and the result shows that this method is effective. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

16.
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   

17.
面板堆石坝垂直缝破坏下三维渗流场有限元模拟   总被引:1,自引:0,他引:1  
陈守开  严俊  李健铭 《岩土力学》2011,32(11):3473-3478
采用改进节点虚流量法求解无压稳定渗流场,并引入无厚度的裂缝模型对破坏的垂直缝渗流行为进行模拟,得到面板堆石坝裂缝渗流问题的有限元分析方法,并编制Fortran程序。以某混凝土面板堆石坝为例,计算了面板单一垂直缝破坏和多条垂直缝破坏条件下的三维渗流场,得到不同条件下渗流场的水头分布、浸润线以及渗漏量,系统分析了面板堆石坝在垂直缝破坏条件下的稳定渗流场规律和特点。结果表明,该方法能对渗流逸出点和浸润线进行准确定位,还能很好地模拟面板垂直缝破坏对坝区渗流场的影响,可以为面板堆石坝的接缝设计提供参考。  相似文献   

18.
Analysis of shield tunnel   总被引:1,自引:0,他引:1  
This paper proposes a two‐dimensional finite element model for the analysis of shield tunnels by taking into account the construction process which is divided into four stages. The soil is assumed to behave as an elasto‐plastic medium whereas the shield is simulated by beam–joint discontinuous model in which curved beam elements and joint elements are used to model the segments and joints, respectively. As grout is usually injected to fill the gap between the lining and the soil, the property parameters of the grout are chosen in such a way that they can reflect the state of the grout at each stage. Furthermore, the contact condition between the soil and lining will change with the construction stage, and therefore, different stress‐releasing coefficients are used to account for the changes. To assess the accuracy that can be attained by the method in solving practical problems, the shield tunnelling in the No. 7 Subway Line Project in Osaka, Japan, is used as a case history for our study. The numerical results are compared with those measured in the field. The results presented in the paper show that the proposed numerical procedure can be used to effectively estimate the deformation, stresses and moments experienced by the surrounding soils and the concrete lining segments. The analysis and method presented in this paper can be considered to be useful for other subway construction projects involving shield tunnelling in soft soils. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   

19.
面板坝垂直缝及止水失效渗流场有限元模拟   总被引:2,自引:0,他引:2  
潘少华  毛新莹  白正雄 《岩土力学》2008,29(Z1):145-148
以金川面板堆石坝为例,用有限元方法计算了当面板缝及止水局部失效时各种工况下的渗流场,系统分析了大坝在面板垂直缝及止水局部失效后的稳定渗流场的规律和特点。采用无厚度的二维平面单元来模拟面板垂直缝及止水结构周边缝,同时采用理论上严密的Signorini型变分不等式方法进行求解,此方法能对渗流出渗点和浸润线进行准确定位。通过分析计算结果,指出了面板缝及止水结构周边缝的失效位置,失效缝宽对等势线、浸润线以及渗漏量的影响。为面板堆石坝接缝的设计提供参考。  相似文献   

20.
水布垭超高面板堆石坝变形控制方法研究   总被引:1,自引:0,他引:1  
杨启贵  常晓林  周创兵  周伟 《岩土力学》2010,31(Z2):247-253
通过对已建水布垭超高面板堆石坝的设计经验总结,从数值分析、工程类比、坝体分区,堆石体材料压实标准、施工填筑程序、面板浇筑时机、面板浇筑时其顶部与临时坝顶的高差等方面探讨变形控制方法,归纳、总结了水布垭超高面板堆石坝变形控制的基本思路,以减小施工期坝体的不均匀沉降,改善面板在施工期、运行期的应力变形状态。  相似文献   

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