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1.
袋装石土工袋堆叠过程中在土工袋接触面形成的咬合和嵌固作用,对土工袋剪切力学强度和破坏形式有较大的影响。通过一系列直剪试验研究了咬合和嵌固作用的影响,试验结果表明:袋装石土工袋层间咬合和嵌固作用能够增大土工袋抗剪强度;咬合作用随着土工袋上部竖向应力的增大有所减小,而嵌固作用则有所增大;袋装石土工袋在剪切过程中会产生两种破坏形式,分别为土工袋袋体自身变形和层间滑动破坏;土工袋组合体在受到水平剪切力时会发生整体变形,随后在组合体内部产生阶梯型滑动面,滑裂面的形状随着竖向荷载的增大而有所不同,相应的抗剪强度也会随着滑动面的改变而变化。  相似文献   
2.
岩石锚桩基础的承压力与抗拔力之应用   总被引:1,自引:0,他引:1  
黄皖平 《安徽地质》2005,15(4):318-320
根据“110kV绩溪-旌德”线路现场设计及施工情况,系统总结了岩石锚桩基础在中风化、强风化的山区中的应用经验,分析了工程设计中锚筋内力、锚桩承载力和粘结力之间关系,合理采用计算公式,获得较好效果。  相似文献   
3.
张涛  李涛  冯硕 《岩土力学》2022,43(10):2757-2767
常规三轴压缩试验中具有较强结构性的黏性土在围压较低时其应力−应变关系会呈现应变软化现象,一般还伴有塑性变形,通常土体内部结构损伤是应变软化产生的主要原因。考虑到采用经典塑性理论描述材料的应变软化不仅会违背 Drucker 的稳定性假设,而且也不能描述卸载塑性。因此,基于修正剑桥模型及 Li 和 Meissner 提出的塑性硬化准则,建立了一个描述饱和黏性土不排水应变软化的弹塑性双面模型。该模型以应力−应变曲线的峰值点分界,将应变硬化和应变软化分别作为独立的加载事件进行分析,同时引入新的结构性参数表征剪切过程中土体结构损伤导致的塑性刚度衰退。对不同固结状态饱和结构性黏土的三轴固结不排水压缩试验结果的模拟表明,所建模型能够较好地描述饱和黏性土的不排水应变软化特性。  相似文献   
4.
The western segment of the Main Tianshan shear zone (MTSZ) branches into three major dextral strike-slip shear zones in the Borohoro Ranges, northwestern China. Mylonitic rocks within these zones exhibit vertical foliations, subhorizontal lineations, and dextral kinematics. The microstructures and CPO patterns of calcite and quartz in the tectonites suggest shearing at temperatures of 200°C to 500°C or above. The amount of dextral displacement along the zones is less than 100 km. LA-ICP-MS U-Pb dating of zircons from some pre-kinematic granites gave ages of 364–325 Ma and 316 Ma, and zircons from a syn-kinematic leucogranite gave an age of 291 Ma. We propose that dextral shearing along the MTSZ started in the earliest Permian. Our data indicate that collision between the Yili and Junggar plates might have finished before 325 Ma or 316 Ma, with a tectonic transformation from 325 Ma to 300 Ma, resulting in intracontinental transpression from 300 Ma or 291 Ma. We suggest that the formation of the Kazakhstan orocline (KO) took place in two stages, with the early stage of bending driven by convergence related to oblique subduction, and the late stage possibly associated with lateral disarticulation as a result of the dextral strike-slip shear zones.  相似文献   
5.
商丹断裂带是一条多期次活动的大型断裂带,区域上也是大型金属矿的赋存带,对金属矿产具有重要的控制作用。文章以商丹断裂带(河南段)为研究对象,在基于孔沟至寨根一带构造剖面的宏观特征和显微构造特征解析的基础上,对研究区控矿构造和机理提出了新的认识。综合研究表明,商丹断裂带(河南段)具多期活动特征,整体呈现"正花状构造"样式。分析方解石机械双晶、矿物动态重结晶及变质矿物组合等显微构造显示,断裂带以韧性变形为主,两侧地层以韧性和脆性变形叠加为特征。区内变质变形温度以绿片岩相、中低温为主,局部可达角闪岩相。早期的韧性剪切活动控制本区金矿的总体控矿界面,晚期的构造活动形成的韧-脆性破碎带对先期形成的矿床进行改造、富集、最终定位,主断裂两侧的次级韧-脆性构造带是未来寻找金矿的有利部位。  相似文献   
6.
为查明甘肃北山前红泉一带地层、岩浆岩、构造等地质特征和成矿地质条件,总结成矿规律,进行矿产资源远景评价和成矿预测,开展了1∶5万前红泉等三幅矿产远景调查工作。通过4个年度工作,重新厘定了工作区地层系统,建立了区内岩浆岩演化序列,在构造解析的基础上探讨区域构造演化史。将"O-S"地层(敦煌岩群)解体为4个填图单元,首次发现了黑山头埃达克岩,新发现各类矿产地、矿(化)点17处。通过综合研究,圈定6处找矿远景区和10处找矿靶区;对北山地区"O-S"地层(敦煌岩群)进行了重新认识,对北山韧性剪切带金矿找矿前景及钴矿找矿方向等提出了思考和展望。  相似文献   
7.
8.
李生栋 《地质与勘探》2020,56(4):675-687
寒山金矿床产于北祁连西段加里东褶皱带北缘,区内矿产资源丰富,加强其控矿构造及矿化富集规律研究,对矿区勘查意义重大。通过野外调查及室内研究,发现矿区内赋矿地层为奥陶系阴沟群火山碎屑岩。矿区内褶皱构造及韧-脆性剪切带发育,联合控制了矿体的分布。韧-脆性剪切带发育在褶皱两翼,受层滑剪切系统控制。矿体产在背斜转折端及两翼韧-脆性剪切带内,呈楔形产出,向下迅速尖灭。研究认为,矿体主要富集在韧-脆性剪切带发育部位,矿体的富集程度与蚀变带规模正相关,靠近背斜转折端的位置为矿体富集地段,多阶段成矿作用同部位叠加构成富矿体。  相似文献   
9.
On January 21 2016, an earthquake of MS6.4 hit the Lenglongling fault zone(LLLFZ)in the NE Tibetan plateau, which has a contrary focal mechanism solution to the Ms 6.4 earthquake occurring in 1986. Fault behaviors of both earthquakes in 1986 and 2016 are also quite different from the left-lateral strike-slip pattern of the Lenglongling fault zone. In order to find out the seismogenic structure of both earthquakes and figure out relationships among the two earthquakes and the LLLFZ, InSAR co-seismic deformation map is constructed by Sentinel -1A data. Moreover, the geological map, remote sensing images, relocation of aftershocks and GPS data are also combined in the research. The InSAR results indicate that the co-seismic deformation fields are distributed on both sides of the branch fault(F2)on the northwest of the Lenglongling main fault(F1), where the Earth's surface uplifts like a tent during the 2016 earthquake. The 2016 and 1986 earthquakes occurred on the eastern and western bending segments of the F2 respectively, where the two parts of the F2 bend gradually and finally join with the F1. The intersections between the F1 and F2 compose the right-order and left-order alignments in the planar geometry, which lead to the restraining bend and releasing bend because of the left-lateral strike-slip movement, respectively. Therefore, the thrust and normal faults are formed in the two bending positions. In consequence, the focal mechanism solutions of the 2016 and 1986 earthquakes mainly present the compression and tensional behaviors, respectively, both of which also behave as slight strike-slip motion. All results indicate that seismic activity and tectonic deformation of the LLLFZ play important parts in the Qilian-Haiyuan tectonic zone, as well as in the NE Tibetan plateau. The complicated tectonic deformation of NE Tibetan plateau results from the collisions from three different directions between the north Eurasian plate, the east Pacific plate and the southwest Indian plate. The intensive tectonic movement leads to a series of left-lateral strike-slip faults in this region and the tectonic deformation direction rotates clockwise gradually to the east along the Qilian-Haiyuan tectonic zone. The Menyuan earthquake makes it very important to reevaluate the earthquake risk of this region.  相似文献   
10.
In this paper, a comprehensive study on simulating the shearing behavior of frictional materials is performed. A set of two explicit equations, describing the relationship among the shear stress ratio and the distortional strain and the volumetric strain, are formulated independently. The equations contain three stress parameters and three strain parameters and another parameter representing the nonuniformity of stress and strain during softening. All the parameters have clear physical significance and can be determined experimentally. It is demonstrated that the proposed equations have the capacity of simulating the complicated shearing behavior of many types of frictional materials including geomaterials. The proposed equations are used to simulate the stress–strain behavior for 27 frictional materials with 98 tests. These materials include soft and stiff clays in both reconstituted and structured states, silicon sands and calcareous sands, silts, compacted fill materials, volcanic soils, decomposed granite soils, cemented soils (both artificially and naturally cemented), partially saturated soils, ballast, rocks, reinforced soils, tire chips, sugar, wheat, and rapeseed. It has been demonstrated that the proposed explicit constitutive equations have the capacity to capture accurately the shearing behavior of frictional materials both qualitatively and quantitatively. A study on model parameters has been performed.  相似文献   
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