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1.
为研究不同围压条件下孔隙介质的渗透性能,利用新研制的高压渗流仪,对大尺寸低渗透性软弱岩进行了系统的试验测试。试验渗透压差波动幅度仅为0.02MPa,渗出端溶液体积变化量测试精度可达0.03mL。通过溶液体积变化与时间的线性关系,稳定渗流量大小可以精确测定。以稳定压差、流量法(即稳压法),试验验证了岩石的渗透系数随着围压的增加而下降,当围压降低时,岩石渗透系数回升,但回升路径低于原始路径。根据轴向应变的变化情况,提出了室内试验应力-渗流耦合过程中渗透性的变化主要是侧向压力使孔隙、喉道产生压缩变形所致。  相似文献   

2.
岩体启动压力梯度的大小是石油开采,工程防渗处理等方面需要考虑的影响因素。非线性渗流现象已被广泛所认同,低渗透性岩渗流存在启动压力梯度,它基本代表了流体产生渗流时的压力梯度大小。试验对试样进水端水压进行长期稳定控制,出水端采用精确测定流出水体积变化量的方法进行流量测定; 当渗出端水体积的变化量与时间呈直线关系时,即认为该时段渗透特征符合达西定律。通过对具有不同渗透性的软弱岩系统的试验测试,根据实测渗透系数与压力梯度的正相关关系,提出了拟启动压力梯度推算的"三次平均法",即:首先统一调整实测渗透系数值,然后确定绝对渗透系数值,再根据该值确定V0值, 3次取平均推算拟启动压力梯度的方法。分析表明:拟启动压力梯度随围压升高而增大,随岩石的绝对渗透系数降低而增大; 在渗透压差增大过程测得的拟启动压力梯度大于降低过程的拟启动压力梯度,这些都与理论分析结果相吻合。实例说明拟启动压力梯度推算"三次平均法"较为合理,易于推广使用。这为通过室内试验确定工程岩体启动渗流压力梯度的大小,提出了一种新的思路。  相似文献   

3.
通过室内应力控制的三轴试验研究卸荷条件下土体的应力-应变关系和孔隙水压力变化特征,得到变形模量的确定方法。研究表明:在初始偏压应力固结条件下,无论是轴向压力保持不变而侧向压力不断卸荷,还是轴向压力和侧向压力同时卸荷,其应力-应变关系均表现为较好的双曲线函数关系。而且,侧向固结压力愈大,强度值愈大。在卸荷过程中,随剪切应力的增大和剪切应变的发展,土样呈现剪胀趋势并在后期产生较大的负孔隙水压力。不排水条件下由于负孔隙水压力的存在,土样的表观强度略有增大。  相似文献   

4.
岩体裂隙三轴应力渗透规律的试验研究   总被引:1,自引:0,他引:1  
郑纲 《力学学报》2004,12(1):30-33
利用三轴应力渗透仪分别对煤矿底板的硬岩和软岩进行三轴应力渗透试验 ,观测渗水量、围压、轴压及水压的变化。  相似文献   

5.
本文以实际岩体工程为背景,利用WDT-1500 仪器开展了轴向、侧向同时卸荷条件下砂岩的三轴试验. 结果表明:轴、侧向同卸荷这种卸荷路径下,砂岩试样破坏时并没有出现应力峰值,为了定义试样的破坏强度,将最大与最小主应力差随最小主应力的变化关系曲线上应力跌落的拐点处的应力值定义为破坏强度. 砂岩变形初始段发生应力跌落和轴向应变回弹,破坏前无明显的弹性和屈服阶段;试验的过程中,砂岩的侧向变形明显大于轴向变形,其体积应变一直处于膨胀状态;相对于砂岩的常规三轴试验结果,试样破坏时的强度在轴向、侧向同时卸荷条件下有所降低. 初始轴压和初始围压对试样的力学特征有十分显著的影响,但围压的卸荷速率却并不显著. 砂岩的破坏特征主要是以张-拉为主的混合张剪的破坏.   相似文献   

6.
煤系地层岩石渗透特性试验研究   总被引:2,自引:0,他引:2  
基于MTS815.02型岩石伺服渗透试验系统,应用两种实验方法测定了岩石的渗透特性,给出煤系地层中多种岩石全应力-应变过程中渗透率变化范围,对几种岩石的渗透特征进行了分析和讨论。研究表明:1)煤系地层岩石全应力-应变过程的渗透率通常在10-9到10-4Darcy量级之间;2)不同岩石在应力峰值前后其渗透性呈现不同的变化趋势;3)岩石渗透率的离散性很大,即使在相同的试验条件下,渗透率变异系数大多在0.65以上,其离散性按粗砂岩、泥岩、砂质页岩、中砂岩、细砂岩、砾岩、石灰岩顺序逐渐增大;4)在MTS815.02系统上,当所测岩样渗透率小于10-4Darcy量级时,应采用瞬态法,当渗透率量级大于10-4Darcy时,可改用稳态法测定。岩石变形过程中应力场和渗流场的耦合作用十分复杂,渗透率受孔隙压力、围压、试件尺寸、饱和程度等因素影响。  相似文献   

7.
卸荷速率对岩石强度影响的试验研究   总被引:1,自引:0,他引:1  
通过MTS 815.02型电液伺服岩石力学试验系统,研究砂岩试样在常规三轴条件下卸 围压过程中的应力-应变关系,探讨不同卸荷速率对试样强度的影响情况,分析得 出卸荷速率与试样强度的变化规律;观察、测量破坏试样的破裂特征及角度,初步探究试 样在卸荷作用下的破坏机理;研究成果可为工程实践的岩体卸荷问题提供一定的理 论参考.  相似文献   

8.
脆性岩石破裂过程损伤与渗流耦合数值模型研究   总被引:22,自引:0,他引:22  
大量的实验结果表明,脆性岩石的渗透性不是一个常量,而是应力和应力诱发损伤破裂的函数.建立了一个描述非均匀岩石渗流-应力-损伤耦合数学模型(FSD Model),开发出岩石破裂过程渗流-应力-损伤耦合分析计算系统(F-RFPA^2D).在该系统中,单元的力学、水力学性质根据统计分布而变化,以体现材料的随机不均质性,材料在开裂破坏过程中流体压力传递通过单元渗流-损伤耦合迭代来实现.该系统能够对岩石试件在孔隙水压力和双轴荷载作用下裂纹的萌生、扩展过程中渗透率演化规律及其渗流-应力耦合机制进行模拟分析.最后,给出两个算例:算例1模拟载荷作用下岩石应力应变-渗透率全过程.模拟结果表明,非均匀性对岩石的应力峰值强度、峰值前后其渗透性演化规律及其破裂机制影响十分明显,模拟结果和实验结果较为一致;算例2模拟孔隙水压力作用下岩石拉伸断裂过程,通过和物理实验对比验证,验证了模型计算结果的可靠性。  相似文献   

9.
以某水电站工程项目为依托,利用自行研制的试验仪器对大量的蚀变岩做了单轴压缩流变试验。通过对试验数据的处理和分析,得到了该种岩石的流变,并对蚀变岩的蠕变特性进行了分析总结,为工程设计提供了试验依据。  相似文献   

10.
研究混凝土纤维掺量、掺合料种类和所受压应力大小等三种因素对混凝土抗氯离子渗透性能的作用,对于氯离子侵蚀环境中的混凝土结构耐久性设计有非常重要的意义。本文通过设计正交试验,将56d龄期混凝土试块置于能够给混凝土施加持续压力作用的特制混凝土氯离子渗透性能测试装置下进行氯离子电通量试验。试验结果表明:聚丙烯纤维的掺入可以提高混凝土抗氯离子渗透性能,且最佳纤维掺量为0.1%;掺合料对混凝土抗氯离子渗透性作用效应由强到弱依次为:锂渣锂渣粉煤灰复掺粉煤灰普通混凝土硅灰,锂渣的掺入能够明显改善混凝土抗氯离子渗透性能;施加压应力初期混凝土抗氯离子渗透性能得以增强,但压应力过大反而降低了混凝土抗氯离子渗透性能,有益于混凝土抗氯离子渗透性的压应力大小不能超过混凝土极限强度的50%。通过对正交试验结果进行极差分析发现:掺合料种类为影响混凝土渗透性的最大因素,纤维掺量与压应力大小对混凝土渗透性的作用效应相当。  相似文献   

11.
为了研究煤样在不同围压下的声发射及分形特征,利用RMT-150C 型岩石力学伺服试验系统和CDAE-1 型声发射检测仪对煤样试样在不同围压(5MPa,10MPa,15MPa) 进行了实验研究. 对煤样试样的声发射计数和累计计数以及声发射序列的分形特征进行了对比研究. 研究结果表明:不同围压下煤样的声发射特性具有一定的差异性,围压越高前兆信息越明显. 不同围压下煤样都具有分形特征,随着围压的增大,分形特征有所增强. 煤样在失稳破坏过程中声发射序列的分形维值都会出现一个波动-上升-突降的过程,提出可以作为煤样体失稳破坏的前兆信息.  相似文献   

12.
黄土路堑边坡变形破坏机理的三轴试验研究   总被引:2,自引:0,他引:2  
黄强兵  刘悦  彭建兵 《力学学报》2007,15(6):806-811
通过原状黄土的减压三轴压缩试验,研究了黄土边坡不同深度不同含水量土体的应力-应变关系,并与原状黄土的常规三轴试验结果进行了比较,发现减压三轴试验能合理地模拟和解释开挖卸荷作用下黄土边坡土体的变形与破坏过程。试验结果表明:坡脚开挖卸荷时,黄土边坡中浅层非饱和黄土易出现应变软化或塑性流动,强度较低,易产生较大变形,而深层饱和黄土仅在高围压下发生应变硬化,强度增加,在中低围压时均发生应变软化现象。分析认为黄土边坡特殊的工程地质条件,使得黄土边坡的特定部位在开挖卸荷作用下常形成了不利于土体稳定的含水量和围压组合,导致坡体特定部位的土体变形破坏,进而诱发边坡的变形破坏;开挖卸荷作用下黄土边坡变形破坏的力学机制应为蠕滑-压致拉裂或"牵引式滑坡"。  相似文献   

13.
A series of triaxial compression experiments were preformed for the coarse marble samples under different loading paths by the rock mechanics servo-controlled testing system. Based on the experimental results of complete stress-strain curves, the influence of loading path on the strength and deformation failure behavior of coarse marble is made a detailed analysis. Three loading paths (Paths I–III) are put forward to confirm the strength parameters (cohesion and internal friction angle) of coarse marble in accordance with linear Mohr-Coulomb criterion. Compared among the strength parameters, two loading paths (i.e. Path II by stepping up the confining pressure and Path III by reducing the confining pressure after peak strength) are suggested to confirm the triaxial strengths of rock under different confining pressures by only one sample, which is very applicable for a kind of rock that has obvious plastic and ductile deformation behavior (e.g. marble, chalk, mudstone, etc.). In order to investigate re-fracture mechanical behavior of rock material, three loading paths (Paths IV–VI) are also put forward for flawed coarse marble. The peak strength and deformation failure mode of flawed coarse marble are found depending on the loading paths (Paths IV–VI). Under lower confining pressures, the peak strength and Young’s modulus of damage sample (compressed until post-peak stress under higher confining pressure) are all lower compared with that of flawed sample; moreover mechanical parameter of damage sample is lower for the larger compressed post-peak plastic deformation of coarse marble. However under higher confining pressures (e.g. σ 3?=?30 MPa), the axial supporting capacity and elastic modulus of damage coarse marble (compressed until post-peak stress under lower confining pressure) is not related to the loading path, while the deformation modulus and peak strain of damage sample depend on the difference of initial confining pressure and post-peak plastic deformation. The friction among crystal grains determines the strength behavior of flawed coarse marble under various loading paths. In the end, the effect of loading path on failure mode of intact and flawed coarse marble is also investigated. The present research provides increased understanding of the fundamental nature of rock failure under different loading paths.  相似文献   

14.
A series of triaxial compression experiments were preformed for the coarse marble samples under different loading paths by the rock mechanics servo-controlled testing system. Based on the experimental results of complete stress-strain curves, the influence of loading path on the strength and deformation failure behavior of coarse marble is made a detailed analysis. Three loading paths (Paths I–III) are put forward to confirm the strength parameters (cohesion and internal friction angle) of coarse marble in accordance with linear Mohr-Coulomb criterion. Compared among the strength parameters, two loading paths (i.e. Path II by stepping up the confining pressure and Path III by reducing the confining pressure after peak strength) are suggested to confirm the triaxial strengths of rock under different confining pressures by only one sample, which is very applicable for a kind of rock that has obvious plastic and ductile deformation behavior (e.g. marble, chalk, mudstone, etc.). In order to investigate re-fracture mechanical behavior of rock material, three loading paths (Paths IV–VI) are also put forward for flawed coarse marble. The peak strength and deformation failure mode of flawed coarse marble are found depending on the loading paths (Paths IV–VI). Under lower confining pressures, the peak strength and Young’s modulus of damage sample (compressed until post-peak stress under higher confining pressure) are all lower compared with that of flawed sample; moreover mechanical parameter of damage sample is lower for the larger compressed post-peak plastic deformation of coarse marble. However under higher confining pressures (e.g. σ 3 = 30 MPa), the axial supporting capacity and elastic modulus of damage coarse marble (compressed until post-peak stress under lower confining pressure) is not related to the loading path, while the deformation modulus and peak strain of damage sample depend on the difference of initial confining pressure and post-peak plastic deformation. The friction among crystal grains determines the strength behavior of flawed coarse marble under various loading paths. In the end, the effect of loading path on failure mode of intact and flawed coarse marble is also investigated. The present research provides increased understanding of the fundamental nature of rock failure under different loading paths.  相似文献   

15.
Fractures in natural rocks have an important effect on the strength and failure behavior of rock mass, which are often evaluated in rock engineering practice. The theoretical evaluation of mechanical behavior of fractured rock mass has no satisfactory answer due to the role of confining pressure and crack geometry. Therefore, in this paper, conventional triaxial compression experiments were carried out to study the strength and failure behavior of marble samples with two pre-existing closed cracks in non-overlapping geometry. Based on the experimental results of a number of triaxial compression tests, the effect of crack coalescence on the axial supporting capacity and deformation property were investigated with different confining pressures. The results show that intact samples and flawed samples (marble with pre-existing cracks) have different deformation properties after peak stress, which change from brittleness to plasticity and ductility with the increase of confining pressure. The peak strength and failure mode are found depending not only on the geometry of flaw, but also on the confining pressure. The strength of flawed samples shows distinct non-linear behavior, which is in a better agreement with non-linear Hoek–Brown criterion than linear Mohr–Coulomb criterion. For a kind of rock that has been evaluated as a Hoek–Brown material, a new evaluation criterion is put forward by adopting optimal approximation polynomial theory, which can be used to confirm more precisely the strength parameters (cohesion and internal friction angle) of flawed samples. For intact samples, the marble leads to typical shear failure mode with a single fracture surface under different confining pressures, while for flawed samples, under uniaxial compression and a lower confining pressure (σ3 = 10 MPa), tests for coarse and medium marble (the coarse and medium refer to the grain size) exhibit three basic failure modes, i.e., tensile mode, shear mode, and mixed mode (tensile and shear). Shear mode is associated with lower strength behavior. However, under higher confining pressures (σ3 = 30 MPa), for coarse marble, the axial supporting capacity is not related to the geometry of flaw. The friction among crystal grains determines the strength behavior of coarse marble. For medium marble, the failure mode and deformation behavior are dependent on the crack coalescence in the sample. The present research provides increased understanding of the fundamental nature of rock failure under conventional triaxial compression.  相似文献   

16.
用取自山东巨野矿区埋深近 6 0 0m的深部砂土样,在三轴试验机上进行围压为 12MPa的三轴卸载试验,同时用CT装置探测试样在试验全过程中内部结构变化,并对纪录的CT图片进行了计算机图像分析处理,分析了深部砂土在高压卸载条件下变形和破坏结构性变化本质特点。  相似文献   

17.
Investigating the dilatancy, acoustic emission and failure characteristics of fissured rock are significant to ensure their geotechnical stability. In this paper, the uniaxial and triaxial compression experiments with AE monitoring under different loading rates were carried out on fissured rock specimens with the same geometrical distribution of two pre-existing flaws. The dilatancy and AE activity of these specimens were discussed, and the effects of the confining pressure and loading rate on the mechanical parameters and failure characteristics were analyzed. The results show that the exponential strength criterion is more suitable than the Mohr–Coulomb strength criterion to characterize the strength characteristics of fissured rock. The crack evolution and failure characteristics of fissured rock specimens are more complicated than those of intact rock specimens. The failure characteristics of the fissured rock follow the tensile shear coalescence model, crack branching occurs with increasing the loading rate, and the multi-section coalescence model is verified with increasing the confining pressure. The phenomena of stress drop and yield platform usually occur after the dilatancy onset, the specimen does not fail instantaneously, and the propagation and coalescence of cracks cause a sharp increase in the AE signals, circumferential strain, and volumetric strain.  相似文献   

18.
煤在瓦斯一维渗流作用下的初次破坏   总被引:10,自引:0,他引:10  
作者观察了煤在瓦斯一维渗流作用下的初次破坏,发现破坏煤体呈球冠状;临界破坏瓦斯超压取决于卸载条件,煤型的强度、半径和长度,以及煤型所受的侧压,但与瓦斯吸附特性无关。对实验例进行了数值分析,结果表明煤体的破坏属于拉伸破坏;卸载速率的增高,侧向围压的减小与煤型几何半径的增大将使得煤体在瓦斯渗流作用下更易于破坏。  相似文献   

19.
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