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1.
孔隙压力参数是用来表述饱和岩土受力变形时所受力与超孔隙压力关系的参数,是地震地下水前兆机理研究中的重要问题。本文从室内试验、现场试验与野外观测的某些结果,分析了不同岩土、不同受力条件下孔隙压力参数的若干特征  相似文献   

2.
不同结构的岩石试件变形破坏与孔隙压力关系的实验研究   总被引:5,自引:0,他引:5  
车用太  纪辉 《地震》1995,(4):333-339
根据华北地区地震地下水位动态观测井的含水层岩性、埋深与承压水头大小等实际条件,对具有不同结构的四种岩性试件,在不同围压、初始孔隙压力、变形速率下,进行了变形破坏过程中孔隙压力变化特征的实验研究,探讨了岩性、结构、围压、初即孔隙压力,变形速率等因素对井水位映震特征的影响。  相似文献   

3.
在不同的围压和初始孔隙压力作用下,对孔隙岩石试件进行了不排液的三轴压缩试验,观测了轴向应变和孔隙压力随差应力的变化.试验结果表明:在低差应力下,孔隙压力随差应力的增加而增加.在中等和高差应力下孔隙压力随差应力的增加而降低.在高差应力下,孔隙压力也会随差应力的大幅度降低而升高.基于上述试验,假定地下水位的震前异常变化是地壳岩石中差应力变化的反映.根据这种假定解释了唐山大震前震中及外围地区地下水位异常变化的特征.   相似文献   

4.
假设圣安德烈斯断层(加州)中存在高孔隙压力流体,并用其来解释断层的主动性失稳,这或许直接影响着对地震发生机理的认识.但最近在位于加州东部圣安德烈斯断层上的钻探(SAFOD,San Andreas Fault Observatory at Depth)中,未发现存在高孔隙压力流体的相关证据[1].假如没有高孔隙压力普遍存在的证据,这将影响我们对圣安德烈斯断层或其他活断层上地震发生机理的认识.然而,笔者认为圣安德烈斯断层深钻现有的证据,尚不足以否定高孔隙压力流体存在的假说.要充分认识断层中孔隙压力的特征,还需要在圣安德烈斯断层的钻孔上进行长期监测.以上分析结果或许对解释其他活断层钻探项目结果有所帮助.  相似文献   

5.
本文通过不同温度与围压条件下的岩石三轴试验,研究了水、温度、有效围压对饱水的新沂砂岩变形破坏过程的影响及此过程中孔隙压力变化的特征。研究结果表明:(1)饱水砂岩的强度比风干岩石低20—30%,而排水条件下的这种差异更大;(2)岩石变形破坏过程中,孔隙压力的变化可划分出四个基本阶段:上升、缓升、下降与保持不变阶段,其中第二阶段相当于微破裂发生阶段,第三阶段相当于微破裂发展成为宏观破坏的阶段;(3)饱水砂岩的强度随环境温度的升高和有效围压的下降而减小,而且排水条件也促使强度降低,因此可以推断,井孔水位对震前异常反映灵敏的岩石力学与水动力学条件是:含水层的渗透性强、温度高、埋深浅、水头高。  相似文献   

6.
2005年10月巴基斯坦MW7.6地震对余震的触发研究   总被引:6,自引:0,他引:6  
万永革  沈正康  尚丹 《中国地震》2006,22(3):277-286
本文研究分析了2005年10月8日巴基斯坦主震产生的库仑破裂应力变化对余震的影响。计算时考虑了以下因素:(1)断层泥区域的孔隙流体压力和介质弹性常数与周围介质中的不同;(2)地震震源区的构造应力场方向;(3)将震源区构造应力和主震破裂产生的应力叠加计算得到余震破裂机制。该研究考虑了多种因素,计算结果与余震的分布比较吻合。结果表明2005年10月8日巴基斯坦主震对大部分余震有触发作用。  相似文献   

7.
依托江苏某省道软基处理工程对桩周土压力和超孔隙水压力进行现场测试。测试结果表明:粉喷桩施工过程中桩周土体同步产生较大超静孔隙水压力和土压力,随离桩距离增大而减小;施工完成后1小时内超孔隙水压力基本消散完毕;粉喷桩施工速度越快,土体中产生的超孔压越大;超孔压朝着施工方向累积,背着施工方向表现出遮蔽现象;跳打施工比顺序施工所产生的超孔压要小。通过改进施工速度、顺序、方向以及桩间距能有效地减小粉喷桩施工引起的超孔隙水压力。  相似文献   

8.
页岩气储层孔隙压力是页岩气藏保存条件综合评价过程中的一项重要指标.常规基于欠压实成因的地层孔隙压力预测方法并不适用于存在大量有机质生烃增压过程的页岩气储层.本文在页岩储层岩石物理建模的基础上,通过在模型中添加有机相来间接考虑有机质生烃作用对泥页岩正常压实趋势的影响,结合有效应力原理,形成了面向页岩气储层的孔隙压力预测技术.该技术在四川盆地南部WR区块页岩气藏实际预测结果表明,研究区五峰组-龙马溪组页岩气藏属于典型的超压气藏.在纵向上,五峰-龙马溪组底部的有机碳含量高的优质页岩层段表现为明显的超压特征,压力系数介于1.6~2.1之间.在平面分布上,深凹区压力系数大,西部深凹区保存条件比东部隆起区要好.压力系数预测结果与钻井实测吻合率大于97%,该方法有效提高了钻前地层压力预测精度.  相似文献   

9.
震后地形变与孔隙压力瞬态变化的相互关系   总被引:1,自引:0,他引:1  
大震改变地壳的应力,从而触发地震及其余震。一系列随时间变化的过程,包括余滑、孔隙流体的流动、下地壳和上地幔粘性的张驰、断层附近应力和孔隙压力调整以及地震的触发进程。然而,尽管进行过多次尝试,但通过直接场地的观测,很难将这些过程区分开来。这里我们采用一种星载雷达干涉图和冰岛南部地震带两个6.5级地震地热井水位变化过程结合的测量法。干涉图记录到的形变既不能用余滑也不能用粘-弹性张驰来解释,但它与地震发生后最初两个月孔隙弹性物质的回跳一致,这可以用地震引起水位变化的快速恢复(1—2个月)来证实,相反余震序列的持续时间达到3.5年,这表明余震的持续时间并不是由孔隙流体的流动控制的,但是,因为表面应变是由地壳浅部孔隙压力的变化控制的,因此,我们不能排除在余震发生深度存在较长时间的孔隙压力瞬态变化。余震的持续时间与随速度和状态变化的摩擦定律控制的地震活动变化速率模型是一致的。  相似文献   

10.
在地震发生条件的研究中,一些人对构造因素给予了较多的注意,一些人对物理环境则更重视,而地震发生处介质(如断层泥)的作用,例如断层带物质的矿物学和岩石学、断层带物质的结构和构造、断层带内孔隙水的多少及其化学成份以及断层泥在温度、压力、溶液化学影响下的作用等则研究较少。一般认为,作为一种软弱介质,断层泥的作用不过  相似文献   

11.
高温高压下红河断裂带断层泥力学性质的研究   总被引:2,自引:0,他引:2       下载免费PDF全文
断层泥在室温高压下的应力-应变曲线呈非线性、线性等阶段性变形,在高温高压下则呈非线性变形,两者均表现出渐进破坏。含水量、矿物成分和温压条件对变形特征和破坏强度有重要影响。曲线的初始弹性模量小于有效弹性模量。断层泥在温度T≥400℃和σ_3≥300MPa时发生岩化,据此岩化温压条件可估计出未岩化断层泥存在深度将不超过10—15km。由于断层泥具渐进破坏特征,故在高温高压条件下断层泥有利于断层活动呈现稳滑  相似文献   

12.
在恒定的正应力和孔隙压力、不同温度下测量了三种蛇纹石断层泥摩擦强度的速度依赖性。在室温下,纤蛇纹石具有很低的摩擦系数(0.2~0.25),而利蛇纹石和叶蛇纹石的摩擦系数较高,分别为0.39和0.45左右。在25~200℃范围内,温度变化对纤蛇纹石和叶蛇纹石强度的影响不明显,而利蛇纹石的摩擦系数随温度升高明显增加。室温下,三种蛇纹石的摩擦在较快的滑动速率下表现为微弱的速度弱化,而在较慢的滑动速度下为明显的速度强化,温度的提高有促使速度弱化向速度强化转变的趋势。研究表明,蛇纹石的存在有利于断层的无震蠕动,但这种影响可能主要限于浅部;尽管纤蛇纹石是最软弱的造岩矿物之一,但仍不足以解释圣安德烈斯断层的软弱性  相似文献   

13.
ZHOU Yong-sheng 《地震地质》2019,41(5):1266-1272
Paleo-seismic and fault activity are hard to distinguish in host rock areas compared with soft sedimentary segments of fault. However, fault frictional experiments could obtain the conditions of stable and unstable slide, as well as the microstructures of fault gouge, which offer some identification marks between stick-slip and creep of fault. We summarized geological and rock mechanical distinction evidence between stick-slip and creep in host rock segments of fault, and analyzed the physical mechanisms which controlled the behavior of stick-slip and creep. The chemical composition of fault gouge is most important to control stick-slip and creep. Gouge composed by weak minerals, such as clay mineral, has velocity weakening behavior, which causes stable slide of fault. Gouge with rock-forming minerals, such as calcite, quartz, feldspar, pyroxene, has stick-slip behavior under condition of focal depth. To the gouge with same chemical composition, the deformation mechanism controls the frictional slip. It is essential condition to stick slip for brittle fracture companied by dilatation, but creep is controlled by compaction and cataclasis as well as ductile shear with foliation and small fold. However, under fluid conditions, pressure solution which healed the fractures and caused strength recovery of fault, is the original reason of unstable slide, and also resulted in locking of fault with high pore pressure in core of fault zone. Contrast with that, rock-forming minerals altered to phyllosilicates in the gouges by fluid flow through degenerative reaction and hydrolysis reaction, which produced low friction fault and transformations to creep. The creep process progressively developed several wide shear zones including of R, Y, T, P shear plane that comprise gouge zones embedded into wide damage zones, which caused small earthquake distributed along wide fault zones with focal mechanism covered by normal fault, strike-slip fault and reverse fault. However, the stick-slip produced mirror-like slide surfaces with very narrow gouges along R shear plane and Y shear plane, which caused small earthquake distributed along narrow fault zones with single kind of focal mechanism.  相似文献   

14.
In this paper, we report friction experiments performed on natural fault gouge samples embedded in granitic rock from drilled core by a project entitled "the Longmenshan Fault Shallow Drilling(LMFD)". Compared with other natural fault gouge, this yellow-greenish gouge(YGG)is dominantly chlorite-rich. The maximum content of chlorite reaches 47%in the YGG. To understand the frictional properties of the YGG sample, experiments were performed at constant confining pressure of 130MPa, with constant pore pressure of 50MPa and at different temperatures from 25℃ to 150℃. The experiments aim to address the frictional behavior of the YGG under shallow, upper crustal pressure, and temperature conditions. Compared with previous studies of natural gouge, our results show that the YGG is stronger and shows a steady state friction coefficient of 0.47~0.51. Comparison with previous studies of natural gouge with similar content of clay minerals indicates a sequence of strengths of different clay minerals:chlorite > illite > smectite. At temperatures up to 150℃ hence depths up to~8km in the Longmenshan region, the YGG shows stable velocity-strengthening behavior at shallow crustal conditions. Combined with the fact of strong direct velocity effect, i.e., (a-b)/a>0.5, faults cutting the present clastic lithology up to~8km depth in the Longmenshan fault zone(LFZ)are likely to offer stable sliding resistance, damping co-seismic rupture propagating from below at not-too-high slip rates. However, as the fault gouge generally has low permeability, co-seismic weakening through thermal pressurization may occur at high slip rates(>0.05m/s), leading to additional hazards.  相似文献   

15.
ZHANG Shu  HE Chang-rong 《地震地质》2019,41(4):1012-1026
To understand the mechanism of lower-crust earthquake and slow slips, it is necessary to study the frictional properties of mafic rocks and their major rock-forming minerals. Previous studies have performed a series of experimental researches on gabbro, basalt and their major constituents. According to the results of previous experiments, frictional sliding of plagioclase under hydrothermal conditions(100~600℃)shows a property of velocity weakening, and the experimental results show that both the direct rate effect parameter(a)and the healing effect parameter(b)increase with temperature, a typical feature for thermally-activated processes. Velocity weakening means property of a shear band that has a stronger friction healing effect than the direct rate effect in the rate and state friction constitutive framework, and the healing effect(b value)in constitutive relation mainly reflects the increase in contact area with time under hydrothermal conditions, with some minor effect of structural changes. Since the microphysical mechanism of feldspar minerals at the contacts is mainly brittle cataclasis for temperatures below 600℃, the significant frictional healing effect in this case can only be explained by the mechanism of pressure solution. In order to determine if the dissolution process of plagioclase actually occurs on the laboratory time scale, we conducted hydrostatic experiments on plagioclase powder samples under hydrothermal conditions whereby frequent contact switch between particles seen in frictional sliding experiments can be avoided, making the observation on the dissolution sites possible. Experimental temperatures were 400℃ and 500℃, with confining pressure of 90~150MPa, pore pressure of 30MPa, with 2mm initial thickness of fault gouge. The mechanical data show that a creep process occurred in the plagioclase fault gouge in the experimental temperature and pressure range; and the microstructures of the experiment show that precipitation of new grains is prevalent as the product of pressure solution process between plagioclase particles. At the same time, it is observed that the contact points have an appearance similar to fused, fuzzy structure as signatures of dissolution. The results of our experiments provide a definite experimental evidence for the healing mechanism in friction of plagioclase and for the theoretical relation between unstable slip and the pressure solution process. The results of the experiments are summarized as follows: (1)Drainage rate of pore water in plagioclase gouge was high in the first few hours of experiment, but gradually decreases over time for both temperature and pressure series of experiments slowing down to a steady state. This feature indicates that there is a creep process that evolves inside the plagioclase gouge. In the temperature-series experiments, the drainage rate of the pore water in the plagioclase gouge at 400℃ is relatively low than the cases for higher temperatures. Thus, the applied temperature is positively correlated with the creep of plagioclase gouge. (2)Scanning electron microscopy(SEM)observations of the experimentally deformed samples were performed on thin sections cut along the sample axis. Firstly, from the images of microstructure, it was found that the degree of particle fracture became more significant at a higher effective pressure, with smaller pore volume between particles. In the temperature-series experiments it was found that the degree of compaction of plagioclase gouge increased with increasing temperature. Precipitation of plagioclase grains in layered structures was generally observed in high-magnification images, indicating the presence of pressure solution processes. Contact points were also found to be in a state of ambiguity that seems to be a fused morphology, but the details of the structure remain to be determined by further observations. The above results indicate that the pressure solution process of plagioclase particles can occur on a typical laboratory time scale, and the results of this study provide robust experimental evidences for the theory that links between pressure solution and the mechanism of frictional healing and unstable slips for plagioclase.  相似文献   

16.
The frictional properties of a crushed granite gouge and of gouges rich in montmorillonite, illite, and serpentine minerals have been investigated at temperatures as high as 600°C, confining pressures as high as 2.5 kbar, a pore pressure of 30 bar, and sliding velocities of 4.8 and 4.8×10–2 m/sec. The gouges showed nearly identical strength behaviors at the two sliding velocities; all four gouges, however, showed a greater tendency to stick-slip movement and somewhat higher stress drops in the experiments at 4.8×10–2 m/sec. Varying the sliding velocity also had an effect on the mineral assemblages and deformation textures developed in the heated gouges. The principal mineralogical difference was that at 400°C and 1 kbar confining pressure a serpentine breakdown reaction occurred in the experiments at 4.8×10–2 m/sec but not in those at 4.8 m/sec. The textures developed in the gouge layers were in part functions of the gouge type and the temperature, but changes in the sliding velocity affected, among other features, the degree of mineral deformation and the orientation of some fractures.  相似文献   

17.
本文对海原断裂的断层泥的各类特征进行了系统的研究,分析了断层泥带内部的小型断裂类型,探讨了断层泥组分的有机地球化学意义。通过对比,确立了石英碎屑表面机械作用成因的电子显微构造特征组合为活断层的判别标志。本文将石英碎屑表面电子显微溶蚀构造分为五类,据此分析了断层活动时期和状态。研究中还发现了断层泥带内部电子显微结构类型,进而分析了断层活动与微结构、粒度分布间的关系。最后还讨论了断层泥形成演化过程以及断层泥对全新世以来断层滑动性能影响及其与地震活动的关系  相似文献   

18.
5.12汶川地震同震地表破裂带在虹口八角-深溪沟一带主要出露于三叠系须家河组的炭质泥岩中,同震断层泥在颜色、结构上与老断层泥和围岩类似。通过开挖探槽,系统采样,采用粉晶X射线衍射定量分析方法,研究了同震地表破裂带的围岩、断层角砾岩、老断层泥和新断层泥的矿物成分特征。同震断层泥的主要成分为石英和黏土矿物,含微量长石和白云石;断层泥的显著特征为高黏土矿物含量,从同震断层泥、老断层泥、角砾岩到围岩黏土矿物含量依次降低,黏土矿物以伊利石和伊蒙混层为主,含微量绿泥石和高岭石,矿物组成明显比地表破裂带北段同震断层泥简单。不同颜色的同震断层泥成分略有不同,黑色断层泥中伊利石含量明显高于白色断层泥;老断层泥中含有方解石和白云石,而同震断层泥不含方解石,只含微量白云石。同震断层泥中伊蒙混层高含量表明,在本次地震错动中有富含K的流体参与。  相似文献   

19.
本文对龙门山断裂带金河磷矿浅钻岩芯中的三种断层泥开展了低速到高速摩擦滑动的实验研究,并对实验变形样品开展了BET比表面积研究.摩擦实验在干燥和孔隙水压条件下开展,速率范围涵盖20 μm·s-1~1.4 m·s-1.实验结果显示,三种断层泥在干燥条件下的摩擦性质差别不大,但在孔隙水压条件下,三者的中低速摩擦强度与层状硅酸盐矿物的种类而非总含量紧密相关,蒙脱石和伊利石相比绿泥石更能有效地弱化断层.三种断层泥在孔隙水压条件下存在中低速率域的速度强化,暗示着对断层的加速滑动存在一定的阻碍作用.孔隙水压下,黄绿色和灰绿色断层泥的初始动态弱化非常迅速并伴随断层泥层的瞬时扩容,凹凸体急剧加热导致的局部热压作用可能是造成这种力学行为的物理机制.在经历高速滑动之后,三种断层泥在干、湿条件下的BET比表面积都显著降低,暗示着可能发生了颗粒烧结.中低速域内,孔隙水的存在使得断层泥呈现分散式的剪切变形,BET比表面积的增加因此比干燥条件下更加明显.对表面能的估算表明,颗粒磨碎所消耗的能量至多不超过摩擦力做功的8%,暗示着断层作用中颗粒磨碎所占的能量比例较低.  相似文献   

20.
云南小湾断层泥中伊利石矿物特征及其意义   总被引:1,自引:0,他引:1       下载免费PDF全文
根据扫描电镜观察、X射线衍射和化学分析,研究断层泥中伊利石矿物的特征。研究表明,小湾断层泥中伊利石属I+ISII结构,膨胀层约占15%,IM多型,层间阳离子2Ca+Na+K≈1,伊利石的b。值等于8.993A,这些参数反映了小湾断层活动的机制为低压、低温(<200℃)。  相似文献   

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