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1.
为了解水库水体加、卸载及渗透过程中,库底岩石介质有效应力变化对弹性波速的影响,以及弹性波速变化与孔隙压力、有效应力变化之间的定量关系,以四川省紫坪铺水库为例,在前期已建立库区地质构造与水文地质结构模型,并推导出岩石介质变形与流体渗流耦合数学模型的基础上,进一步建立了有效应力对岩石弹性波速影响的数学模型,利用有限元方法定量计算了库底岩石介质的孔隙压力、附加有效应力和弹性波速的变化。结果表明:在水库水体加、卸载及渗透过程中,地下岩石介质弹性波速增量值的变化并不明显,最大变幅仅为±0.013km/s,变化范围主要集中在库底5km以上的局部区域;弹性波速增量值与附加有效应力变化同步,与水库水位变化形态相似;不同观测点弹性波速变化量的大小与埋藏位置、深度及附加有效应力的变化幅度有关,同一观测点,弹性纵波波速变化幅度大于弹性横波波速。文中数值模拟的结果与一些学者通过环境噪声方法获得的紫坪铺水库附近区域相对波速变化的反演结果在变化形态上大体一致,但变化幅度略有差异。  相似文献   

2.
地应力对裂隙岩体渗透特性的影响   总被引:9,自引:0,他引:9  
提出了地应力场中岩体不连续面变形的本构关系,讨论了渗流与应力耦合条件下裂隙岩体渗透张量的计算方法,阐述了地应力对裂隙岩体渗透特性的影响.研究表明,地应力对岩体渗透特性的影响主要是通过改变不连续面的开度和不连续面网络的水力传导路径而产生的;裂隙岩体渗透性随岩体埋深的增加呈负指数减小,随侧压系数的增大呈双曲线减小.渗流场与应力场的耦合理论可望应用于水库诱发地震的研究中  相似文献   

3.
研制可合理模拟预测基坑降水过程中引起地面沉降的计算机程序,并提出最优化降水方案。基于三维全耦合数值模型,笔者开发了GWS软件。GWS软件是以比奥固结理论为基础,将土体的非线性特征及土的渗透性随应力状态的动态变化考虑进去,通过耦合地下水渗流场和土体应力场进行模拟预测基坑降水过程中渗流场及地面沉降的变化。以一个实际基坑降水工程为例,经GWS软件计算得出5口井联合抽水方案,后续工程证明此方案正确、可靠。以三维全耦合数值理论为基础的GWS软件,可以为基坑降水工程引起的地下水渗流场变化及地面沉降量提供可靠的预测。  相似文献   

4.
主要讨论了应力变化如何影响各向异性介质中波速度的问题。推导了一般各向异性介质在初始应力下的Christoffel方程,得到介质中3种波的相速度和初始应力的关系表达式;通过实验数据验证了单轴应力能够诱导各向异性,当施加单轴应力时,速度在沿应力的方向增加最大,在垂直应力的方向增加最小,实验结果与理论推导一致;用Christoffel方程的数值解模拟在3种对称情况下的弹性各向异性介质中初始应力对波速度的影响。数值结果表明:初始应力对各向异性介质中波传播速度的影响,随着各向异性强度的增加而增大,而且速度越慢,影响越大。  相似文献   

5.
地应力对裂隙岩体渗透特性的影响   总被引:6,自引:0,他引:6       下载免费PDF全文
周创兵  熊文林 《地震学报》1997,19(2):154-163
提出了地应力场中岩体不连续面变形的本构关系,讨论了渗流与应力耦合条件下裂隙岩体渗透张量的计算方法,阐述了地应力对裂隙岩体渗透特性的影响.研究表明,地应力对岩体渗透特性的影响主要是通过改变不连续面的开度和不连续面网络的水力传导路径而产生的;裂隙岩体渗透性随岩体埋深的增加呈负指数减小,随侧压系数的增大呈双曲线减小.渗流场与应力场的耦合理论可望应用于水库诱发地震的研究中.   相似文献   

6.
基于渗流-应力耦合分析的野鸡尾尾矿坝稳定性研究   总被引:1,自引:0,他引:1  
基于渗流场与应力场耦合机理,对柿竹园野鸡尾尾矿坝进行稳定性研究。研究渗流-应力的耦合效应,提出了渗流-应力耦合以及渗流体积力计算的实施方案;建立二维的有限元渗流-应力耦合计算模型,分析了考虑耦合效应时的尾矿坝渗流场、位移场、应力场;最终分析了不同耦合关系对于渗流量、位移场、等效渗透集中力以及应力场的影响。研究结果表明:当前水力条件下,尾矿坝稳定性良好;尾矿坝主要受水平渗透力作用,初期坝坝顶、坝脚以及坝底等处应力集中;尾矿坝的渗流-应力作用不容忽视,不同的耦合关系对于x方向位移、渗透力的预测影响巨大;考虑渗流-应力耦合关系得到的主应力、剪应力以及竖向位移,比不考虑耦合效应时大。  相似文献   

7.
应力加载作用引起地下水微温度场变化的研究综述   总被引:8,自引:0,他引:8  
在地震地下流体动态观测中,水温对地震活动的响应非常敏感,井水温度微动态观测越来越受到有关学者的关注。本文收集了相关资料,以引起水温变化的水动力学机制为基础,从应力加载作用下渗流场的变化、渗流场变化引起地下水温度变化以及裂隙介质热量运移三个方面分别阐述了前人研究成果,旨在理清“含水层受力变形→井-含水层系统内水流变化→井水温度变化”的理论模式,探讨应力加载作用引起地下水微温度场变化的理论基础和技术途径。对这一领域研究成果的综合分析将有助于我们深入地研究地震孕育过程中的前兆成因机理。  相似文献   

8.
不同尺度下岩层渗透性与地应力的关系及机理   总被引:3,自引:0,他引:3  
无论是地应力场宏观控制区域水文地质条件, 还是微观影响含水介质的渗透特性, 都有其深刻的内在发生机制, 生产实例和实验室试验表明: 在宏观地质大尺度下, 岩层以破碎、位移适应地应力场变化并为地下水的富集及运动提供场所, 地下水则以流动和压力传递来调整含水空间、扩张岩石裂隙实现流固宏观耦合, 尽管地质历史时期构造应力场经历多起叠加改造, 但形成区域主要构造骨架时的地应力场与渗流场具有相当的一致性, 主渗透方向与最大水平主应力方向一致; 在宏观地质中尺度下, 应力变化剧烈区、极低地应力区、应力集中区、剪应力集中区等往往与含水介质的主干裂隙相一致, 地应力均匀变化区则与基质的三重含水介质对应; 在微观地质小尺度下, 岩石空隙为三重孔隙介质, 包括基质孔隙、裂缝孔隙和管道状孔隙, 孔隙度和渗透率是有效应力的函数, 孔隙岩块的孔隙度和渗透率随有效应力的变化关系符合指数型数学模型, 裂缝型岩石宜用幂指数型数学模型描述, 毛细管型岩石则用二次抛物线数学模型描述较为恰当. 裂纹有效压缩系数、闭合压力计算揭示了裂缝性岩芯的渗透率和孔隙度损失较孔隙性岩芯损失大的机理, 裂纹有效压缩系数计算还说明同一介质渗透率变化总是大于孔隙度变化; 厚壁筒理论证实, 实验得出的毛细管型岩石孔隙度和渗透率损失与有效应力的二次抛物线关系正确.  相似文献   

9.
本文应用关于粘弹介质的弹性力学三维有限元方法,研究了定常速率加载边界条件下以断层闭锁模拟震源的“孕震”过程,並将所求得的层状介质应力—应变场与视电阻率的“前兆”变化相关联,以此给出该“孕震”过程中地表视电阻率“前兆”变化的时空分布,从而揭示水平层状介质视电阻率的变化与震源区应变场之间的关系。计算结果表明,粘弹性介质的存在,对孕震过程起着相当重要的作用。介质中应力集中程度与材料粘弹性有着密切的关系。另一方面,对于视电阻率前兆而言,其时空分布不仅与大范围的应力—应变场有关,而且还与台站探测范围内介质的力学、电性结构条件相关联。  相似文献   

10.
高煤级煤储层渗透性与应力耦合模型及控制机理   总被引:2,自引:0,他引:2       下载免费PDF全文
煤储层应力敏感性是影响煤层气井产能的地质因素,以鄂尔多斯盆地东南缘高煤级煤储层为对象,通过煤样的应力敏感性实验和现场测试,建立了高煤级煤储层渗透性与应力之间的相关关系和模型;探讨了渗透性变化的控制机理.研究结果表明, 煤储层渗透率随应力的增加按负指数函数规律降低.在应力小于5 MPa时,煤储层渗透率随应力增加快速下降,应力敏感性最强;应力在5~10 MPa时,渗透率随应力增加而较快下降,应力敏感性较强;而当应力大于10 MPa后,渗透率随应力的增加下降速度减缓,应力敏感性减弱.与沁水盆地南部高煤级煤样实验结果对比认为,鄂尔多斯盆地东南缘山西组2煤层应力敏感性要小于沁水盆地南部山西组3煤层的应力敏感性.煤储层渗透性是在应力作用下煤储层中裂隙产生压缩(压密)变形,裂隙开度急剧减小的结果.因此在煤层气开发过程中控制排采速度,尤其是排采早期降液速度,对于防止煤储层应力敏感性,提高采收率具有实际意义.  相似文献   

11.
To study the impact of the fractures on development in the ultra-low permeability sandstone reservoir of the Yangchang Formation of the Upper Triassic in the Ordos Basin,data on outcrops,cores,slices,well logging and experiments are utilized to analyze the cause of the formation of the fractures,their distribution rules and the control factors and discuss the seepage flow effect of the fractures. In the studied area developed chiefly high-angle tectonic fractures and horizontal bedding fractures,inter-granular fractures and grain boundary fractures as well. Grain boundary fractures and intragranular fractures serve as vital channels linking intragranular pores and intergranular solution pores in the reservoir matrix,thus providing a good connectivity between the pores in the ultra-low perme-ability sandstone reservoir. The formation of fractures and their distribution are influenced by such external and internal factors as the palaeo-tectonic stress field,the reservoir lithological character,the thickness of the rock layer and the anisotropy of a layer. The present-day stress field influences the preservative state of fractures and their seepage flow effect. Under the tec-tonic effect of both the Yanshan and Himalayan periods,in this region four sets of fractures are distributed,respectively assuming the NE-SW,NW-SE,nearly E-W and nearly S-N orientations,but,due to the effect of the rock anisotropy of the rock formation,in some part of it two groups of nearly orthogonal fractures are chiefly distributed. Under the effect of the present-day stress field,the fractures that assume the NE-SW direction have a good connectivity,big apertures,a high permeability and a minimum starting pressure,all of which are main advantages of the seepage fractures in this region. With the development of oilfields,the permeability of the fractures of dif-ferent directions will have a dynamic change.  相似文献   

12.
This paper intended to evaluate the behavior of saturated sand and sloped ground subjected to flow failure with seepage of pore water in the ground after earthquake and the resultant liquefaction. Triaxial compression tests of sand with constant deviator stress but changing of pore pressure and volume of the specimens were conducted in this study. It was revealed that the relation between the volume change and the amount of shear strain during deformation depended on the initial density of the sand but it did not much depend on shear stress and initial confining stress levels. Based on this test results and numerical analysis of the seepage of pore water in liquefied ground, a methodology was proposed to predict the deformation of inclined ground due to liquefaction.  相似文献   

13.
河水径向渗流会对河岸基坑稳定性及支护结构内力产生显著影响。以某深基坑工程为背景进行了三维流固耦合数值模拟分析,研究了渗流对深基坑土体及支护结构受力与变形的作用规律。研究结果表明:1初始水位时,渗流作用对土体水平应力与土体剪应力的影响较小,但水位上升后,坑底处土体水平应力明显增大,在坑壁拐角处应力集中现象突出,土体剪应力在开挖面以下的底脚处最大;2土体水平位移与竖向位移均在水位上升时呈递增趋势;3桩身弯矩与剪力在水位上升初期有较大增加,之后增长速度减小;4上层、下层锚杆的自由段和锚固段轴力在水位上升初期均有明显增加,但之后增加幅度很小;5安全系数在水位上升初期降低较多,之后以较小速度呈线性减小。  相似文献   

14.
The role of seepage in erodibility   总被引:1,自引:0,他引:1  
This paper describes a laboratory experimental study to examine the role of seepage in the soil‐water erosion process. The study utilized a laboratory flume, which was subjected to both seepage and rainfall in order to determine the exact character of the influence of seepage on erosion rates. The results from the experimental tests performed on sand and sandy clay till are reported. The experimental results show that seepage, by itself, has little effect on erosion rates. However, the erosion caused by rainfall is increased when seepage is present. The increased erosion was not caused by an increase in the total runoff from the seepage. It was found that seepage has an effect on the erodibility of the sand and sandy clay till. The results also show that the impact of seepage on the erodibility of the sand is greater than that of the sandy clay till. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

15.
Seepage driving effect on deformations of San Fernando dams   总被引:2,自引:0,他引:2  
In the process of flow deformation of an earth dam, the seepage force inside the dam plays a role as a driving force. The seepage force acts just like the gravitational force in terms of pushing soils away from their original locations after liquefaction is triggered. This paper draws attention to this seepage driving effect by presenting a set of fully coupled finite element analyses on the well-known San Fernando dams, with the objective of evaluating the impact of this seepage effect. The results indicate that while this effect is always there, its practical significance depends on a number of factors. In the case of the upper San Fernando dam, which experienced a significant, but restricted, downstream movement during the 1971 earthquake, the seepage driving effect was indeed significant. On the contrary, for the lower dam, which failed and slid into the upstream reservoir during the same earthquake, this seepage effect was relatively less pronounced. The detailed results of the analyses reveal the likely mechanisms of failure and deformation of the two dams and the likely cause behind the difference between their responses during the earthquake.  相似文献   

16.
Effect of seepage on initiation of cohesionless sediment transport   总被引:2,自引:1,他引:1  
This paper presents theoretical analyses and experimental results of seepage effects, especially downward seepage, on the initiation of cohesionless sediment particles. The theoretical analysis examines how the additional seepage force acts to modify the critical shear stress for sediment entrainment. Laboratory experiments were conducted using medium sand with diameter of 0.9 mm with downward seepage to quantitatively show suction effects on sediment entrainment. The critical shear stresses with different suction rates were calculated using the experimental results. The measured data together with published results provide an overall view on seepage effects on the initiation of cohesionless sediment transport. Depending on whether seepage is in the form of injection or suction, it will either increase or decrease the critical shear stress. The result reveals that the ratio of drag force at the threshold condition with seepage to that without seepage is dependent on the ratio of the hydraulic gradient with seepage to its value at the quick condition.  相似文献   

17.
The Reynolds stress and bed shear stress are important parameters in fluvial hydraulics. Steady-nonuniform flow in open channels with streamwise sloping beds having upward seepage through loose beds is theoretically analyzed to estimate the Reynolds stress and bed shear stress. Equations of the Reynolds stress and bed shear stress are developed, assuming a modified logarithmic velocity distribution law due to upward seepage, and using the Reynolds and continuity equations of two-dimensional flow in open channels.  相似文献   

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