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1.
桂俊川  马天寿  陈平 《地球物理学报》1954,63(11):4188-4204
在龙马溪页岩微观物性特征分析的基础上,综合利用测井解释、微观测试分析资料,建立了一种适用于龙马溪页岩的横观各向同性岩石物理模型,该模型建模过程:将各向异性SCA和DEM模型联合模拟得到的黏土和干酪根混合物作为背景介质;采用SCA模型对脆性矿物混合物进行模拟,利用各向异性DEM将脆性矿物混合物添加到背景介质;进一步将空孔隙添加到页岩基质,并利用Brown-Korringa模型进行各向异性条件下的流体替换,从而得到横观各向同性页岩岩石物理模型.通过对四川盆地A井龙马溪页岩进行岩石物理建模分析,计算了孔隙纵横比、纵横波速、各向异性系数和弹性参数,检验了模型的准确性.研究结果表明:矿物颗粒和孔隙纵横比是影响模型精度的关键参数,黏土和干酪根颗粒纵横比为0.05,图像识别获得的脆性矿物颗粒纵横比主要分布于0.45~1.0(集中分布于0.5~0.85),横波波速反演获得的孔隙纵横比主要分布于0.1~0.3(平均值约为0.22);模型预测和实测纵波波速之间误差为-2.40%~2.21%(平均绝对误差仅1.20%),预测和实测横波波速之间误差为-1.93%~1.42%(平均绝对误差仅0.64%),证实了本文模型的准确性和精度.本文模型能够准确计算页岩5个独立的刚度系数,为页岩弹性参数、声波波速、各向异性和脆性分析提供了有效手段,也为后续地球物理和工程地质参数分析提供了重要依据.  相似文献   

2.
泥页岩储层储集空间以纳米/微米级的微孔隙和微裂缝为主,结构复杂,加之干酪根和黏土矿物含量较高,并含有一定量的黄铁矿等导电矿物,造成储层导电机理异于常规储层,岩电实验I-S_w曲线呈现非线性特征,阿尔奇公式等传统评价模型适用性较差.针对上述问题,根据实际岩心实验资料,结合随机算法建立三维逾渗模型并通过数值模拟和超松弛迭代法进行求解,分析泥页岩储层非阿尔奇性产生原因以及泥页岩储层电性的影响因素及规律.模拟结果显示,岩石孔隙拓扑结构和形状尺寸、矿物组成以及地层水电阻率等因素均对泥页岩储层电阻率产生不同程度的影响,通过改变上述因素的设定值,可以建立储层电阻率与各因素的单相关关系,并据此建立修正模型,实现储层含水饱和度的计算.该模型在四川某页岩气产区取得了较好的效果,具有良好的应用前景,为利用逾渗模型模拟方法解决油田勘探开发中的复杂问题提供了新思路.  相似文献   

3.
页岩气储层中含有大量有机碳(TOC),其丰度与成熟度对页岩力学特性有重要影响.建立包含TOC的精细数值模型,将有助于探索页岩微结构与矿物组分含量对等效弹性模量的作用程度,是“甜点区”预测的重要理论基础.本文提出了一种离散数值建模方法,基于高精度成像技术,采用晶格弹簧-随机孔隙耦合模型(LSM-RVM)模拟包含多种矿物组分及不同成熟度干酪根的数字岩心,分析TOC成熟度及含量对弹性参数的影响.在该模型中,参数设置(数值阻尼与加载应变速率)至关重要,选取不当会对计算精度造成一定影响.研究结果表明,LSM-RVM能够生成符合TOC及多种矿物实际分布特征的数值模型,是一种精细数值建模方法.  相似文献   

4.
三维数字岩心可在孔隙尺度上对岩石的微观结构进行精细表征,以数字岩心为载体的岩石微观结构分析与岩石物理属性模拟研究已成为岩石物理分析的重要发展方向之一.本文从数字岩心建模、数字岩心图像分析及岩石物理属性模拟三个方面对数字岩心技术进行了介绍.将数字岩心技术在岩石物理领域的应用分为两大类:基于三维数字图像的直接分析和基于三维数字岩心的岩石物理属性数值模拟.通过三维图像分析可获得孔隙结构、矿物成分、粒度分布等信息;通过岩石物理属性模拟可以研究储层岩石电性、弹性、渗流和核磁共振特征.多种手段相结合建立多尺度、多组分数字岩心,突破分辨率与样品尺度的矛盾限制是数字岩心技术未来的发展趋势.数字岩心技术已发展成为岩石物理实验的重要组成部分,如何将孔隙尺度得到的岩石物理参数升尺度到数字井筒、数字油藏中是数字岩心技术发展亟需解决的难题.  相似文献   

5.
弹性参数在甜点区预测和页岩气的开发过程中扮演着重要的角色,因此研究等效弹性参数随页岩气储层属性的变化是一项很有意义的工作。研究中我们用X射线CT扫描技术获得了较为精确的页岩样品微观结构图像。从这些图像中,我们可以获得孔隙度和矿物的详细情况,据此,我们构建了三维数字岩心,并应用有限元法对弹性参数进行了数值模拟,其间深入考察了子样选取、网格划分、求解器类型以及边界条件等,该方法易于区别不同的矿物及其百分含量。本文重点研究孔隙度和干酪根含量对弹性参数的影响,计算结果表明,孔隙度和干酪根含量对弹性性质有较大的影响,当孔隙度和干酪根含量增加时,弹性模量降低,且当孔隙度小于0.75%左右、干酪根含量大于3%左右时弹性参数减小速率较缓。因为孔隙度仅仅为4.5%,孔隙中填充油或气对弹性参数的影响甚微。不同岩心样本具有不同的孔隙度和干酪根含量,传统岩石物理实验不仅昂贵而且费时,而数值模拟是基于数字岩心来计算弹性参数,更加经济、方便。本研究证实了将页岩样品的微观结构图像与弹性模量的计算相结合来预测页岩弹性参数的可行性。  相似文献   

6.
页岩储层由于其复杂的构造和孔隙特征,目前一般的岩石物理模型无法对其进行精确描述.微纳米孔隙作为页岩气主要的储集空间,对页岩整体弹性参数有较大影响.干酪根作为页岩中重要的有机质矿物,在页岩中的赋存状态随成熟度不同而变化,同时干酪根也是纳米级孔隙的主要发育场所.目前常规的岩石物理建模方法没有体现微纳米孔隙的作用,同时较少考虑不同成熟度下干酪根对页岩储层弹性性质的影响.本文采用一种微纳米孔隙理论描述页岩微纳米孔隙特性,考虑微纳米孔隙和不同成熟度下干酪根的赋存状态,应用上述微纳米孔隙模型、各向异性SCA-DEM模型、各向异性Eshelby-Cheng模型和Brown-Korringa固体替换方程等建立一种新的页岩储层岩石物理模型.利用中国西南某工区页岩气井对该模型进行验证,模型预测的横波速度与测井速度拟合较好.结果表明不同干酪根成熟度的页岩岩石物理建模结果具有一定的差异,据此可大致区分该工区井的干酪根成熟度;最后对微纳米孔参数进行正演分析,结果反映了页岩的纵横波速度随微纳米孔隙参数的变化趋势.  相似文献   

7.
地震波传播激发的不同尺度的流固相对运动(宏观、中观和微观)是许多沉积岩地层中地震波频散和衰减的主要原因,然而野外观测和试验测量都难以对非均匀多孔介质孔隙压力弛豫物理过程进行精细刻画.通过数字岩石物理技术,本文建立了三个典型的数字岩心分别用于表征孔隙结构、岩石骨架和斑状饱和流体引起的非均质性,利用动态应力应变模拟技术计算数字岩心的位移和孔隙流体增量图像.通过分析和比较三个数字岩心的位移和孔隙压力增量图像,细致刻画了发生于非均匀含流体多孔介质内的宏观、中观和微观尺度的流固相对运动:1)宏观尺度的波致孔隙流体流动导致波长尺度上数字岩心不同区域的孔隙压力和位移差异;2)中观尺度的流体流动发生在软层与硬层之间、气层与液层之间;3)微观尺度的流体流动发生在孔隙内部或相邻孔隙之间.数值模拟试验也证明基于数字岩心的动态应力应变模拟技术可以从微观尺度上更好的理解波致孔隙流体流动发生的物理机理,从而为建立岩石骨架、孔隙流体、孔隙结构非均质性和弹性波频散-衰减特征的映射关系奠定基础.  相似文献   

8.
川南下志留统龙马溪组页岩储集空间定量表征   总被引:7,自引:0,他引:7  
以川南上奥陶统五峰组-下志留统龙马溪组页岩钻井资料为基础,通过建立储层岩石物理模型和孔隙度数学模型,对富有机质页岩段基质孔隙构成和裂缝发育状况进行了定量评价.经过定量表征证实,龙马溪组页岩储集空间具有4大特征:(1)脆性矿物、粘土矿物和有机质三者产生的单位质量孔隙体积为有机质最高、粘土矿物次之、脆性矿物最少;(2)有效储层孔隙度适中,与Barnett相当,且孔隙构成以粘土矿物层间孔隙和有机质孔隙为主体;(3)富有机质页岩段孔隙度与TOC、脆性矿物/粘土矿物比值关系密切,主要表现为孔隙度随着TOC增大而增大,富含粘土的页岩孔隙度比富含脆性矿物的页岩孔隙度大;(4)黑色页岩裂缝发育,裂缝规模以微型、中-大型裂缝为主,裂缝密度自上而下增大,反映了龙马溪组底部具有脆性矿物含量高、杨氏模量高、泊松比低和脆性好等特点.  相似文献   

9.
数字岩心是计算岩石弹性性质的一类常用方法.龙马溪组页岩具有多矿物构成、复杂微结构和强非均质等特征,常规岩石物理的弹性等效解析建模局限性较大,目前流行的静态数值等效建模方法的精度有限.本文基于高分辨率的页岩数字岩心数据,采用多阈值分割方法将数字岩心分解为黏土、石英、孔隙、TOC、长石类、黄铁矿类等六种矿物类型;利用矿物组分等效模量法计算各类矿物的弹性模量;采用二元函数分水岭方法表征不同压力下的岩石孔隙变形和颗粒接触关系变化;通过取向分布函数(ODF)定量分析矿物颗粒展布造成的各向异性特征.最后基于Biot孔弹方程,采用不分裂卷积完全匹配层(CPML)旋转交错网格有限差分法模拟不同压力下弹性波在数字岩心中的传播.以未加压的数字岩心为参考模型,计算不同压力下弹性波走时的平均时间差,进而估算各压力点的数字岩心等效速度.与该岩心样品的超声实验测量速度比较,动态法数值计算结果略偏高,据此校正数值计算过程中表征岩石微结构及颗粒接触关系随压力变化的二元函数,有效改善动态法弹性等效数值建模精度.  相似文献   

10.
致密油储层历经多重地质作用,储集体类型多样、尺度不一、分布离散、岩性混杂,常规建模不能有效刻画其内部复杂性.针对其发育不同尺度孔隙、复杂天然/人工缝网的特点,本文提出以致密砂岩储层微观孔隙结构表征、天然/人工裂缝的识别与描述技术为基础,集不同尺度孔隙、不同尺度天然/人工裂缝于一体的地质建模方法,即基于压汞资料,将孔隙型基质储层分级,相控随机模拟储层分布模型;以地震资料为主,结合蚂蚁体等技术,人机交互、确定性模拟大-中尺度天然裂缝;以测井解释小尺度、薄片鉴定微尺度天然裂缝为基础,地震参与随机模拟裂缝发育密度体,采用示性点过程法随机模拟小尺度与微尺度天然裂缝;以微地震资料为主,确定性加随机性综合模拟不同尺度人工压裂缝.以新疆吉木萨尔凹陷某油田开发先导试验区芦二段上甜点为例,按上述方法建立致密油藏模型,突出致密油藏特点,为数值模拟提供了高精度的多重介质油藏模拟静态模型.  相似文献   

11.
Based on the drilling data of the Upper Ordovician Wufeng Shale and the Lower Silurian Longmaxi Shale in southern Sichuan Basin,the construction of matrix pores and the development condition of fractures in a marine organic-rich shale are quantitatively evaluated through the establishment of the reservoir petrophysical models and porosity mathematical models.Our studies show that there are four major characteristics of the Longmaxi Shale confirmed by the quantitative characterization:(1)the pore volume of per unit mass is the highest in organic matter,followed in clay minerals,finally in brittle minerals;(2)the porosity of the effective shale reservoir is moderate and equal to that of the Barnett Shale,and the main parts of the shale reservoir spaces are interlayer pores of clay minerals and organic pores;(3)the porosity of the organic-rich shale is closely related to TOC and brittle mineral/clay mineral ratio,and mainly increases with TOC and clay mineral content;(4)fractures are developed in this black shale,and are mainly micro ones and medium-large ones.In the Longmaxi Shale,the fracture density increases from top to bottom,reflecting the characteristics with high brittle mineral content,high Young’s modulus,low Poisson's ratio and high brittleness at its bottom.  相似文献   

12.
The shales of the Qiongzhusi Formation and Wufeng–Longmaxi Formations at Sichuan Basin and surrounding areas are presently the most important stratigraphic horizons for shale gas exploration and development in China. However, the regional characteristics of the seismic elastic properties need to be better determined. The ultrasonic velocities of shale samples were measured under dry conditions and the relations between elastic properties and petrology were systemically analyzed. The results suggest that 1) the effective porosity is positively correlated with clay content but negatively correlated with brittle minerals, 2) the dry shale matrix consists of clays, quartz, feldspars, and carbonates, and 3) organic matter and pyrite are in the pore spaces, weakly coupled with the shale matrix. Thus, by assuming that all connected pores are only present in the clay minerals and using the Gassmann substitution method to calculate the elastic effect of organic matter and pyrite in the pores, a relatively simple rock-physics model was constructed by combining the self-consistent approximation (SCA), the differential effective medium (DEM), and Gassmann’s equation. In addition, the effective pore aspect ratio was adopted from the sample averages or estimated from the carbonate content. The proposed model was used to predict the P-wave velocities and generally matched the ultrasonic measurements very well.  相似文献   

13.
Target detection using ground penetrating radar (GPR) is based on the contrast between the electrical parameters of the target and the background medium, such as dielectric permittivity, conductivity and permeability. The application mainly concentrates on the detection of the medium interface and the target shape. In any theoretical study, a simulation model is built with a homogeneous medium. However, real detection encounters heterogeneous media which might produce scattering and diffraction at electrical interfaces and distort the radar pulse shape and affect the detection resolution. In this paper, we build multi-scale random media model with an ellipsoidal autocorrelation function and use FDTD method to simulate the GPR signal response. We then estimate and analyze the arrival time, layer thickness, permittivity and the physics relation in different scale random models according to the S transform method and the transmission wave method. The results demonstrate that we can use GPR to obtain geophysical information of multi-scale heterogeneous media, and provide a foundation for real media detection and complex media inversion.  相似文献   

14.
The dependence of elastic moduli of shales on the mineralogy and microstructure of shales is important for the prediction of sweet spots and shale gas production. Based on 3D digital images of the microstructure of Longmaxi black shale samples using X-ray CT, we built detailed 3D digital images of cores with porosity properties and mineral contents. Next, we used finite-element (FE) methods to derive the elastic properties of the samples. The FE method can accurately model the shale mineralogy. Particular attention is paid to the derived elastic properties and their dependence on porosity and kerogen. The elastic moduli generally decrease with increasing porosity and kerogen, and there is a critical porosity (0.75) and kerogen content (ca. ≤3%) over which the elastic moduli decrease rapidly and slowly, respectively. The derived elastic moduli of gas- and oil-saturated digital cores differ little probably because of the low porosity (4.5%) of the Longmaxi black shale. Clearly, the numerical experiments demonstrated the feasibility of combining microstructure images of shale samples with elastic moduli calculations to predict shale properties.  相似文献   

15.
超高频(几百兆赫兹)超声数值模拟微米至纳米尺度的龙马溪组页岩数字岩芯及其强非均质性严重挑战数值模拟算法的精度和数值稳定性.本文利用图像阈值分割算法将龙马溪组页岩数字岩芯主要成分分解为石英类、黏土类、黄铁矿及孔隙四种类型,假定液相(油)均匀分布在整个介质模型中,根据岩芯的孔隙度、渗透率和各类矿物的岩石物理参数,建立了精细的非均质双相介质模型.采用基于Biot双相介质方程的不分裂卷积完全匹配层与高精度旋转交错网格有限差分方法精确模拟超声波在页岩岩芯中传播的散射衰减.通过精确控制匹配层吸收边界数来模拟边界反射量及其对尾波的干涉强度,并与超声实验尾波散射Q值进行比较,估算超声实验中的边界反射量及其对尾波的干涉强度.对不同超声子波主频的数值模拟试验,结合L/a-ka散射态式图分析表明:本文采用的龙马溪组页岩数字岩芯的非均质强度与600 MHz波长尺度相当,产生的散射衰减达到最大.开展页岩岩芯超声波散射数值模拟研究,据此评估页岩岩芯的非均质性,为页岩储层声学非均质预测提供依据.  相似文献   

16.
The transition from microscopic brittle deformation to microscopic plastic deformation is called brittle-plastic transition, which is considered as a key layer for determining the limit of lower continental crust seismicity. The depth and deformation mechanism of the brittle-plastic transition zone is controlled mainly by temperature. Besides, the strain rate and fluid pore pressure also affect the transition during the different deformation stages at the seismic cycle. In this paper, microstructure observation of catalcastic samples collected from the Red River Fault was carried out using optical polarized microscopy and scanning electron microscopy. The morphology, microstructures of deformation characteristics, mineral composition, water-rock reaction, pressure solution, exsolution, crack healing in the samples were systematically observed. The mineral components quantitative analyses were examined using the EDS. Water-rock reaction and pressure solution were systematically observed under SEM. The fabric of the main minerals in the samples was measured using electron backscattered diffraction(EBSD). Based on these analyses, the deformation mode was setup for the brittle-plastic transition zone of the fault during the post-seismic relaxation period. Both brittle deformation and plastic deformation were developed in the cataclastic samples. EBSD data shows that the c axial fabrics of quartz present low-temperature plastic deformation characteristics. The feldspar deformed as cataclastic rock, and the micro-fracture in feldspar was healed by static recrystallized quartz and calcite veins. The calcite vein underwent plastic deformation, which represents the post-seismic relaxation deformation. Based on the analysis of deformation mechanism of cataclastic samples in brittle-plastic transition zone of the Red River Fault, and combined with previous studies, we concluded that the brittle fracture and fracture healing is the main deformation mode at brittle-plastic transition zone in the post-seismic relaxation. High stress and high strain rate at post-seismic relaxation lead to brittle fracture of high-strength minerals such as feldspar in rocks. Plastic deformation occurs in low-strength minerals such as quartz and mica. Under the fluid condition, micro-fractures were healed by quartz and calcite. The minerals such as quartz and calcite in the fracture transformed from static recrystallization to dynamic recrystallization with stress gradually accumulating. With fracture healing and stress accumulation, the fault strength gradually increases which could accumulate energy for the next earthquake.  相似文献   

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