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61.
任大忠  孙卫  卢涛  李跃刚  张茜  周楷 《现代地质》2015,29(6):1409-1417
以苏里格气田东部盒8段典型的致密砂岩气藏为例,运用核磁共振、恒速压汞、铸体薄片、物性、X-衍射等实验资料,探讨了影响可动流体赋存差异的微观地质 因素。结果表明,盒8段储层可动流体饱和度低,T2谱分布均为左高峰右低峰的双峰态;黏土矿物的充填与孔隙类型是孔隙结构复杂的重要因素,孔隙结构是影响可动流体赋存特征的关键;面孔率、喉道 半径、孔喉半径比是影响可动流体饱和度的主要因素,有效孔隙体积、分选系数对可动流体饱和度影响明显,储层物性、黏土矿物、有效喉道体积、孔隙半径对可动流体饱和度影响较弱。  相似文献   
62.
Advances in photogrammetry have eased the acquisition of high-resolution digital information from outcrops, enabling faster, non-destructive data capturing and improved reservoir modeling. Geocellular models for flow dynamics with in the virtual outcrop in siliciclastic deposits at different sets of sandstone facies architecture remain, however, a challenge. Digital maps of bedding, lithological contrast, spatial-temporal variations of bedding and permeability characteristics make it more easy to understand flow tortuosity in a particular architecture. An ability to precisely model these properties can improve reservoir characterization and flow modeling at different scales. Here we demonstrate the construction of realistic 2 D sandstone facies based models for a pragmatic simulation of flow dynamics using a combination of digital point clouds dataset acquired from LiDAR and field investigation of the Sandakan Formation, Sabah, Borneo.Additionally, we present methods for enhancing the accuracy of outcrop digital datasets for producing high resolution flow simulation. A well-exposed outcrop from the Sandakan Formation, Sabah, northwest Borneo having a lateral extent of 750 m was chosen in order to implement our research approach. Sandstone facies and its connectivity are well constrained by outcrop observations, data from air-permeability measurements, bilinear interpolation of permeability, grid construction and water vector analysis for flow dynamics.These proportions were then enumerated in terms of static digital outcrop model(DOM) and facies model based on sandstone facies bedding characteristics. Flow simulation of water vector analysis through each of the four sandstone facies types show persistent spatial correlation of permeability that align with either cross-bedded orientation or straight with more dispersion high quality sandstone(porosity 21.25%-41.2%and permeability 1265.20-5986.25 mD) and moderate quality sandstone(porosity 10.44%-28.75% and permeability 21.44-1023.33 mD). Whereas, in more heterolithic sandstone(wavy-to flaser-bedded and bioturbated sandstone), lateral variations in permeability show spatially non-correlated patterns over centimeters to tens of meters with mostly of low quality sandstone(porosity 3.4%-12.31% and permeability < 1 mD to 3.21 mD). These variations reflect the lateral juxtaposition in flow dynamics. It has also been resulted that the vertical connectivity and heterogeneities in terms of flow are mostly pragmatic due to the interconnected sandstone rather than the quality of sandstone.  相似文献   
63.
通过松辽盆地东北缘蚀源区铀源条件、中生代构造演化、白垩系沉积建造研究,结合石油部门地震连井剖面等资料,综合分析了松辽盆地东北部砂岩型铀矿的成矿条件研究,认为盆缘的富铀花岗岩体提供了丰富的铀源,中生代后期反转构造形成的剥蚀天窗为含铀含氧水的渗入渗出提供了通道.研究结果显示,松辽盆地东北部绥棱地区为最有利的砂岩型铀矿找矿部位,主要找矿目标层为上白垩统泉头组兼顾浅部姚家组,找矿类型为层间氧化带型.  相似文献   
64.
为查明鄂尔多斯盆地塔然高勒地区直罗组上段、下段的岩性-岩相特征以及参与蚀变作用的流体强度差异,开展了系统的岩心观察、剖面对比,并结合黏土矿物、碳氧同位素和U、Th元素等手段进行分析。结果表明,研究区南部直罗组上段主要由灰绿色、红色泥岩夹透镜状红色、黄色、灰绿色砂岩组成,北部主要由红色泥岩与灰绿色砂岩构成,南北部下段均由灰白色、灰绿色砂岩或砂砾岩夹薄层泥岩组成。直罗组红色砂岩为原生沉积,灰绿色砂岩为后生改造类型;上段受含氧含铀水和深部还原性流体作用强度较下段变弱,且由北向南作用程度降低,北部还原蚀变岩石与原生岩石共存,南部基本保留原生岩石;下段则受流体改造更为充分,主体为后生蚀变岩石。直罗组不同类型砂体的展布兼受沉积相和后期流体双重作用,但强弱差异性明显,限制了铀矿化产出在直罗组下段砂体中的定位,因此,上、下段应作为不同的成矿体系讨论。  相似文献   
65.
中国西北地区北部主要盆地蚀源区包括银额盆地周缘、北山盆地群周缘、三塘湖盆地周缘、准噶尔盆地周缘,主体位于中亚构造域中西部南缘(部)或与之毗邻区。通过对研究区1 416件中性、酸性及碱性岩浆岩样品的年龄和铀含量数据进行分区统计处理,计算其在地史上的铀迁移量和古铀含量,结果显示,研究区岩浆活动主要发生在早石炭世-早三叠世(349~248 Ma),其次在中奥陶世-早泥盆世(470~396 Ma)。这分别与古亚洲洋开始俯冲消减(O2S1)和最终关闭、中亚-蒙古碰撞褶皱带形成(C-T1)的大地构造演化阶段及重大事件相对应。各区富铀岩石主要形成于早石炭世-早三叠世(334~250 Ma),其与晚古生代岩浆活动具有时间上的一致性。在地域上, 两者有从西向东时代变新的趋势。这亦与古亚洲洋关闭、中亚构造域形成西早东晚的演化特征相一致。各蚀源区岩石的铀含量不尽相同,综合对比和评价表明:北山柳园区、准噶尔盆地东北缘阿勒泰-蕴都地区和东南部清河地区岩石铀含量与宗乃山区铀含量相当或更富;准噶尔盆地东北缘卡拉麦里区岩石铀含量偏富;银额盆地南缘雅布赖山、巴彦诺日公及庆格勒地区及其北部的沙拉扎山区,北山盐滩及马鬃山区,三塘湖盆地周缘,以及准噶尔盆地东北缘的阿勒泰西北区和西缘的北部区铀含量中等;其他地区铀含量相对较贫。研究区现今富铀蚀源区的大部地区,在晚三叠世开始隆升,此后进一步发展,为邻近中新生代盆地提供了丰富的沉积物和铀物质,成为相邻中新生代陆相盆地砂岩型、煤岩型及泥岩型铀矿床的主要成矿物质来源;盆内深部烃源岩层富含铀元素,可降低烃源岩的生烃门限温度并增加烃源岩生烃总量,具有重要的地质、成矿意义。  相似文献   
66.
致密砂岩油气是重要的非常规资源,裂缝作为主要渗流通道,其本身分布规律的复杂性以及多期发育和多期充填的特征,直接影响着裂缝预测的精度,目前尚缺乏一套全面解决构造裂缝定量预测的系统方法。因此,需要深入探讨多期裂缝的识别、充填过程和形成—叠加演化机制,建立合理的裂缝表征模型,以定量预测裂缝参数分布范围。在大量文献调研的基础上,本文认为致密储层裂缝研究主要涉及三个关键方向:通过野外露头和岩心观察,分析裂缝发育特征,结合构造演化和流体包裹体分析,确定裂缝发育期次;通过热液充填模拟实验和岩石力学实验,揭示裂缝充填机制,及其在多期应力作用下裂缝的萌生、扩展和叠加过程;采用实验统计方法,基于能量守恒定理和最大应变能密度理论,建立考虑裂缝差异充填的各向异性强度破裂准则,建立裂缝参数的定量表征模型。最终,本文形成和完善了致密砂岩多期裂缝演化及量化表征的理论体系,为此类油气田的勘探开发提供重要科学依据。  相似文献   
67.
随着铀矿床尤其是砂岩型铀矿勘探和开发的迅速发展,砂岩型铀矿沉积学的概念应运而生。铀矿沉积学是研究沉积盆地形成演化过程中铀的成矿作用、形成环境、含铀岩(层)系特征,以及沉积作用控制下铀的富集机理和分布规律的学科。它综合了铀矿地质学、盆地分析等学科的内容,具有较明显的学科交叉特点。砂岩型铀矿沉积学是铀矿沉积学最典型的代表,它以盆地分析、砂岩型铀矿地质学为重要理论平台,结合沉积学技术方法,具体研究砂岩型铀矿形成的物质来源、成岩作用与铀的预富集、沉积物的结构构造与渗透性、沉积体系与含铀岩系分析、流体作用与后期改造、层序地层与铀的空间分布、铀富集因素与沉积和古气候环境,沉积作用因素与砂岩型铀矿预测,以及管理信息化的三维可视化建模等。以新疆伊犁盆地、吐哈盆地、鄂尔多斯盆地北部等地区代表性砂岩铀矿为实例,从铀矿聚集与沉积物形成—演化过程、沉积物特征及沉积体系分析与铀矿聚集、层序地层学与铀聚集作用等方面分析了铀矿沉积学研究的最新进展和认识。同时对铀矿沉积学的发展趋势进行了展望:认为砂岩铀矿“大规模成矿作用”和铀的“超常富集”关键地质环境、含铀岩系沉积与铀的空间分布、多种高新分析测试技术的应用等方面将是铀矿沉积学未来研究和发展的重点。由于铀矿沉积学与人类生存环境关系的重要性,并且其涉及沉积学学科的方方面面,因此有理由相信,铀矿沉积学未来可能作为沉积学的一个独立分支学科将得到更好的研究和发展。  相似文献   
68.
砂岩侵入体是由处于浅埋藏阶段、尚未固结的砂质沉积物发生液化并侵入到上覆盖层所形成的一类软沉积物变形,在北海盆地维京地堑渐新统地层中非常发育。为探讨砂岩侵入体的形态特征及诱发机制,通过高分辨率三维地震及测井资料,利用地震反射结构分析、地震相干切片等手段对砂岩侵入现象进行了识别;并结合多边形断层系统、流体充注与砂岩侵入之间的关联性,对砂岩侵入体的成因机制进行了分析。结果表明:在地震剖面上可识别的砂岩侵入体多呈V型或W型强振幅反射特征,其横向展布规模约1~2 km,垂向侵入高度约100~200 m;流体的大规模充注及多边形断层诱发盖层破裂是形成砂体内部超压并诱发其发生液化的关键因素。砂岩侵入体在形成之后可以作为流体运移通道,对强化流体的垂向运移具有重要意义;并且砂岩侵入体本身即可作为油气的有利储集体。因此识别并分析砂岩侵入体的成因机理,对盖层封闭性评价及油气勘探具有重要指导意义。  相似文献   
69.
Understanding diagenetic heterogeneity in tight sandstone reservoirs is vital for hydrocarbon exploration. As a typical tight sandstone reservoir, the seventh unit of the Upper Triassic Yanchang Formation in the Ordos Basin (Chang 7 unit), central China, is an important oil-producing interval. Results of helium porosity and permeability and petrographic assessment from thin sections, X-ray diffraction, scanning electron microscopy and cathodoluminescence analysis demonstrate that the sandstones have encountered various diagenetic processes encompassing mechanical and chemical compaction, cementation by carbonate, quartz, clay minerals, and dissolution of feldspar and lithic fragments. The sandstones comprise silt-to medium-grained lithic arkoses to feldspathic litharenites and litharenites, which have low porosity (0.5%–13.6%, with an average of 6.8%) and low permeability (0.009 × 10−3 μm2 to 1.818 × 10−3 μm2, with an average of 0.106 × 10−3 μm2).This study suggests that diagenetic facies identified from petrographic observations can be up-scaled by correlation with wire-line log responses, which can facilitate prediction of reservoir quality at a field-scale. Four diagenetic facies are determined based on petrographic features including intensity of compaction, cement types and amounts, and degree of dissolution. Unstable and labile components of sandstones can be identified by low bulk density and low gamma ray log values, and those sandstones show the highest reservoir quality. Tightly compacted sandstones/siltstones, which tend to have high gamma ray readings and relatively high bulk density values, show the poorest reservoir quality. A model based on principal component analysis (PCA) is built and show better prediction of diagenetic facies than biplots of well logs. The model is validated by blind testing log-predicted diagenetic facies against petrographic features from core samples of the Upper Triassic Yanchang Formation in the Ordos Basin, which indicates it is a helpful predictive model.  相似文献   
70.
The Upper Triassic Xujiahe Formation in the northwestern Sichuan Basin, China, is a typical tight gas sandstone reservoir that contains natural fractures and has an average porosity of 1.10% and air permeability less than 0.1 md because of compaction and cementation. According to outcrops, cores and image logs, three types of natural fractures, namely, tectonic, diagenetic and overpressure-related fractures, have developed in the tight gas sandstones. The tectonic fractures include small faults, intraformational shear fractures and horizontal shear fractures, whereas the diagenetic fractures mainly include bed-parallel fractures. According to thin sections, the microfractures also include tectonic, diagenetic and overpressure-related microfractures. The diagenetic microfractures consist of transgranular, intragranular and grain-boundary fractures. Among these fractures, intraformational shear fractures, horizontal shear fractures and small faults are predominant and significant for fluid movement. Based on the Monte Carlo method, these intraformational shear fractures and horizontal shear fractures improve the reservoir porosity and permeability, thus serving as an important storage space and primary fluid-flow channels in the tight sandstones. The small faults may provide seepage channels in adjacent layers by cutting through layers. In addition, these intragranular and grain-boundary fractures increase the connectivity of the tight gas sandstones by linking tiny pores. The tectonic microfractures improve the seepage capability of the tight gas sandstones to some extent. Low-dip angle fractures are more abundant in the T3X3 member than in the T3X2 and T3X4 members. The fracture intensities of the sandstones in the T3X3 member are greater than those in the T3X2 and T3X4 members. The fracture intensities do not always decrease with increasing bed thickness for the tight sandstones. When the bed thickness of the tight sandstones is less than 1.0 m, the fracture intensities increase with increasing bed thickness in the T3X3 member. Fluid inclusion evidence and burial history analysis indicate that the tectonic fractures developed over three periods. The first period was at the end of the Triassic to the Early Jurassic. The tectonic fractures developed during oil generation but before the matrix's porosity and permeability reduced, which suggests that these tectonic fractures could provide seepage channels for oil migration and accumulation. The second period was at the end of the Cretaceous after the matrix's porosity and permeability reduced but during peak gas generation, which indicates that gas mainly migrated and accumulated in the tectonic fractures. The third period was at the end of the Eogene to the Early Neogene. The tectonic fractures could provide seepage channels for secondary gas migration and accumulation from the Upper Triassic Xujiahe Formation into the overlying Jurassic Formation.  相似文献   
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