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1.
Fine characterization of pore systems and heterogeneity of shale reservoirs are significant contents of shale gas reservoir physical property research.The research on micro-control factors of low productivity in the Qiongzhusi Formation(Fm.)is still controversial.The lower Cambrian Qiongzhusi Fm.in the Qujing,Yunnan was taken as the object to investigate the influence of mineral compositions on the phys-ical properties of the reservoir and the heterogeneity of shale,using the algorithm to improve the char-acterization ability of Atomic Force Microscopy(AFM).The results showed that:(1)The pores are mainly wedge-shaped pores and V-shaped pores.The pore diameter of the main pore segment ranges from 5 to 10 nm.Mesopores are mainly developed in the Qiongzhusi Fm.shale in Well QD1,with the average pore diameter of 6.08 nm.(2)Microscopic pore structure and shale surface properties show strong hetero-geneity,which complicates the micro-migration of shale gas and increases the difficulty of identifying high-quality reservoirs.(3)The increase of clay mineral content intensifies the compaction and then destroys the pores.Conversely,brittle minerals can protect pores.The support and protection of brittle minerals to pores space depend on their content,mechanical properties and diagenesis.(4)Compression damage to pores,large microscopic roughness and surface fluctuations and strong pore structure heterogeneity are the reasons for the poor gas storage capacity of the Qiongzhusi Fm.,which will lead to poor productivity in the Qiongzhusi Fm.  相似文献   

2.
With the rise of shale oil and gas exploration and great success of North American shale oil and gas development in recent years, the study of gas shale reservoir pores gets more and more attention. The pore diameters of shale reservoirs are mainly in nano-scale which are different from conventional reservoirs, and they can not be evaluated by conventional methods. On the basis of the research on the classification of shale pore types and nanopore characterization techniques, qualitative and quantitative nanopore characterization methods were classified and summarized. In addition, the advantages and disadvantages of various methods as well as application scopes were summarized. Qualitative characterization methods can obtain the morphologic information, connectivity and filling conditions of shale pores directly by focused ion beam milling scanning electron microscopy, field emission scanning electron microscopy, transmission electron microscopy, broad ion beam scanning electron microscope, atomic force microscope and Nano-CT. Quantitative characterization methods can measure pore diameters, pore distribution and specific surface area by nitrogen adsorption experiments, carbon dioxide adsorption experiments, mercury injection experiments, small-angle neutron scattering, and nuclear magnetic resonance. The factors that control nanopore developments and the effects of nanopore on shale gas accumulation were discussed. The nanopore developments are related to total organic carbon content, clay minerals content, carbonate content and thermal maturity. Nanopores have influences on shale gas storage capacity, occurrences of shale gas and seepage mechanisms. Frontier research and development directions were proposed. In the aspect of nanopore characterization techniques of shales, the accuracy and efficiency of the experiments and three dimensional imaging technology should be improved constantly. Qualitative and quantitative characterization techniques should be combined. As to the evaluation of shale nanopore reservoirs, the factors that control nanopore developments, shale gas storing and producing and nanopores characterization and evaluation of continental heterogeneous shale are the key issues for further research.  相似文献   

3.
页岩微观孔隙结构是影响页岩气储层储集能力的重要因素。为评价川南地区下寒武统筇竹寺组页岩性质,基于井下 岩心样品、钻井资料,运用普通扫描电镜和氩离子抛光-场发射扫描电镜观测、Image J2x软件分析、低温CO2和N2 吸附、 高压压汞实验方法,对川南地区筇竹寺组页岩气微观孔隙成因类型、孔隙结构特征及其影响因素进行了研究。研究结果表 明,川南地区下寒武统筇竹寺组页岩孔隙度为0.25%~5.80%,平均为2.49%;发育多种成因类型微观孔隙,以粒间孔为 主,粒内孔、有机质孔和微裂缝次之,页岩微观孔隙总面孔率为3.58%~5.92%;川南地区筇竹寺组页岩总孔容为(2.86~ 12.55)×10-3 mL/g,总比表面积为2.727~21.992 m2/g,孔径主要分布于0.30~1.00 nm、2.5~4.7 nm和55~70 nm这三个区间,微 孔(<2 nm)和介孔(2~50 nm)是筇竹寺组页岩气储集空间的主体,孔隙结构形态主要为圆孔、楔形孔、平板狭缝型孔和混合 型孔结构。页岩孔隙度及总比表面积与TOC、脆性矿物含量呈正相关关系,页岩微孔孔容及比表面积与TOC呈正相关关 系,页岩孔隙度、总孔容及总比表面积与R0、粘土矿物含量呈负相关关系。  相似文献   

4.
页岩孔隙研究新进展   总被引:9,自引:0,他引:9  
随着非常规油气勘探的兴起页岩孔隙研究备受重视,如何研究页岩孔隙已经成为非常规油气首要解决的问题之一,其对页岩油气勘探层位选取、资源潜力评价和油气渗流能力计算具有重要意义。对页岩微—纳米孔隙表征技术、页岩孔隙类别的划分以及页岩孔隙演化规律分别进行了综述并指出存在问题,同时结合最新研究进展对页岩孔隙研究进行展望。提出工业CT—微米CT—纳米CT/FIB系列辐射扫描方法和压汞(MICP)—氮气吸附(N2)—二氧化碳吸附(CO2)流体法是孔隙定量表征的最优方法,通过单井孔隙度测井资料与实验室测定结果建立校正图版指导储层孔隙发育段优选;页岩孔隙分类研究还应该考虑含油气性,利用原子力显微镜等工具加强孔隙含油性研究;孔隙演化规律研究应该采用模拟实验和真实剖面样品对比并结合矿物组成分析等寻找主控因素。  相似文献   

5.
徐祖新  郭少斌 《现代地质》2015,29(1):206-212
通过氩离子抛光-SEM技术,分析了中扬子地区震旦系陡山沱组页岩储层孔隙类型、孔隙形态、孔径和面孔率特征,探讨了这些孔隙的油气地质意义。研究认为,陡山沱组页岩储层发育有机质孔隙、粒间孔隙、粒内孔隙和微裂缝4种孔隙类型。页岩孔隙形态可分为不规则多边形孔、圆形或椭圆形孔、复杂网状孔、串珠状孔、长条形孔、线状孔6种类型,其中复杂网状孔的连通性最好,有利于压差传递,可提高页岩气的解吸效率和储层的渗透率。页岩孔径为10~2 000 nm,主体范围为20~200 nm,平均面孔率为1.4%~6.2%。不同类型的孔隙能够为页岩气的赋存提供不同尺度的储集空间,微裂缝和粒间孔隙对页岩气的运移最为有利。  相似文献   

6.
为深化吉木萨尔凹陷芦草沟组页岩储层孔隙及含油性认识,通过氩离子抛光、场发射扫描电镜、核磁共振、微纳米CT及激光共聚焦实验技术,对芦草沟组微纳米孔隙类型、成因及含油特征进行研究.结果表明,微纳米级孔隙按照成因分为无机矿物晶间孔和有机质生烃孔两大类.微纳米孔隙中重质组分附着于颗粒表面或充填于纳米级小孔中,轻质组分主要赋存于...  相似文献   

7.
下寒武统筇竹寺组页岩是南方页岩气勘查开发重点关注的层位之一,但滇东地区下寒武统筇竹寺组黑色页岩储层研究程度较低。样品采自2014年新钻的曲页1井,对下寒武统筇竹寺组黑色泥页岩进行全岩和粘土矿物X衍射分析、TOC、岩石物性、比表面积等测试和扫描电镜实验,综合分析了滇东曲靖地区筇竹寺组泥页岩储层特征及孔隙类型。结果表明:滇东曲靖地区下寒武统筇竹寺组泥页岩矿物组成主要是石英(44.75%)、粘土矿物(25.47%)、长石(16.44%);发育粒间孔、粒内孔和有机孔3种类型孔隙;有机质孔隙发育,以中孔为主,具有一定的页岩气勘探开发潜力;页岩储层自上而下孔隙体积有逐渐变小的趋势,但在井深400 m~500 m发育高孔隙体积;泥页岩储集性能的重要指标——孔隙度主要受有机质含量及发育程度的制约。  相似文献   

8.
四川盆地涪陵气田焦石坝区块上奥陶统五峰组—下志留统龙马溪组一段海相页岩气储层是由孔隙和裂隙组成的双孔隙岩层。为确定储层的含气量和产出能力,应用页岩气测井评价技术对储层的孔隙度和渗透率进行了定性认识,并提出了定量评价方法。认为用"经验统计法"可以有效计算出页岩气储层的孔隙度,但由目前的测井评价技术所得到的渗透率仅能反映储层渗透率的变化趋势。  相似文献   

9.
吉木萨尔芦草沟组页岩油层系岩性复杂,揭示不同类型储集层微观孔隙特征及非均质性控制因素,有利于指导该区页岩油甜点评价及优选.本文优选芦草沟组30块页岩油储集层样品,采用场发射扫描电镜、高压压汞、核磁共振等实验手段,刻画页岩油储集层微观孔隙结构,探讨混积型页岩油孔隙非均质性的控制因素.结果表明,芦草沟组发育7类孔隙和3类孔...  相似文献   

10.
李博  于炳松  史淼 《矿物岩石》2019,39(1):92-101
黔西北下志留统五峰—龙马溪组是我国南方海相页岩气勘探的重要目的层,其孔隙类型除了与常规储层相似的粒间孔、粒内孔、溶蚀孔等孔隙外,还发育了大量的有机质孔。近年来,越来越多的研究发现,页岩气储层中有机质孔占有十分重要的地位。本次研究中发现页岩岩石样品中占主要体积的孔隙类型是中孔(2 nm~50 nm)占比44.16%~82.39%,其次是微孔(<2 nm)占比8.57%~41.23%,宏孔(>50 nm)最少,占比4.02%~16.41%;从场发射扫描电子显微镜照片中可以看出,许多宏孔、中孔有明显的挤压变形现象,说明岩石经历了较长时间的压实作用,并可能伴随着部分孔隙被其他矿物充填的过程。由回归分析可以看出:总有机碳(TOC)含量强烈影响微孔和中孔的发育和演化,尤其是对中孔的影响明显,TOC与这两种孔隙体积之间都存在着明显的正相关关系;石英对中孔发育有一定影响,但不如前者明显,同时石英与微孔之间存在一定的负相关关系;黏土矿物与中孔发育之间存在负相关关系;Ro与微孔、中孔占总孔隙体积的百分比有着良好的正相关关系,而与宏孔占总孔隙百分比有着良好的负相关关系。  相似文献   

11.
数字岩心技术为大庆齐家-古龙地区青山口组一段的页岩油评价提供了可靠的基础数据,助力了松辽陆相盆地页岩油的勘探突破.针对泥页岩储层超低孔、超低渗的物性特征,综合利用微纳米CT、MAPS和QEMSCAN等数字岩心配套实验,对泥页岩储层岩石学特征、岩相类型、孔隙结构等进行了研究.将青山口组一段划分为5种岩相类型,分别为低有机...  相似文献   

12.
Micro-heterogeneity is an integral parameter of the pore structure of shale gas reservoir and it forms an essential basis for setting and adjusting development parameters. In this study, scanning electron microscopy, high-pressure mercury intrusion and low-temperature nitrogen adsorption experiments were used to qualitatively and quantitatively characterize the pore structure of black shale from the third member of the Xiamaling Formation in the Yanshan area. The pore heterogeneity was studied using fractal theory, and the controlling factors of pore development and heterogeneity were evaluated in combination with geochemical parameters, mineral composition, and geological evolution history. The results show that the pore structure of the reservoir was intricate and complicated. Moreover, various types of micro-nano scale pores such as dissolution pores, intergranular pores, interlayer pores, and micro-cracks are well developed in member 3 of the Xiamaling Formation. The average porosity was found to be 6.30%, and the mean value of the average pore size was 4.78 nm. Micropores and transition pores provided most of the storage space. Pore development was significantly affected by the region and was mainly related to the total organic carbon content, vitrinite reflectance and mineral composition. The fractal dimension, which characterizes the heterogeneity, is 2.66 on average, indicating that the pore structure is highly heterogeneous. Fractal dimension is positively correlated with maturity and clay mineral content, while it is negatively correlated with brittle mineral content and average pore size. These results indicate that pore heterogeneity is closely related to thermal history and material composition. Combined with the geological background of this area, it was found that the pore heterogeneity was mainly controlled by the Jurassic magmatism. The more intense the magma intrusion, the stronger the pore heterogeneity. The pore structure and its heterogeneity characteristics present today are a general reflection of the superimposed geological processes of sedimentary-diagenetic-late transformation. The influence of magmatic intrusion on the reservoir is the main geological factor that should be considered for detailed evaluation of the Xiamaling Formation shale gas reservoir in the Yanshan area.  相似文献   

13.
以云南曲靖地区筇竹寺组泥页岩为例,利用氩离子抛光-场发射扫描电镜、高压压汞、常规扫描电镜等实验技术手段,探究泥页岩储层微观储集空间的发育类型与特征。结果表明:筇竹寺组泥页岩储层孔隙成因复杂,类型多样,主要发育的微观储集空间类型包括有机质孔隙、粘土矿物孔隙、颗粒矿物孔隙、微裂隙等,以有机质孔隙最为发育,提供了主要的储集空间;孔隙度介于1.59%~11.33%之间,平均值达到了5.0%,小孔、微孔所占储集空间比例约56.5%,中孔和超大孔所占比例为34.0%,大孔相对较少。控制筇竹寺组页岩孔隙发育的因素主要有TOC、矿物组分和成岩作用,TOC是影响筇竹寺组页岩储层孔隙发育的主控因素,也是提供页岩气主要储存空间的重要物质。  相似文献   

14.
鄂尔多斯盆地长73亚段的页岩层系有机质含量、矿物含量变化大,发育凝灰岩夹层,具有较强的非均质性,不同岩相的孔隙结构差异及主控因素尚不明确。综合多种分析技术手段,对鄂尔多斯盆地南部长73页岩层系的岩相进行系统划分,对比不同岩相的孔隙结构及物性差异,探讨其有效孔隙网络及主控因素。根据粒度、TOC和矿物成分将长73细粒岩分为8种岩相类型,其中高有机质硅质页岩、凝灰岩及高有机质黏土质页岩三种岩相所占比例较高。长73页岩中有机质丰度高(平均20.04%),类型以Ⅰ型为主,处于低熟到成熟阶段。储集空间根据产状可分为基质孔隙(粒间孔、粒内孔、晶间孔、特大溶蚀孔)、有机质相关孔隙(有机质孔、有机质边缘孔隙)、裂缝(构造缝、成岩缝、晶面裂缝、粒边缝)。各岩相等温吸附曲线特征以IV型为主,迟滞回线以H3型为主。宏孔是储集游离油的有效孔隙,储集性能受岩相、有机质含量及矿物组成控制。凝灰岩孔隙度、渗透率及宏孔比孔容最高,其次为高有机质硅质页岩和高有机质黏土质页岩,而低有机质页岩宏孔比孔容最小,介孔比孔容大。页岩中有机质、黄铁矿含量与宏孔比孔容呈正相关,凝灰岩中石英含量与宏孔比孔容也呈正相关。研究成果可为长73亚段页岩油甜点评价及预测提供地质依据。  相似文献   

15.
针对四川盆地五峰组-龙马溪组过成熟海相页岩,开展普通薄片观察、SEM成像、X-衍射全岩组分和黏土矿物分析、TOC含量测定、N2-CO2联合吸附实验和RG测定.结果表明,海相页岩发育有机孔、无机孔和微裂缝.有机孔多呈气孔状或海绵孔状,大、小混杂;无机孔多呈三角状、棱角状或长方形状;微裂缝多呈条带状,能有效沟通有机孔和无机...  相似文献   

16.
戚明辉  李君军  曹茜 《岩矿测试》2019,38(3):260-269
孔隙发育特征是泥页岩储集能力评价的关键参数之一。扫描电镜观察法已普遍用于描述泥页岩的孔隙发育特征,但是目前文献中对泥页岩微孔隙类型划分比较混乱,孔隙结构特征参数的表征以定性描述为主,缺乏定量表征手段。本文选取了18个泥页岩样品为研究对象,通过氩离子抛光和高分辨率扫描电子显微镜图像观察,基于孔隙发育形态、位置及成因,对样品中不同孔隙进行类型划分;结合JMicroVision图像分析软件,应用泥页岩微孔隙描述技术和孔隙尺度分类统计技术,统计不同类型孔隙发育数量、孔径大小、面孔率、形状系数、概率熵等参数,对其分布特征进行评价。研究表明,晶(粒)间孔隙和有机孔隙比较发育,其次为晶(粒)内孔和晶间隙。不同类型孔隙其孔径分布以纳米级为主,不同类型孔隙分布较无序,其概率熵主要分布在0.5~0.7之间,对应的形状系数分布差异也较大。有机质孔隙的形状系数主要分布在0.6~0.7范围内,形状分布以椭圆形或近似圆形为主,晶(粒)间孔隙和晶(粒)内孔隙的形状系数主要分布在0.3~0.7,分析晶(粒)间孔隙和晶(粒)内孔隙形状系数分布特征主要是受原始孔隙形态、压实作用和溶蚀作用的影响。研究认为,SEM与JMicroVision相结合是定量研究不同类型微孔发育特征的有效手段,为研究微孔的形成和演化奠定了基础。  相似文献   

17.
为研究海相含煤地层页岩的微观孔隙特征,选取黔西北地区石炭系祥摆组页岩作为研究对象,利用扫描电镜(SEM)和液氮吸附实验研究孔隙特征,同时研究其分形特征,并探讨孔隙结构的影响因素。研究结果表明:研究区石炭系祥摆组页岩在扫描电镜下可观察到4类微观孔隙(粒内孔、粒间孔、有机质孔、微裂缝),其中微裂缝、有机质孔发育较丰富,具有较强的生成烃类气体能力和良好的储集性能;液氮吸附等温线在形态上呈反“S”形,表明中孔在微观孔隙中最为发育,滞后回线类型主要为H2型的细颈广体的墨水瓶孔;BJH总孔体积和BET比表面积值均较大,平均值分别为0.0155 cm3/g和13.20 m2/g,平均孔径为6.22 nm,纳米级微观孔隙大量发育,为烃类气体提供丰富的储集空间;页岩样品微观孔隙结构分形维数D较大,主体大于2.723 2,反映出孔隙结构复杂、非均质性较强;BET比表面积与TOC、石英含量呈一定的负相关性,与分形维数呈一定的正相关性;平均孔径值与石英含量正相关性较好,与分形维数负相关性较好,与黏土矿物含量呈一定的负相关性。石炭系祥摆组页岩微观孔隙的BET比表面积较大、平均孔径较小,微观孔隙结构较为复杂。  相似文献   

18.
中国南方主要富有机质海相页岩寒武系牛蹄塘组和志留系龙马溪组是当前页岩气勘探的重要目标地层,但演化程度普遍偏高,孔隙结构复杂。为加深对这种复杂性的认识,通过场发射扫描电镜、高压压汞实验与低温低压吸附实验(CO_2与N_2),对页岩全孔径孔隙结构特征进行对比研究。研究发现,牛蹄塘组孔体积与龙马溪组页岩的孔体积分别介于0.0202~0.0402 m L/g与0.0255~0.0310 m L/g之间,介孔在两套页岩孔体积中所占比例最大。两套页岩比表面积分别介于13.74~41.26 m~2/g与21.42~27.82 m~2/g之间,微孔与介孔几乎提供了两套页岩全部的比表面。孔隙结构的差异主要表现为牛蹄塘组页岩内溶蚀孔和粒间孔较为发育,有机质孔隙发育不均匀;而龙马溪组页岩内粒内孔、粒间孔和有机质孔隙均较为发育;牛蹄塘组在微孔范围内的孔体积与比表面积占有优势,而介孔与宏孔范围内的孔体积与比表面积均小于龙马溪组。根据实验数据结果与文献的调研,两套页岩孔隙结构差异的主要原因主要是成熟度与埋深的不同影响而形成的。  相似文献   

19.
储层非均质性是影响煤系页岩气勘探开发的主要瓶颈之一。以宁武盆地太原组和山西组泥页岩为研究对象,通过钻孔资料、TOC、XRD、扫描电镜、压汞及低温液氮测试,划分泥页岩发育层段,分析煤系页岩TOC、矿物成分、孔隙度、孔容、比表面积参数宏观非均质性及孔隙结构非均质性,探讨宏观—微观非均质性影响因素。研究表明:太原组和山西组泥页岩平均厚度分别为32.77m和67.68m,可划分为5个层段和4种暗色泥页岩类型,黑色页岩具有TOC、孔隙度、水敏性中等,脆性高特点,是最利于开发的优质储层段;微孔主要受黏土矿物含量影响,呈现出正相关关系,在黏土矿物含量较低时,微孔与TOC呈现正相关;煤系泥页岩宏观非均质性主要受沉积和构造影响,微观非均质性受成岩演化影响。研究成果可为优选煤系页岩气优质储层段和压裂工艺提供可靠依据。  相似文献   

20.
海相页岩气储层特征研究进展与发展动态   总被引:1,自引:0,他引:1  
富有机质泥页岩复杂的沉积成岩过程、细粒特征,以及远小于常规储层的以微米—纳米级为主的孔隙空间,给海相页岩气储层特征研究带来了极大的挑战。近年来借助多项先进技术方法的推广运用,在海相页岩气储层的多个方面形成了重要认识,页岩有机质与其成熟度关系密切,岩石矿物组分判定方法向定量化发展,岩相预测与建模技术得以应用,但成岩作用对储层的影响尚有待进一步探知,物性变化趋势的认识尚存在不同见解,孔隙结构实现了从定性到定量表征的跨越,页岩力学性质的解析能够有效指导压裂改造。通过进一步分析海相页岩气储层研究的发展动态,就页岩气储层孔隙结构系统表征、区域尺度上成岩与岩相变化的时空配置关系、成岩演化—岩相—孔隙系统—有机质丰度潜在的多元关系等研究方向作出了展望,以期推进储层特征研究在深度和广度上向前发展。  相似文献   

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