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1.
济阳坳陷古近系一新近系泥岩孔隙结构特征   总被引:1,自引:0,他引:1  
对济阳坳陷东营凹陷和沾化凹陷古近系一新近系泥岩的岩心样品,进行了X衍射全岩物相测试,有机碳测定,孔隙度、渗透率测定及扫描电镜和显微镜下观察,发现泥岩中普遍含碎屑矿物,其中长石含量较高,粘土矿物以碎屑粘土为主,泥岩中碳酸盐矿物含量较高。泥岩中各种面状孔隙是主体孔隙,由微孔隙构成,孔隙含量较高,分布较均匀。泥岩孔隙结构基本可归纳为细孔喉型、粗孔喉型及混合过渡型等三种类型。最后分析探讨了影响泥岩孔隙结构主要因素为:①碳酸盐含量使孔隙基本面貌产生差异;②压实作用使孔隙度减小,欠压实对孔隙结构有保护作用;②有机质丰度、成熟度及赋存状态与溶蚀孔隙发育关系密切相关;④有机质富集有利于异常压力发育,对孔隙起保护作用。  相似文献   

2.
东营凹陷古近系砂岩成岩作用与孔隙演化   总被引:8,自引:2,他引:8  
东营凹陷是重要的油气富集区,在古近系地层发育湖相水下扇沉积、滨浅湖沉积和三角洲沉积等砂岩。砂岩的成岩作用及孔隙演化对储层的储集性能有重要影响。在对大量薄片和岩心进行分析的基础上,运用扫描电镜和X衍射粘土分析等手段,对东营凹陷砂岩储层的成岩作用和孔隙演化进行了研究。研究结果表明,该区压实作用、胶结作用使砂岩孔隙度降低,不稳定矿物的溶蚀作用和碳酸盐胶结物的溶解作用导致孔隙度增大。根据有机质的演化及粘土矿物的变化序列,在不同的构造单元,砂岩成岩作用和孔隙演化随埋深具有明显的规律性,可划分出原生孔隙带、原生次生孔隙带和次生孔隙带3个孔隙演化带,存在着较有利的次生孔隙发育带。  相似文献   

3.
渤海湾盆地辽河坳陷西部凹陷南段古近系沙河街组中发现了低产油气流和工业油气流,储集层具有低—特低孔隙度、特低—超低渗透率、低压的特征,属于典型的致密砂岩储集层。应用大量的薄片、扫描电镜、粒度分析、压汞和物性等测试资料,研究了致密砂岩的微观特征,探讨了致密砂岩的形成机理。研究结果表明,致密砂岩(孔隙度小于10.0%)大多发育在凹陷区;矿物成分、粒度、分选、磨圆等沉积学参数与致密砂岩的形成关系不大;致密砂岩的孔隙类型主要为次生孔隙,孔隙结构整体上具有中孔径、微细喉以及喉道分选不均匀等特征;机械压实作用和胶结作用导致了致密砂岩的形成,该致密砂岩属于次生型致密砂岩。  相似文献   

4.
岩石类型中的孔喉特征对储集层的研究具有重要意义。对青西凹陷下白垩统储集层中的含白云质泥岩和泥质白云岩进行薄片观察、矿物X衍射定量分析、场发射扫描电镜观察、Qemscan系统分析和压汞分析,结果发现,含白云质泥岩中黏土矿物含量高,发育黏土矿物层间孔,含部分黄铁矿晶间孔及微裂缝,粒内孔数量较少,微米级孔隙(孔径10~200μm)数量居多;泥质白云岩中白云石含量高,以矿物颗粒粒缘缝、粒间孔、微裂缝及有机质收缩缝为主,偶见有机质溶蚀孔、黄铁矿晶间孔,纳米级孔隙较多,主要为20~200μm。通过两类岩性中孔喉特征差异初步分析,认为矿物组成、压实作用、有机质成熟度是其主要影响因素。  相似文献   

5.
代龙  尤丽  招湛杰  钟佳  徐守立  娄敏 《地球科学》2019,44(8):2677-2685
莺歌海盆地东方-乐东区已获得商业气田发现,但针对气田盖层研究,尤其是泥岩盖层岩石学特征及孔喉结构特征方面研究较少.利用岩石薄片、地球化学、XRD、元素分析等资料,深入分析研究区泥岩矿物组成、地球化学、成岩演化以及孔隙结构特征.结果表明:莺歌海盆地东方-乐东区中新统黄一段和黄二段泥岩盖层分布最为稳定,泥岩盖层封盖性受陆源碎屑供给与钙质化石碎片影响较大,研究区优质盖层中陆源碎屑颗粒与钙质化石碎片含量较低,次生溶蚀孔隙与微裂缝不发育;埋藏成岩过程中的粘土矿物转化脱水与有机质热演化排烃是低速泥岩的主要成因;泥岩盖层以微孔喉和超微孔喉为主,此类喉道不利于气体的渗流,对油气向上逸散起明显阻碍,盖层整体封盖性较好.   相似文献   

6.
张敏  张枝焕  欧光习  尚长健  黎琼 《地质通报》2016,35(203):329-338
岩心观察和岩石薄片鉴定显示,柴达木盆地西部古近系干柴沟组存在层状-非层状泥页岩、层状-非层状灰质泥页岩、泥灰岩、层状-非层状粉砂质泥岩和泥质粉砂岩5种岩相。总有机质含量(TOC)为0.2%~1.4%,有机质以Ⅱ型干酪根为主,普遍处于成熟阶段。泥页岩矿物成分以碎屑石英和粘土矿物为主,并含有不等量的方解石、白云石、长石、黄铁矿等;发育原生孔隙、有机质生烃形成的孔隙、次生溶蚀孔隙、粘土矿物伊利石化体积缩小形成的微孔隙及微裂缝5种页岩气储集空间类型。研究表明,储集空间发育主要受岩相类型、矿物成分、成岩作用、有机碳含量和有机质成熟度的影响。虽然研究区泥页岩中有机质含量普遍较低,但有机质普遍处于成熟阶段,储层中发育多种储集空间类型,并富含脆性矿物和富伊利石的粘土矿物。因此,柴达木盆地西部干柴沟组泥页岩为良好的页岩气储集层,具有一定的页岩气勘探前景。  相似文献   

7.
济阳坳陷古近系成岩作用及其对储层质量的影响?   总被引:12,自引:5,他引:12  
大量的储层分析化验资料研究表明,济阳坳陷古近系砂岩储层经历了压实、胶结等多种成岩作用。压实作用以机械压实为主,压溶作用较少。胶结作用主要有十分普遍的石英次生加大胶结、碳酸盐胶结、粘土矿物胶结。碳酸盐胶结物有早、晚两期,早期泥晶方解石主要分布在浅层,连晶方解石充填的深度分布范围大,中深部最为发育。溶蚀作用主要有碳酸盐胶结物、长石颗粒和少量岩屑溶蚀。储层孔隙经历了由原生到次生的演化过程,在成岩演化过程中,长石的溶蚀作用、碳酸盐矿物的沉淀与溶解作用是影响孔隙大小的关键因素,早期方解石的胶结有利于后期次生孔隙的发育。不同凹陷次生孔隙发育的深度不同。在济阳坳陷西部的惠民凹陷次生孔隙主要发育于1500-2400m深度,向东至东营凹陷则主要发育于1650-2450m,再向东到沾化凹陷为2300-3500m,车镇凹陷为2200-2700m。从西向东、由南向北次生孔隙的发育深度逐步增大是受盆地沉积沉降中心的迁移规律控制的。  相似文献   

8.
辽河滩海西部凹陷古近系储层砂岩类型主要以长石岩屑砂岩、岩屑长石砂岩、岩屑砂岩及杂砂岩为主,为近源、多源沉积体系,砂岩成分成熟度及结构成熟度低。孔隙类型包括原生孔隙、次生孔隙及混合型孔隙。研究表明该区古近系储层成岩阶段处于早成岩B段至晚成岩A段,主要发育机械压实、胶结、溶解及交代等4种成岩作用。其中溶解作用为主要的建设性成岩作用,发育程度普遍较强。机械压实、胶结及交代等成岩作用为破坏性成岩作用,发育程度中等。储层物性随深度增加呈现有规律的变化,在1 400~2 600 m和2 800~3 400 m深度范围内,孔隙度和渗透率出现异常高值。成岩作用的强度和期次是影响储层孔隙发育的主控因素之一,该区的两个异常孔隙发育带是各种成岩作用综合的结果。其中第一异常孔隙发育带与有机质成熟有关,成岩环境为酸性;第二异常孔隙发育带则与碱性成岩作用有关,硅质组分的溶解对次生孔隙的形成及保存具有重大的贡献作用。  相似文献   

9.
山东省牛庄洼陷古近系沙河街组沙三中亚段储集层岩石类型以长石岩屑砂岩和岩屑长石砂岩为主,岩石结构成熟度和成分成熟度均较低。砂岩成岩作用包括压实作用、胶结作用、交代作用、溶解作用等。压实作用主要有刚性颗粒发生脆性破裂、颗粒之间呈线接触和凹凸接触、岩石碎屑颗粒呈明显的定向排列、塑性颗粒挤压变形或刚性颗粒嵌入变形颗粒中、粘土质碎屑被挤压变形发生假杂基化等五种表现形式。胶结物主要有泥质胶结物、碳酸盐胶结物、自生粘土矿物和自生石英、长石。交代作用主要有石英交代长石颗粒、碳酸盐胶结物交代石英、长石及岩屑颗粒、碳酸盐胶结物之间的相互交代。发生溶解作用的主要是石英、长石和岩屑颗粒,胶结物中主要是碳酸盐矿物。目前研究区沙三中亚段储集层成岩演化处于晚成岩A期。影响成岩作用的主要因素为岩石成分、沉积环境、孔隙流体性质等。成岩作用对储集物性的影响主要表现在孔隙度和渗透率的变化,其中压实作用和胶结作用使储层原生孔隙迅速减少、渗透率降低,使得储集物性变差;而溶解作用是次生孔隙发育的主要因素,从而改善砂岩的储集性能。  相似文献   

10.
珠江口盆地惠州凹陷深部古近系储层特征及发育控制因素   总被引:2,自引:0,他引:2  
惠州凹陷古近系自下而上依次发育文昌组、恩平组及珠海组,深部储层主要发育在恩平组和珠海组.储层的孔隙类型包括粒间溶孔、粒内溶孔、黏土矿物微孔等次生孔隙,同时还含有剩余原生粒间孔和裂缝.其中,原生孔隙度平均为2.4%,占总孔隙度的22.2%;次生孔隙度为5.6%,占总孔隙度的65.2%;裂缝孔隙度为1.0%,占总孔隙度的1...  相似文献   

11.
以沾化凹陷渤南洼陷罗63井和义21井沙一段取心段为例,依据研究样品的热解、全岩与黏土矿物X射线衍射、有机岩石学、孔隙度、氩离子抛光+扫描电镜以及微孔隙结构等分析结果,开展了沙一段湖相富有机质烃源岩岩石学与孔隙结构特征研究,结果表明:罗63井和义21井沙一段取心段富有机质烃源岩主要由碳酸盐矿物、黏土矿物和石英组成,另含少量长石、黄铁矿和石膏,其中黏土矿物主要由伊/蒙混层、伊利石组成,由取心段顶部至底部,碳酸盐矿物质量分数明显增高,而黏土矿物和石英则显著降低,呈现由钙质或灰质泥岩至演变为泥质灰岩的特征,岩石构造类型包括层状、纹层状和块状3类;罗63井和义21井沙一段取心段富有机质烃源岩平均孔隙度分别为2.09%和4.43%,具纹层状构造的烃源岩具有相对高的孔隙度;主要发育矿物基质孔隙(即粒间孔隙和粒内孔隙)和裂缝型孔隙两大类,而有机质孔隙不发育,孔隙半径从十几微米至几纳米的孔隙均有分布,以发育孔径50 nm以上的宏孔为主。  相似文献   

12.
泥岩有机质的赋存状态与油气初次运移的关系   总被引:4,自引:0,他引:4  
从济阳坳陷古近系 新近系泥岩的研究实例出发,分析了泥岩孔隙结构特征及有机质的赋存状态,探讨了泥质烃源岩排烃通道与初次运移的关系模式。研究认为泥岩中孔隙小而多,喉道窄而细,孔喉分选性较好,具有较好的连通性,微裂 (隙 )缝常见。泥岩中有机质的赋存状态可划分为顺层富集型、分散型和局部富集型等三种不同的种类。泥岩中有机质呈分散型分布时,成熟油气通过较粗孔喉系统作为通道进行排烃是初次运移的方式之一。泥岩中有机质呈顺层富集型分布时,在有机质富集处,岩石结合力较弱,加上成熟油气形成的流体压力较高,极易产生微裂 (隙 )缝,成为成熟油气初次运移的主要通道。  相似文献   

13.
富有机质黑色页岩的孔隙结构控制了页岩气的赋存状态和储气量。中国南方地区下志留统是页岩气发育的最重要层位之一。为研究页岩的孔隙特征及其主控因素,对以下志留统龙马溪组页岩气为勘探目标的渝页1井的岩心进行系统的采样,并进行了比表面和孔径、有机质成熟度(Ro)、显微组分、总有机碳(TOC)含量、全岩X射线衍射和粘土矿物含量等一系列分析测试。结果显示,黑色页岩的孔径主要分布于2~5 nm,即以中孔隙为主;中孔体积占总体积的70%左右,微孔体积和宏孔体积分别占10%和20%左右。页岩孔隙结构(微孔体积、中孔体积和宏孔体积)和组成(碎屑矿物成分、粘土矿物成分、TOC和Ro)的相关关系分析表明:粘土矿物对微孔体积和中孔体积都具有控制作用,并且对中孔体积的控制作用更加显著;陆源碎屑含量的增加有利于宏孔体积的增加;有机质成熟度较高时和高成熟度有机碳含量都与宏孔隙体积呈正相关,这可能与高成熟有机质中nm级显微裂缝的发育导致宏孔体积增加有关。  相似文献   

14.
This work investigated the pore structure characteristics and reservoir features of the finegrained tight reservoirs in the lower member of the Xinhe Formation(J_2 x_1) in the Xiaohu subsag,Yabulai Basin based on core samples through various techniques. Interbedded silt/fine sandstones and mudstones are developed in the study area. Scanning electron microscopy(SEM) images were used to delineate different types of pores, including primary intergranular pores, secondary intergranular and intragranular pores, organic pores and fractures. The pore types were distinguished by pore size, pore area, location and formation process. The pore radii of the fine-grained rocks range from 1 nm to 1.55μm, mainly concentrated between 5 and 300 nm by low pressure N_2 adsorption and MICP analyses. The pore structure parameters of pore throat size and pore throat sorting coefficient are both positively correlated with porosity, while pore throat sorting coefficient has a negative correlation with permeability. The pore structures of the studied samples are much related to the mineral type and content and grain size, followed by TOC content. In these rocks with relatively low TOC and low maturity, the rigid minerals protect pores with pressure shadow from collapse, and dissolution-related pores contribute a lot to inorganic porosity. In contrast, these rocks with abundant TOC contain a large number of organic pores. The permeability of the fine-grained tight reservoir is mainly dominated by larger pore throats, while a large number of small pores(mostly 0.1 μm) contribute considerably to porosity. These results have deepened our understanding of the interbedded fine-grained tight reservoirs and can be applicable to fine-grained reservoirs in a similar setting.  相似文献   

15.
Inorganic minerals in mudstone are composed of clay minerals,carbonate and detrital minerals.Detrital minerals(such as quartz and feldspar)are mainly original deposit.However,clay minerals(kaolinite,illite,and chlorite)and carbonate(calcite and dolomite)are mostly diagenetic minerals.Furthermore,conversion of the four kinds of clay minerals are common.The formation of clay minerals and carbonate is controlled by temperature,pressure,p H,Eh and type of cations during diagenesis.Therefore mineral assemblage can indicate the characteristics and change of diagenetic environment.In addition to inorganic minerals,there are also organic matter of different sources and chemical properties in mudstone.Traditionally,it is considered that evolution of organic matter is controlled by thermal effect.Now studies show that inorganic and organic matter can interact with each other and form clay-organic complexes.This suggest that attention should be paid to the influence of diagenetic mineral assemblage and diagenetic environment on the evolution of organic matter* Samples of mudstone from 1500-4500m of the Palaeogene in the Dongying Depression,China,were collected to investigate the changes of mudstone diagenetic environment.XRD,thin section and SEM were used to detect diagenetic minerals and assemblage characteristics.Results showed that content of detrital minerals,which are floating in mud matrix or preserved as silt laminae,is basically unchanged from shallow to deep strata.Clay minerals which are gathered as argillaceous matrix or preserved as argillaceous laminae have growth and decline relation to carbonate which mainly appear as micropoikilitic ferriferous calcite and ferriferous dolomite.All these characteristics indicate that detrital minerals are exogenetic,whereas carbonate is diagenetic minerals.Based on the SEM analysis of the clay minerals,it was found that smectite present honeycomb and reticulate structure,while illite present filiform and schistose structure and there are growth and decline relationship between them.Nevertheless,hexagonal tabular and stratified kaolinite has the highest content from 2400m to3300m.Rosette and stratified chlorite shows increase trend when the burial depth is deeper than 3300m.These characteristics indicated that clay minerals are diagenetic minerals and there are conversions among the four types.Therefore form shallow to deep,three diagenetic mineral assemblage zones can be divided based on the characteristics of carbonate and clay minerals in mudstone.Namely,smectite+illite/smectite zone in the depth of 2000-2500m;kaolinite+illite/smectite zone in the depth of 2500-3300m and illite+chlorite+carbonate zone below 3300m.Previous studies showed that kaolinite is stable under acidic conditions,while other clay minerals and carbonate are stable under alkaline conditions.Hence according to mineral assemblages feature,it was inferred that diagenetic environment of mudstonehasundergonethechangeof alkaline-acid-alkaline.For the organic matter with different chemical properties in mudstone,the hydrocarbon generation will be different in the acidic and alkaline diagenetic environment even if the conditions of temperature and pressure are the same.Therefore,for hydrocarbon generation we should not only focus on thermal effect,but also pay more attention to the differences of diagenetic environment which have great significance for the understanding of hydrocarbon generation,hydrocarbon expulsion and reservoir formation in mudstone.  相似文献   

16.
李萧  王丙贤 《地质与资源》2020,29(2):152-160
渝东南地区是我国页岩气勘探开发的重点地区.以彭水地区彭页1井龙马溪组泥页岩为研究对象,结合钻井资料、全岩分析、薄片观察、扫描电镜、核磁共振与氮气吸附等实验,对页岩岩矿特征、有机地球化学、储层特征与含气性进行系统分析.研究表明:彭页1井龙马溪组泥页岩厚度约80 m,脆性矿物含量高,以石英为主,约占48%,其次为长石与碳酸盐矿物;黏土矿物占29%,以伊利石为主,占黏土矿物总量的65%,与美国Barnett页岩矿物成分及含量相近,有利于后期压裂.该井区页岩有机质类型为II2型,TOC为1%~3%,平均1.84%,成熟度2.5%~4.4%.储集空间多为纳米级—微米级孔隙,有机质孔和粒间孔为主,可见粒内溶蚀孔、微裂隙、黏土矿物层间孔和少量晶间孔,平均孔隙度2.43%,孔径以微小孔为主,介于2~80 nm,渗透率主要集中在0.005~0.01 mD,含气性中等—偏低,解析气量平均1.15 m3/t,饱和吸附量(VL)平均2.56 m3/t,均低于Barnett页岩和焦页1井的含气量,有机质丰度、储层孔隙度是该区页岩含气量的主控因素,其次还受脆性矿物和黏土矿物含量影响.  相似文献   

17.
The Songliao Basin is one of the most important petroliferous basins in northern China. With a recent gradual decline in conventional oil production in the basin, the exploration and development of unconventional resources are becoming increasingly urgent. The Qingshankou Formation consists of typical Upper Cretaceous continental strata, and represents a promising and practical replacement resource for shale oil in the Songliao Basin. Previous studies have shown that low-mature to mature Qingshankou shale mainly preserves type Ⅰ and type Ⅱ1 organic matter, with relatively high total organic carbon(TOC) content. It is estimated that there is a great potential to explore for shale oil resources in the Qingshankou Formation in this basin. However, not enough systematic research has been conducted on pore characteristics and their main controlling factors in this lacustrine shale reservoir. In this study, 19 Qingshankou shales from two wells drilled in the study area were tested and analyzed for mineral composition, pore distribution and feature evolution using Xray diffraction(XRD), scanning electron microscopy(SEM), low-pressure nitrogen gas adsorption(N2-GA), and thermal simulation experiments. The XRD results show that clay, quartz, and feldspar are the dominant mineral constituents of Qingshankou shale. The clay minerals are mostly illite/smectite mixed layers with a mean content of 83.5%, followed by illite, chlorite, and kaolinite. There are abundant deposits of clay-rich shale in the Qingshankou Formation in the study area, within which many mineral and organic matter pores were observed using SEM. Mineral pores contribute the most to shale porosity;specifically, clay mineral pores and carbonate pores comprise most of the mineral pores in the shale. Among the three types of organic matter pores, type B is more dominant the other two. Pores with diameters greater than 10 nm supply the main pore volume;most are half-open slits and wedge-shaped pores. The total pore volume had no obvious linear relationship with TOC content, but had some degree of positive correlation with the content of quartz + feldspar and clay minerals respectively. However, it was negatively correlated with carbonate mineral content. The specific surface area of the pores is negatively related to TOC content, average pore diameter, and carbonate mineral content. Moreover, it had a somewhat positive correlation with clay mineral content and no clear linear relationship with the content of quartz + feldspar. With increases in maturity, there was also an increase in the number of carbonate mineral dissolution pores and organic matter pores, average pore diameter, and pore volume, whereas there was a decrease in specific surface area of the pores. Generally, the Qingshankou shale is at a low-mature to mature stage with a TOC content of more than 1.0%, and could be as thick as 250 m in the study area. Pores with diameters of more than 10 nm are well-developed in the shale. This research illustrates that there are favorable conditions for shale oil occurrence and enrichment in the Qingshankou shale in the study area.  相似文献   

18.
研究储层物性控制因素对储层评价至关重要.致密混积岩储层所含矿物成分多样, 孔隙结构复杂, 造成储层物性变化大.辽河坳陷西部凹陷雷家地区沙河街组四段位于浅湖-半深湖相带, 其中的杜家台油层杜三段发育方沸石、白云石、长石、石英等多种组分混积储层, 具有较大的致密油资源潜力.根据矿物成分可以将杜三段储层分为泥晶云岩、细粒混积岩和方沸石岩3大类.铸体薄片分析与扫描电镜分析结合, 发现3大类储层均发育中微米孔(孔喉半径>10 μm)-微微米孔(孔喉半径为1~10 μm)-纳米孔(孔喉半径<1 μm)多级孔喉系统.中微米孔主要为粒间溶孔及白云石、方沸石晶间和晶内溶孔.微微米孔主要为白云石晶间孔、碎屑矿物粒间孔及部分微溶孔.大部分白云石晶内溶孔、粘土矿物晶间孔属于纳米孔.高压压汞分析结果表明, 3类致密储层的孔径均具双峰特征.泥晶云岩类储层微微米孔的孔径峰值约为4 μm, 纳米孔的孔径峰值约为10 nm, 二者所占比例分别为25.1%和63.1%.细粒混积岩主要发育中微米孔及纳米孔, 所占比例分别为20.9%和79.1%.方沸石岩类储层的中微米孔和纳米孔所占比例分别为12.1%和85.9%.不同矿物成分发育的孔隙类型及大小控制了混积岩储层的整体孔喉结构, 是造成混积岩储层孔径分布呈双峰特征的主要原因.由于白云石晶间孔连通性好, 方沸石主要以充填物的形式出现, 长石-石英碎屑易溶蚀, 粘土矿物主要发育纳米级晶间孔等原因, 致密混积岩储层孔隙度与方沸石含量负相关, 与长石-石英碎屑含量正相关.在储层中裂缝广泛发育的背景下, 致密混积岩矿物成分与渗透率相关性差.  相似文献   

19.
岩石的组分、结构和颗粒排列,决定了孔隙的发育特征,但从结构-成因角度探讨碎屑颗粒含量及其排列样式对泥页岩孔隙分布影响的研究较少。以黔西北志留系龙马溪组黑色泥页岩为例,基于薄片分析、XRD分析和扫描电镜等分析结果,根据碎屑颗粒排列方式,将泥页岩分为“颗粒分散状”和“纹层状”两种类型,提出泥页岩孔隙结构的概念模型,由此分析碎屑颗粒含量对孔隙发育的影响。对于“颗粒分散状”泥页岩来讲,碎屑颗粒含量低于52.4%时,主要发育黏土矿物微孔隙,孔隙度随颗粒含量的增加而减小;当碎屑颗粒含量达到52.4%时,颗粒间全部为黏土矿物充填,孔隙度最低;当碎屑颗粒含量继续增加时,粒间孔隙大量出现,孔隙度也将迅速增大。对于“纹层状”泥页岩,颗粒含量的增加会导致砂质纹层内的粒间孔隙不断增多,孔隙度也随之增大,逐渐向常规的碎屑岩储层转变。本模型有助于加深对泥页岩、致密砂岩和常规砂岩孔隙发育机理的理解,对非常规储层的预测评价也有重要启示。  相似文献   

20.
The comparative study of organic matter in carbonate rocks and argillaceous rocks from the same horizon indicates that the organic thermal maturities of carbonate rocks are much lower than those of argillaceous rocks .Ana extensive analysis of extracted and inclused organic matter from the same sample shows that inclused organic matter is different from extracted organic matter,and the thermal maturity of the former is usually lower than that of the latter in terms of biomarker structural parameters.It seems that carbonate mineras could preserve organic matter and retard organic maturation.The inclused organic matter,abundant in most carbonate rocks,will be released from minerals and transformed into oil and gas during the high-thermal maturity stage.  相似文献   

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