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1.
张云峰  王清晨  李忠 《地质科学》2006,41(1):143-151
应用薄片、铸体和阴极发光等室内分析技术,对鲁西隆起奥陶系碳酸盐岩及济阳坳陷潜山奥陶系钻井岩心样品进行了成岩作用及储集特征详细研究。奥陶系碳酸盐岩原生孔隙消失殆尽,次生成因的孔、洞和缝是主要储集空间。其中裂缝储集层在各层段均有发育,但白云岩段优于其它岩性段;构造缝主要分布在构造轴部和断裂带附近,溶蚀缝在不整合面附近较为发育。孔洞型储集层主要发育在白云岩层段,以晶间孔、晶间溶孔和晶内溶孔为主要储集空间;有少量有效孔隙分布在灰岩段,以铸模孔、粒内溶孔和粒内孔为主。马家沟组八陡段顶部发育溶蚀角砾岩、纹层状结晶灰岩,砾间缝、晶间缝和溶洞为主要储集空间。白云岩段是奥陶系碳酸盐岩主要储集层段,构造因素、岩性和成岩作用(尤其是胶结作用和溶蚀作用)是造成奥陶系碳酸盐岩储集层剖面分布差异性的主要控制因素。  相似文献   

2.
塔河油田二区奥陶系碳酸盐岩油藏储集体类型由缝洞型、高能微孔隙型、压溶孔缝型组成。通过岩心薄片观察并结合地震、测井、录井和试油等资料,查明了受次生溶蚀作用控制的岩溶缝洞型、受高能沉积相带控制的微孔隙型和受压溶作用及白云化作用控制的压溶孔缝型储层的特征和分布,并且识别出溶蚀孔洞、溶蚀缝、构造缝、粒内孔、粒间孔、铸模孔、晶间孔、晶内孔、缝合线和微裂缝10种储集空间。实际上,上述储集体主要为高能沉积相带形成的颗粒灰岩演化而成,这些颗粒灰岩经过埋藏压实和胶结等作用形成了以次生微孔隙为主的微孔隙型储集体,经过压溶和白云岩化作用形成了受成岩演化控制的压溶孔缝型储集体,在塔北奥陶系岩溶期形成了岩溶缝洞型储集体。塔河油田二区南部受沉积相展布和成岩作用影响,颗粒灰岩和云斑状灰岩发育;北部古隆起风化剥蚀作用较强,发育大型溶洞储层;东部斜坡带古河流发育,溶蚀缝洞储层多沿古河道分布;西部受深大断裂控制,溶蚀孔洞沿断裂垂向发育。  相似文献   

3.
多孔介质储层表征技术应用岩心分析、测井分析、地震分析、岩样实验分析、生产动态分析等多种分析方法,表征不同尺度储集空间及其组合特征,最终评价有利储层。应用该技术,识别塔中地区北斜坡奥陶系良里塔格组孔隙型、孔洞型、孔隙-孔洞型、缝洞型和孔缝洞型5类储层,并表征了各类储层的孔喉结构、孔渗性和产能特征。结果表明:孔隙-孔洞型储层的孔喉结构发育大孔大喉的孔喉结构,优于孔隙型和孔洞型储层;裂缝对各类储层起到改善作用,裂缝的发育增加了储层孔渗性和连通性;储层产能特征受储层类型及规模影响,台缘孔缝洞型、孔隙-孔洞型储层以高产稳产为特征,台内缝洞型储层以中产较稳产为特征,台内孔洞型储层以中低产不稳产为特征。各类储集空间组合类型中,台缘孔缝洞型、孔隙-孔洞型储层是最有利储层,台内缝洞型是目前台内勘探的主要类型,台内孔隙型、孔洞型储层在裂缝发育情况下可以形成潜力储层。  相似文献   

4.
桂中坳陷泥盆纪生物礁储层特征及演化史   总被引:1,自引:0,他引:1       下载免费PDF全文
桂中坳陷泥盆纪生物礁滩发育,桂中1井钻探证实该区存在优质生物礁灰岩和白云岩储层。野外露头、显微照片和扫描电镜等分析测试手段表明,该区泥盆纪生物礁储集空间主要包括孔隙、裂缝和溶洞。孔隙类型有粒内溶孔、骨架孔、粒间孔、溶孔、缝合线伴生溶孔等,以晶间溶孔、晶间孔及非组构控制的溶蚀孔、洞、缝为主,储层类型主要为裂缝型、裂缝-孔隙型和孔隙型。沉积环境、成岩作用及构造裂缝控制有利储层的发育,现今储集空间以埋藏溶蚀孔隙和保留下来的残余孔、洞、缝为主。地球化学和成岩作用研究表明,储层孔隙演化与油气充注密切相关,可能发生两期油气充注。储层焦沥青的形成主要是由于地层深埋造成原油热裂解。因此,该区油气勘探应以原油裂解天然气为主,寻找具有保存条件的岩性体。  相似文献   

5.
岩溶发育的气候条件是决定碳酸盐岩油气田储集空间和运移通道类型的主要因素,溶缝和溶洞是古潮湿环境下塔里木盆地奥陶系碳酸盐岩岩溶发育的产物。通过对塔里木盆地北缘奥陶系碳酸盐岩古风化壳岩溶发育特征的调查与分析,掌握了溶缝与溶洞的发育分布规律,认为溶洞与裂缝并不是孤立分布的,溶洞与周边有成因联系的影响带(裂缝密集发育带)一起共同组成一个有机的缝洞系统,从而构成了良好的缝洞型储集层。将溶洞与裂缝有机的结合起来,建立了碳酸盐岩风化壳储集体的非均质分布模型—— 缝洞型油气藏结构模式,并提出将裂缝和溶洞比较集中的彼此互相连通的区域作为油元来研究,有利于从宏观上认识缝洞型油气藏的实质。   相似文献   

6.
塔河油田奥陶系鹰山组和一间房组发育大规模生物扰动碳酸盐岩储集层。在岩心观测和详细描述的基础上,通过岩石薄片的偏光显微镜、阴极发光显微镜观测和柱塞样品的X射线显微镜扫描与分析,实现了塔河油田奥陶系生物扰动碳酸盐岩储集层孔隙结构的数字化表征与连通性分析。结果表明:(1)由于生物扰动区潜穴充填物和围岩基质的岩石组构差异大,使这类储集层呈现极强的非均质性。(2)生物潜穴充填物主要由白云石晶体组成,白云石晶体以自形、半自形晶体为主;白云石晶间孔隙发育,孔隙体积集中于10~100μm3,喉道半径一般小于10μm,喉道长度一般小于40μm,白云石晶间孔为这类储集层的主要储集空间,围岩基质孔隙不发育。(3)生物潜穴充填物孔隙度介于7%~10%,孤立孔隙虽然数量多,但连通孔隙体积占比大,且连通孔隙拓扑结构复杂,孔隙连通性很好;通过表征单元体的尺度粗化升级分析发现,这类储集层的孔隙局部连通较好,而整体连通性相对较差。该研究真实、直观、准确刻画了生物扰动碳酸盐岩储集层微观孔隙结构特征,可为后续这类生物扰动碳酸盐岩储集层的微观渗流模拟研究提供所需的特征参数;未来将这类生物扰动碳酸盐岩储集层微观尺度上的孔隙结构数字化表征和渗流模拟结果与宏观分布规律相结合并应用到实际储集层评价中,可为这类储集层的油气资源量估算、开发方案优选、产能预测和提高采收率提供指导。  相似文献   

7.
基于CT成像技术的白云岩储层微观表征   总被引:1,自引:0,他引:1  
震旦系灯影组四段是四川盆地安岳气田主力勘探产层之一,是一套受丘滩体发育和桐湾II幕表生岩溶作用共同控制的储层。灯四段储层纵横向非均质性强,相较于台缘带灯四段孔洞型优质储层连续发育的特征,台内区丘滩相沉积不足、岩溶作用效果变差,储层厚度减薄,品质降低,常规手段在对此类储层性质的研究上具有一定的局限性。为此,应用X射线CT扫描成像与数字岩心技术,以川中磨溪—龙女寺台内地区震旦系灯影组四段白云岩岩溶储层为例,将储集空间分为孔隙和喉道,从定性和定量的角度进行储层系统表征。结果表明:研究区储层溶蚀孔隙、溶蚀孔洞、裂缝相间发育,裂缝切割相邻孔洞对提高储层连通性具有重要作用。孔喉相互位置关系以及孔喉半径、长度、体积等参数共同决定了储层品质,孔隙发育数量及孔径分布特征决定储集空间大小,喉道发育数量、喉道半径、单喉道长度分布情况影响储层中孔隙沟通能力即决定了储层有效性。磨溪东—龙女寺台内区裂缝发育区孔洞型储集空间是台内优质储层关键勘探目标。  相似文献   

8.
塔河油田奥陶系鹰山组和一间房组发育大规模生物扰动碳酸盐岩储集层。在岩心观测和详细描述的基础上,通过岩石薄片的偏光显微镜、阴极发光显微镜观测和柱塞样品的X射线显微镜扫描与分析,实现了塔河油田奥陶系生物扰动碳酸盐岩储集层孔隙结构的数字化表征与连通性分析。结果表明: (1)由于生物扰动区潜穴充填物和围岩基质的岩石组构差异大,使这类储集层呈现极强的非均质性。(2)生物潜穴充填物主要由白云石晶体组成,白云石晶体以自形、半自形晶体为主;白云石晶间孔隙发育,孔隙体积集中于10~100μm3,喉道半径一般小于10μm,喉道长度一般小于40μm,白云石晶间孔为这类储集层的主要储集空间,围岩基质孔隙不发育。(3)生物潜穴充填物孔隙度介于7%~10%,孤立孔隙虽然数量多,但连通孔隙体积占比大,且连通孔隙拓扑结构复杂,孔隙连通性很好;通过表征单元体的尺度粗化升级分析发现,这类储集层的孔隙局部连通较好,而整体连通性相对较差。该研究真实、直观、准确刻画了生物扰动碳酸盐岩储集层微观孔隙结构特征,可为后续这类生物扰动碳酸盐岩储集层的微观渗流模拟研究提供所需的特征参数;未来将这类生物扰动碳酸盐岩储集层微观尺度上的孔隙结构数字化表征和渗流模拟结果与宏观分布规律相结合并应用到实际储集层评价中,可为这类储集层的油气资源量估算、开发方案优选、产能预测和提高采收率提供指导。  相似文献   

9.
塔河油田奥陶系储层研究   总被引:13,自引:0,他引:13  
刘文  阎相宾  李国蓉 《新疆地质》2002,20(3):201-204
通过钻井岩心和铸体薄片观察,根据下奥陶统灰岩基质的孔渗特征和孔隙结构特征,并与基质作为储层的下限对照裂隙、洞穴和溶蚀孔洞不发育的灰岩基质,发现尽管有微孔隙的发育,但其孔隙度、渗透率、最大孔喉半径、饱和度、中值喉道半径等参数值远低于储层下限值,基本不具备储集和生产油的意义。而下奥陶统灰岩段储集和生产油气的有效储渗空间按成因、形态及大小可划分为溶蚀孔隙、溶蚀孔洞、大型洞穴、风化裂隙、构造裂隙等5类,构成5种性质有别的储层,即洞穴型储层、风化裂隙型储层、构造裂隙型储层、台缘滩相颗粒灰岩溶蚀孔隙型储层和地表残积物裂隙-孔隙(洞)型储层。从而使塔河油田奥陶系储层有了一个比较系统、完善的划分标准。研究和搞清这些有效储层的成因及分布规律,对塔河田区奥陶系的油气勘探开发至关重要。  相似文献   

10.
通过岩芯观察,镜下薄片扫描电镜分析、成像测井实验等手段,对储层的储层物性特征进行了研究,研究认为:志丹南部地区马家沟组,岩心易破碎,最大孔隙直径为1500μm,主要分布于20-100μm 之间,主要发育为孔隙型储层。以晶间溶孔、膏模孔、溶孔、微孔等次生孔隙为主,微缝、破裂缝、溶缝该区较为发育,增加了孔渗连通性。孔渗相关性差,储集性能差。  相似文献   

11.
In this study, the types of micropores in a reservoir are analyzed using casting thin section(CTS) observation and scanning electron microscopy(SEM) experiments. The high-pressure mercury injection(HPMI) and constant-rate mercury injection(CRMI) experiments are performed to study the micropore structure of the reservoir. Nuclear magnetic resonance(NMR), gas-water relative seepage, and gas-water two-phase displacement studies are performed to examine the seepage ability and parameters of the reservoir, and further analyses are done to confirm the controlling effects of reservoir micropore structures on seepage ability. The experimental results show that Benxi, Taiyuan, Shanxi, and Shihezi formations in the study area are typical ultra-low porosity and ultra-low permeability reservoirs. Owing to compaction and later diagenetic transformation, they contain few primary pores. Secondary pores are the main pore types of reservoirs in the study area. Six main types of secondary pores are: intergranular dissolved pores, intragranular dissolved pores, lithic dissolved pores, intercrystalline dissolved pores, micropores, and microfracture. The results show that reservoirs with small pore-throat radius, medium displacement pressure, and large differences in pore-throat structures are present in the study area. The four types of micropore structures observed are: lower displacement pressure and fine pores with medium-fine throats, low displacement pressure and fine micropores with fine throats, medium displacement pressure and micropores with micro-fine throats, and high displacement pressure and micropores with micro throats. The micropore structure is complex, and the reservoir seepage ability is poor in the study areas. The movable fluid saturation, range of the gas-water two-phase seepage zone, and displacement types are the three parameters that well represent the reservoir seepage ability. According to the characteristic parameters of microscopic pore structure and seepage characteristics, the reservoirs in the study area are classified into four types(Ⅰ–Ⅳ), and types Ⅰ, Ⅱ, and Ⅲ are the main types observed. From type Ⅰ to type Ⅳ, the displacement pressure increases, and the movable fluid saturation and gas-water two-phase seepage zone decrease, and the displacement type changes from the reticulation-uniform displacement to dendritic and snake like.  相似文献   

12.
塔里木盆地东部寒武系白云岩储层及相控特征   总被引:4,自引:2,他引:2  
根据钻井岩心、薄片、物性等数据资料,对塔里木盆地东部寒武系白云岩储层特征进行分析,并探讨沉积相对储层形成的控制作用。塔东地区寒武系白云岩可分为交代白云岩及缝洞充填型白云岩两大类型,交代白云岩又可分为泥粉晶白云岩、细—中晶白云岩、粗晶白云岩以及角砾状白云岩等次级类型。白云岩的储集空间主要以晶间孔隙、溶蚀孔隙、缝合线孔隙和裂缝为主,裂缝起到了连通孔隙的作用,储集空间组合类型以裂缝—孔洞型为主。研究表明:交代白云岩具有明显的相控特点,东侧的英东—罗西一带的交代白云岩主要发育在内缓坡背景的台地边缘浅滩、开阔台地及潮坪相带,而在西侧的古城4井一带的交代白云岩以角砾状白云岩为主,发育于环边陆棚的礁前斜坡带。白云岩储层发育除受后期成岩作用(白云化作用、胶结作用、溶蚀作用)和断裂等因素影响外,主要受早期沉积相带的控制,内缓坡是储层发育的有利部位。  相似文献   

13.
四川盆地西南部中三叠统雷口坡组气藏主要的储层类型为碳酸盐颗粒滩储层。其主要发育两种储渗形式:砂屑云岩储层以残余粒间孔和粒间溶孔为储集空间,喉道以缩颈喉道和管束状喉道为主,孔喉配置关系较好,储层多表现为中孔中渗的特征;鲕粒灰岩储层和残余生屑云岩储层以粒内溶孔、铸模孔和生物体腔孔为储集空间,喉道欠发育,储层多表现为中孔、渗透率偏低的特征。进一步对储层的控制因素分析表明,颗粒滩为储层提供了早期的物质来源;单滩体的厚薄控制着储层的储渗形式;原生粒间孔的保存和同生期大气淡水淋溶作用分别是形成这两种储渗形式的颗粒滩储层的关键。  相似文献   

14.
With the aim of better understanding the tight gas reservoirs in the Zizhou area of east Ordos Basin, a total of222 samples were collected from 50 wells for a series of experiments. In this study, three pore-throat combination types in sandstones were revealed and confirmed to play a controlling role in the distribution of throat size and the characteristics of gas-water relative permeability. The type-Ⅰ sandstones are dominated by intercrystalline micropores connected by cluster throats, of which the distribution curves of throat size are narrow and have a strong single peak(peak ratio 30%). The pores in the type-Ⅱ sandstones dominantly consist of secondary dissolution pores and intercrystalline micropores, and throats mainly occur as slice-shaped throats along cleavages between rigid grain margins and cluster throats in clay cement.The distribution curves of throat size for the type-Ⅱ sandstones show a bimodal distribution with a substantial low-value region between the peaks(peak ratio 15%). Primary intergranular pores and secondary intergranular pores are mainly found in type-Ⅲ samples, which are connected by various throats. The throat size distribution curves of type-Ⅲ sandstones show a nearly normal distribution with low kurtosis(peak ratio 10%), and the micro-scale throat radii(0.5 μm) constitute a large proportion. From type-Ⅰ to type-Ⅲ sandstones, the irreducible water saturation(Swo) decreased; furthermore, the slope of the curves of Krw/Krg in two-phase saturation zone decreased and the two-phase saturation zone increased,indicating that the gas relative flow ability increased. Variations of the permeability exist in sandstones with different porethroat combination types, which indicate the type-Ⅲ sandstones are better reservoirs, followed by type-Ⅱ sandstones and type-Ⅰ sandstones. As an important factor affecting the reservoir quality, the pore-throat combination type in sandstones is the cumulative expression of lithology and diagenetic modifications with strong heterogeneity.  相似文献   

15.
砂砾岩储层中的低渗—特低渗砂岩对储层整体油气运聚、成藏起到了重要影响。利用恒速压汞技术探讨石臼坨凸起陡坡带东三段扇三角洲砂砾岩储层中不同渗透率级别的低渗—特低渗砂岩储层微观孔喉分布特征及不同尺度孔喉的物性贡献。研究表明:(1)低渗—特低渗砂岩和常规砂岩相比具有孔隙大小中等,喉道半径偏小,孔喉比异常大的特点。渗透率受孔喉半径变化影响更明显,大半径喉道数量和分布是影响储层渗流能力的关键因素;(2)低渗—特低渗砂岩孔隙主控进汞区是控制流体流动最有效最主要的空间,渗透率越高,孔隙主控区的喉道半径范围越大。孔喉过渡进汞区进汞贡献主要来自孔隙和喉道联合进汞,随着喉道半径减小,细喉道逐渐成为流体储集和流动的主要空间;喉道主控区渗透率贡献也很低,微细喉道及微喉道是进汞主体空间,孔隙贡献基本为0,该阶段流体流动能力受喉道半径变化影响较大。随着渗透率增加,低渗—特低渗砂岩渗流能力的决定性喉道半径值从1~2μm增大到3~4μm。基于恒速压汞技术的低渗—特低渗砂岩微观孔喉定量表征填补了渤海海域相关研究的空白,从而有助于实现该类储层全面准确的储层评价。  相似文献   

16.
致密砂岩储层流体可动性对油气开发、预测和评价具有重要意义。查阅国内近十年相关成果,对致密储层流体可动性的相关参数、测试方法、分布特征及其影响因素进行了分析。发现致密砂岩储层的弛豫时间T2谱截止值为0.540~41.600 ms,可动流体孔隙度为0.12%~14.35%,可动流体饱和度为2.16%~90.30%,Ⅲ—Ⅳ类储层是致密砂岩储层的主要类型,致密储层可动流体的孔喉半径下限为0.013~0.110 μm,高压压汞、核磁共振、恒速压汞识别的孔喉半径下限分别为0.037 5、0.070 0~0.200 0、0.120 0 μm,水膜厚度为0.05~1.00 μm。统计分析显示,核磁共振、恒速压汞测得致密储层可动流体饱和度偏低;水膜厚度是影响致密砂岩储层流体渗流的主要因素;低煤阶煤层可动流体饱和度最高,致密砂岩储层次之,页岩储层最低;致密砂岩储层约是页岩储层、低煤阶煤层可动流体孔隙度的10倍;砂岩储层可动流体赋存于孔隙和喉道中,受孔隙和喉道共同控制;致密砂岩具有喉道分布集中,有效孔隙发育差,孔隙大部分为喉道半径小于1.000 μm的微细孔;喉道半径越集中、孔喉半径比越小、有效喉道半径越大,越有利于储层流体的渗流;砂岩渗透率(<2×10-3 μm2)越低,可动流体参数衰减越快;渗透率(>2×10-3 μm2)越高,可动流体参数升高越缓慢;喉道半径是控制致密砂岩储层流体可动性的主要因素。  相似文献   

17.
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   

18.
李峰峰  郭睿  余义常  宋世琦 《沉积学报》2020,38(5):1076-1087
为明确伊拉克M油田白垩系Mishrif组碳酸盐岩储层成因,基于岩芯观察、铸体薄片、物性分析及测井资料,通过沉积微相分析确定研究区沉积环境,系统分析不同沉积相储层特征。结果表明:M油田Mishrif组为带障壁的缓坡环境,包括潟湖边缘坪、潟湖、台内滩、滩后、潮道、浅滩、滩前及开阔浅海。中、高渗储层主要发育于浅滩和滩前等高能沉积环境,储集层以粒间孔和粒间溶孔为主,发育大孔喉,生屑滩储集层和滩前储集层物性分布区间较大。潟湖边缘坪、潟湖、台内滩及滩后等低能沉积环境以低渗和特低渗储集层为主,孔隙度跨度大,孔隙类型主要为基质微孔、颗粒微孔、铸模孔和粒间孔,以微喉和中喉为主,喉道分选较好。综合分析认为:沉积相通过控制沉积物的结构组分控制了岩石的成岩演化。高能沉积型储集层以溶蚀作用和胶结作用为主,储集层物性是胶结物对孔隙和喉道充填封堵程度的函数;低能沉积型储层是生物多样性和差异成岩作用的结果,选择性溶蚀作用、与生物扰动相伴生的白云化作用、泥晶化作用、胶结作用、非选择性溶蚀作用和混合白云化作用形成的复杂孔隙控制了储集层物性。  相似文献   

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