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近几年,随着四川盆地海相碳酸盐岩储层勘探的不断加强,碳酸盐岩储层强的非均质性已成为制约礁滩气藏勘探开发的现实问题。以川东宣汉盘龙洞长兴组典型台缘礁滩剖面为研究对象,通过对典型台缘礁滩野外剖面的精细观察,结合镜下薄片及岩矿资料分析,重点探讨了盘龙洞礁滩储层纵向非均质性特征及成因。剖面上礁滩体垂向上存在很强的旋回性和储层非均质性,其储集岩分布、储层厚度、白云岩化程度、溶蚀作用等受海平面周期性的升降变化影响而呈现周期性变化。礁滩储层非均质性受高能相带、海平面升降变化和建设性成岩作用的共同控制,高能相带控制储层原生孔隙的发育,决定了储层的沉积非均质性,白云岩化和溶蚀作用有利于礁滩体储层的形成,大气淡水淋滤改造对于优化储层具有关键作用,海平面升降变化决定了礁滩体旋回性发育,而建设性成岩作用的选择性改造深化了储层非均质性。  相似文献   
2.
四川宣汉盘龙洞晚二叠世生物礁古油藏剖面序列   总被引:14,自引:3,他引:11       下载免费PDF全文
盘龙洞生物礁发育于上二叠统长兴组的中上部,厚度约80m。生物礁主要为浅灰色块状海绵障积岩、海绵骨架岩。造礁生物主要为房室海绵、水螅、苔藓虫等;附礁生物主要为腕足、瓣鳃及腹足等;造架生物含量约为38%~50%;充填物为泥晶方解石,含量为50%~70%;孔洞丰富,多被方解石晶体充填,孔洞间连通性好。该生物礁及其上下地层均有大量的沥青,揭示着有过油气的运移过程。沥青充填可以分为两期:第一期充填于生物骨架孔隙、粒间孔隙、海绵体腔和都分其他生物体腔孔隙中;第二期主要充填于后期裂骧和次生孔隙中,该期的沥青广泛分布于生物礁和整个礁的盖层之中(包括亮晶砂屑灰岩和白云岩),规模较大,含沥青的地层总厚度达120m左右。  相似文献   
3.
结合区域构造、地层概况、岩相古地理等方面的背景资料,对宣汉盘龙洞上二叠统长兴组生物礁地层剖面进行了观测描述。通过室内镜下岩石薄片鉴定分析,识别出主要岩石类型为礁灰岩、礁云岩、生屑灰岩、颗粒灰岩及晶粒白云岩。根据露头观察和室内镜下岩石薄片鉴定分析,结合岩石学、古生物等沉积相标志的研究,认为该剖面发育开阔台地、台地边缘生物礁和台地边缘浅滩三种沉积相类型,其中台地边缘生物礁发育,可进一步识别出礁基、礁核和礁前亚相,礁核以骨架礁和障积礁为主;台地边缘浅滩进一步划分为粒屑滩、鲕粒滩等亚相。初步总结出了该剖面的沉积相模式,并对该剖面的沉积演化序列和识别标志进行了讨论。  相似文献   
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The well-known Permian Changhsingian calcisponge reef located at Panlongdong section,Xuanhan county,northeastern Sichuan Basin has attracted wide attention.Due to severe dolomitization and poor quality of the fossils,the P-T boundary in this section is difficult to determine.This study,for the first time,recognized six communities in the Upper Permian Changhsingian Changxing Formation through the Lower Triassic Induan Feixianguan Formation of the Panlongdong section.They are Bryozoan-Archaeolithoporella-calcisponge Community,Calcareous green algae-foraminifer-crinoid Community,Microgastropod-foraminifer Community,Ostracod-microgastropod-cystic microbe Community,Ostracod-small brachiopod Community,and Non-calcified cyanobacteria Community.By using community replacement and palaeoenvironmental analysis,for the first time,we set the P-T boundary of the Panlongdong section at the middle of the calcimicrobialite containing cystic microbes.The community replacement sequence in the Panlongdong section is similar to that in other contemporaneous sections in reef areas of South China,indicating universal palaeoenvironmental changes during the Permian-Triassic transition.The results show that:(1)Changhsingian calcisponge reefs in South China generally vanished before the mass extinction and may be related to the large regression in the Late Permian.(2)The Calcareous green algae-foraminifer-crinoid Community replaced reef community and continued till the mass extinction.The mass extinction was probably related to the global sea-level drop.(3)The first aftermath community was dominated by specialized microgastropods,followed by the microbes,and then by the specialized microgastropods and small brachiopods.The succession of the three communities reflected the change in environmental conditions from dysoxic to anoxic and again to dysoxic.(4)In the Early Triassic,the relict community in shallow sea had very low diversity and low abundance,and was dominated by crinoids,gastropods,and bivalves.  相似文献   
5.
盘龙洞剖面长兴组与普光气田同属于川东北的碳酸盐台地边缘相礁滩相层序,其岩石地层和沉积相研究结果对于认识普光气田、龙岗气田的储层发育和分布规律具有很好的参考作用。根据对薄片的仔细观察分析以及对相关地层的认识,对剖面长兴组的结晶白云岩地层进行了原岩恢复。根据古生物面貌及岩石组构特征,将盘龙洞剖面长兴组自下而上划分四段:下生屑岩段、礁灰岩段、上生屑岩段、微生物岩段。下生屑岩段包括了下部含小型有孔虫的深水陆棚相泥晶灰岩、以及上部含腕足类和棘皮类的浅水陆棚相生屑泥粒岩。礁灰岩段厚达108m,由海绵骨架岩和障积岩组成。上生屑岩段厚约45.3m,已经白云石化为细晶白云岩,导致前人往往误划分为蒸发台地相。仔细观察后仍然可以进行原岩恢复,主要由生屑泥粒岩、粒泥岩组成,含棘皮类、有孔虫、粗枝藻、等组成的群落。微生物岩段厚约8.7m,不仅地层以不规则薄层状为特征,而且含有特征的微生物群落。与普光6井、湖北利川见天坝长兴组剖面对比后发现,它们有相似的沉积层序:下部的深水相灰岩、中部的生物礁岩、上部的开阔台地相或相似环境的生屑灰岩。这应代表台缘礁滩相带的典型层序,可作为认识台缘礁滩相储层的基础。前人研究未能识别长兴组顶部的微生物岩段。这直接导致了二叠系—三叠系界线的无法正确确定。本文提出可以把微生物岩段作为一个岩石地层单位对待,可以作为确定二叠系—三叠系界线的标志层,把界线放在微生物岩段的中部。  相似文献   
6.
川东北地区上二叠统盘龙洞生物礁成岩作用研究   总被引:2,自引:0,他引:2  
本文对宣汉盘龙洞上二叠统生物礁古油气藏成岩作用进行了详细的研究。其主要成岩作用类型有胶结作用、新生变形作用、白云岩化作用、去白云岩化作用以及压溶和溶解作用等。根据岩石中胶结物的胶结结构和矿物特征,初步判断该生物礁主要经历了海底成岩环境、大气淡水渗流潜流环境、海水与淡水混合带成岩环境和埋藏成岩环境。该区的白云岩主要是混合白云岩化形成的。值得强调的是,该区白云岩化作用和溶蚀作用对该生物礁岩石孔隙度的增加贡献很大,提供了良好的油气储集空间,这对恢复该生物礁储层孔隙发育历史,以及油气勘探和评价都有很重要的意义。  相似文献   
7.
In conventional studies of tracing dolomitization and diagenetic fluids, REEs of dolomites were widely used as been normalized by PAAS, NASC or chondrite. However, most dolomites are formed in seawater or seawater-derived fluids. Thus, we conduct a new attempt to normalize the REEs of dolomite using seawater standard, based on case studies on 36 Triassic limestone–dolomite samples from the Geshan section of southeast China and 26 Permian–Triassic dolomite samples from the Panlongdong section of northeastern Sichuan Basin, southwest China.The Geshan seawater-normalized (SN) REE patterns are characterized by notable positive CeSN (average CeSN/Ce* = 6.823, SD = 0.192) and negative PrSN anomalies (average PrSN/Pr* = 0.310, SD = 0.010), and slightly negative GdSN anomalis (average GdSN/Gd* = 0.864, SD = 0.053), with no obvious EuSN anomaly (average EuSN/Eu* = 1.036, SD = 0.094). The signatures of REE patterns barely changed during the dolomitization process. For the REE compositions of the Panlongdong dolomite, it can be found that (1) the recrystallization process can result in varied total REE concentrations (between 7.16 ppm and 37.87 ppm), but do not alter the REE patterns, including consistent positive CeSN anomalies (average = 4.074, SD = 0.27) and LREE enrichment (average NdSN/YbSN = 3.164, SD = 0.787); (2) meteoric incursion can reverse Ce anomaly, from the strong positive Ce anomalies (CeSN/Ce* = 5.059) to slightly positive (CeSN/Ce* = 2.459) or even negative Ce anomalies; and (3) hydrothermal fluid altered REE pattern is complicated by fluctuated distribution curve, negative Ce anomaly and positive Eu anomaly (EuSN/Eu* = 1.862). These results suggest that the seawater normalized REE patterns of dolomite can serve as an index to study the source of the dolomitization fluids and distinguish complex diagenetic processes, providing a complement to previous works.  相似文献   
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