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1.
The Upper Cretaceous chalks of southern England are a thick sequence of rhythmically bedded, bioturbated coccolith micrites, deposited in an outer shelf environment in water depths which varied between 50 and 200–300 m. The products of sea floor cementation are widely represented in the sequence, and a series of stages of progressive lithification can be recognized. These began with a pause in sedimentation and the formation of an omission surface, followed by (a) growth of discrete nodules below the sediment-water interface to form a nodular chalk, erosion of which produced intraformational conglomerates. (b) Further growth and fusion of nodules into continuous or semicontinuous layers: incipient hardgrounds. (c) Scour, which exposed the layer as a true hardground. At this stage, the exposed lithified chalk bottom was subject to boring and encrustation by a variety of organisms, whilst calcium carbonate was frequently replaced by glauconite and phosphate to produce superficial mineralized zones. In many cases, the processes of sedimentation, cementation, exposure and mineralization were repeated several times, producing composite hardgrounds built up of a series of layers of cemented and mineralized chalk, indicating a long and complex diagenetic history. Petrographic study of early cemented chalks indicates lithification was the result of the precipitation of small crystals on and between coccoliths and coccolith fragments. By analogy with known occurrences of early lithification in Recent deeper water carbonates, the cement is believed to have been either high magnesian calcite or aragonite, and more probably the former. The vast scale of operations involved in the cementation process precludes carbonate in expelled pore fluids as the source of cement, whilst quantities of aragonite incorporated in sediment are also inadequate. This, plus the observed association of horizons of early lithification with pauses in sedimentation associated with omission surfaces suggests seawater as a source of cementing materials. Stratigraphic studies indicate that processes of early lithification leading to hardground formation proceeded to completion in intervals to be measured in tens or hundreds of years. Regional studies suggest that early lithification characterized relatively shallow water phases associated with regional regression over the whole of the area, whilst in detail, the distribution of mature mineralized hardground complexes is strongly correlated with sedimentary thinning and condensation over small areas and the buried flanks of massifs. Early cementation in more basinal areas is typically in the form of nodular developments and incipient hardgrounds, whilst day contents in excess of a few percent appear to have inhibited early lithification. The striking rhythmicity of hardgrounds and nodular chalks is no more than a particular expression of the overall rhythmicity of chalk sequences. The stage of early lithification reached in any instance is dependent on sediment type, the time interval represented by the associated omission surface and the degree of associated scour and erosion (if any). Chalk hardgrounds differ from most others described in the geological literature in their widespread distribution (individual hardgrounds may cover up to 1500 km2), the presence of striking glauconite and phosphate replacements of lithified carbonate matrices, their frequently sparse epifaunas, and boring infaunas dominated by clionid sponges. These differences reflect the deeper water shelf setting of the chalk, and the more open marine, oceanic circulatory system, both strikingly different from the setting of other, shallower water hardgrounds. Litho- and biostratigraphic variation in the chalk sequences of the area studied are summarized in an appendix.  相似文献   

2.
A sequence of irregular nodular limestones in the Silurian of northern New Brunswick appear to have undergone early marine lithification. Nodules and crusts formed soon after deposition in the argillaceous lime sediments by sporadic diagenetic precipitation of calcium carbonate and were subsequently modified by differential compaction and minor flowage. While lack of both borings and encrusting organisms on the nodules indicates they were not ‘hard grounds’, computed porosities at the time of lithification based on the ratio of carbonate to insoluble residues suggest lithification depths within a few tens of feet of the sediment-water interface. Consideration of the availability of calcium carbonate suggests lithification very close to the sediment surface.  相似文献   

3.
鄂尔多斯盆地子洲-清涧地区上古生界山 32段砂岩储层以石英砂岩为主,其次为岩屑质石英砂岩和岩屑砂岩.目前储层正处于晚成岩阶段B期,成岩作用类型包括压实作用、胶结作用、交代作用和溶蚀作用,机械压实作用、压溶作用和自生黏土矿物的胶结作用是低孔低渗储层形成的主要原因,成岩晚期的溶蚀作用大大改善了砂岩储层的储集空间.根据成岩作用的特点,将研究区山 32段划分出5个成岩相:压实压溶相、弱压实-硅质胶结相、弱压实-自生黏土矿物胶结相、弱压实-碳酸盐胶结相、弱压实-溶蚀相.压实压溶相储层物性最差;弱压实-硅质胶结相、弱压实-自生黏土矿物胶结相和弱压实-碳酸盐胶结相储层的孔隙度、渗透率总体也很低;弱压实-溶蚀相储层的储集空间最发育、连通性最好,孔隙类型以粒间孔、粒间溶孔、粒内溶孔为主.  相似文献   

4.
利用鄂尔多斯盆地LX地区山西组铸体薄片、扫描电镜、阴极发光、地球化学资料等,通过统计、计算等方法,对该区山西组储层岩石学特征、成岩作用类型、成岩演化阶段及成岩演化过程进行研究,在此基础上建立研究区山西组成岩相类型及划分标准,并最终确定了该区山西组成岩相平面展布特征。研究表明:压实和胶结作用是研究区山西组储层砂岩致密化的主要原因;成岩阶段主体已经进入中成岩B期;其成岩演化过程为早成岩A期的压实及少量胶结阶段,早成岩B期的压实及少量溶蚀及胶结阶段,中成岩A期的大量溶蚀和胶结阶段以及中成岩B期的碳酸盐胶结阶段;成岩相类型分为4类:中等压实-弱胶结-溶蚀相,中等压实-中等胶结-溶蚀相,中等压实-强胶结相,强压实-杂基强充填相;有利成岩相在研究区分布面积较广,说明研究区具备了良好的勘探潜力,尤其是发育在研究区的中等压实-弱胶结-溶蚀相区域,可作为该区山西组下一步勘探开发的重点。  相似文献   

5.
利用岩心、铸体薄片、扫描电镜、碳氧同位素及流体包裹体等资料,对鄂尔多斯盆地姬塬西部三叠系延长组长8油层组致密储集层特征进行了研究,重点分析了储集层成岩作用特征和储集层致密化成因机制及过程。研究区长8油层组砂岩主要为岩屑长石砂岩和长石岩屑砂岩,经历了压实—压溶、胶结、交代、溶蚀及构造破裂等成岩作用,整体处于中成岩A期晚期。典型成岩序列依次为机械压实、绿泥石黏土膜、早期(泥晶)方解石胶结、石英次生加大、长石、岩屑溶蚀、自生高岭石胶结、自生石英胶结、中期(含)铁方解石胶结。综合研究认为:(1)近物源伴随湖平面快速上升的沉积环境提供了储集层致密化的物质基础,不同沉积微相储集层物性差别较大,分流河道最好,分流间湾最差;(2)长8油层组原始孔隙度为41.35%,压实作用损孔率为50.67%,造成储集层孔隙度急剧降低,胶结作用损孔率为37.48%,导致孔隙度进一步减小,溶蚀作用仅增加了3.26%的孔隙度,难以有效改善储集层质量;(3)上述沉积与成岩因素共同导致储集层致密,致密化过程可分为压实孔隙骤减阶段、早期胶结减孔阶段、溶蚀作用增孔阶段和晚期胶结致密阶段共4个阶段;(4)油气大量充注期储集层孔隙度远低于10%,长8油层组先致密后成藏。  相似文献   

6.
在对大量薄片和岩心观察分析基础上,结合扫描电镜和全岩分析、 X衍射粘土分析、 包裹体测温等手段,对查干凹陷碎屑岩储层的成岩作用和孔隙演化进行了研究。结果表明: 研究区碎屑岩储层主要为低成分成熟度、 低结构成熟度的长石岩屑砂岩,成岩作用呈现“强压实、 强胶结、 弱交代、 弱溶蚀“的“两强两弱”特征;成岩阶段主要处于中成岩A期,局部达中成岩B期至晚成岩期。两期胶结主要发生在苏二早期和乌兰苏海时期,中浅层(<2 500 m)较低孔隙度主要由于强压实和早期致密胶结所致;较高孔隙度是由于原生孔隙保存较好,长石及碳酸盐胶结物的溶蚀作用导致孔隙度增大。深层碎屑岩储层(>2 500 m)较低孔隙度除压实作用外,碳酸盐致密胶结是主因;较高孔隙度则为早期酸性溶蚀叠加晚期碱性溶蚀产生次生孔隙为主。晚期碱性溶蚀发生在油气充注之后,为无效溶孔。  相似文献   

7.
刘林玉  王震亮  张龙 《沉积学报》2006,24(5):690-697
根据砂岩薄片、铸体薄片、扫描电镜、X-衍射分析,研究了鄂尔多斯盆地西峰油田镇北地区长3储层的成岩作用特征,认为该区长3储层处于晚成岩A期阶段,压实作用和胶结作用强烈地破坏了砂岩的原生孔隙结构,溶蚀作用和破裂作用则有效地改善了砂岩的孔隙结构。该区长3储层发育溶蚀作用相、压实作用相、胶结作用相和自生绿泥石胶结残余孔隙相,储层成岩相发育状况决定了孔隙结构的发育特征。发育次生孔隙相和残余孔隙相的砂岩具有较好的孔隙结构,孔渗较高;压实作用相和胶结作用相发育的砂岩具有很差的孔隙结构,孔渗很低。   相似文献   

8.
K. GERMANN 《Sedimentology》1969,12(3-4):257-277
SUMMARY
Dolomitic intraclastic sediments intercalated in a cyclic limestone-dolostone sequence of the Wettersteinkalk represent a rock type with reworking fabrics demonstrating early lithification and dolomitization. The extreme flatness and the angularity of the pebble-sized doloclasts, the lack in plastically deformed dolomitic fragments, and clasts of previously cementated arenites and oncolites testify to a pre-reworking consolidation which, besides biogenic stabilization and dehydration, requires an early cementation. In the different types of doloclasts cementation both by dolomite and by calcite has been confirmed by stained peels and thin-sections, electron-microphotographs, and electron-microprobe analysis.
The prevailing rock type, a very poorly sorted mixture of doloclasts and minor amounts of rounded limeclasts with a pelletal calcite mud matrix is interpreted as storm sediment formed by the introduction of subtidal lime muds to dolomite incrusted supratidal flats.  相似文献   

9.
海拉尔盆地贝尔凹陷铜钵庙组发育一套火山碎屑岩类、火山-沉积岩类和少量的陆源碎屑岩岩石组合。其中,火山碎屑岩类、火山-沉积岩类成岩作用受火山碎屑物质控制作用明显。典型的成岩作用类型包括压实作用,胶结作用和溶蚀、溶解作用等。成岩阶段属中成岩A期。通过孔隙演化研究发现,压实作用是该区原始孔隙损失的最主要因素;其次为胶结作用。早期压实作用和胶结作用共损失83%以上的原生孔隙,晚期岩屑溶蚀和长石溶蚀作用增加6.53%的孔隙度,有效地改善了储层的物性特征。此外,不同岩石类型成岩作用特征及其对孔隙的影响差异较大。  相似文献   

10.
应用普通薄片、铸体薄片、扫描电镜、黏土矿物X射线衍射等多种测试手段,对海拉尔-塔木察格盆地南贝尔凹陷下白垩统铜钵庙组和南屯组火山碎屑岩储集层成岩演化特征进行了系统研究,并探讨了成岩演化的控制因素。研究认为,储集层成岩作用类型主要有熔结作用、压实作用、脱玻化作用、蚀变作用、胶结作用和溶蚀溶解作用,所处成岩作用阶段主要为中成岩阶段A期。储集层经历了同生成岩阶段-中成岩阶段A期的演化过程,局部储集层还经历了表生成岩阶段的演化过程。各成岩演化阶段特点均有所不同,其中,同生成岩阶段以熔结作用和弱胶结作用为特点,早成岩阶段A期以较强压实、弱胶结为特点,早成岩阶段B期的特点为较强压实、弱胶结、弱溶蚀,中成岩阶段A期为中等压实、较强胶结、较强溶蚀,表生成岩作用阶段以大气水淋滤作用为特点。成岩演化过程主要受成岩环境以及构造作用和火山活动的控制。储集层成岩环境大致经历了弱碱性-弱酸性-酸性-碱性的演化过程,酸性成岩环境以溶蚀溶解作用为主,碱性成岩环境胶结作用明显。构造作用和火山活动通过控制火山碎屑物质的来源、裂缝的产生、热流体活动以及表生成岩阶段的进行等来影响储集层的成岩演化。  相似文献   

11.
鄂尔多斯盆地陇东地区延长组储层定量成岩相研究   总被引:3,自引:0,他引:3  
应用铸体薄片、阴极发光、扫描电镜等资料,对陇东地区延长组储层成岩作用类型及定量强度进行了综合研究,用定量指标划分成岩相类型,建立了不同类型成岩相测井响应特征模板,并对成岩相纵向及平面分布进行了研究。压实、胶结、溶解3种主控成岩作用的强度计算与分级研究表明,研究区压实作用较强,主要为强压实、中压实,在粒度较细、杂基含量较高的砂岩中可达到极强压实;胶结作用强度差异较大,以弱胶结为主,局部地区发育强胶结;溶解作用强度较大,以中溶解、强溶解为主。成岩相类型可划分为中压实强溶解相、中压实中溶解相、中压实中胶结中溶解相、中压实强胶结相、强压实强溶解相、强压实中溶解相、强压实强胶结相、极强压实相8种成岩相类型。相对优质储集相(中压实中强溶解相和强压实强溶解相)在纵向上主要分布在长3油层组和长8油层组,平面上不同油层组相对优质储集相分布区存在差异,主要呈条带状和透镜状分布。  相似文献   

12.
The detrital mineralogy as well as diagenetic characters of the Dhosa Sandstone Member of Chari Formation exposed at the Lerdome, south of Bhuj was studied. In order to assess the potential of the Dhosa Sandstone as a reservoir, it is substantial to understand the diagenetic processes that are controlled largely by post-depositional cementation and compaction in addition to framework composition and original depositional textures. The petrologic analysis of 33 thin sections was carried out to discern primary composition and diagenetic features including primary and secondary porosity patterns. Monocrystalline quartz dominates the detrital mineralogy followed by polycrystalline quartz. Among the polycrystalline variety recrystallized metamorphic quartz surpasses stretched metamorphic quartz in terms of abundance. Feldspars comprise microcline and plagioclase where the former is dominant over the latter. Orthoclase too comprises a very small percentage. Mica, chert, rock fragments, and heavies form the remaining detrital constituent in descending order of their constituent percentage. The diagenetic precipitates are mainly carbonate (8.30%) and iron (7.80%) followed by clay (0.66%) and silica (0.88%) that are minor constituent of the total cementing material. The main paragenetic events identified are early cementation, mechanical compaction, late cementation, dissolution, and authigenesis of clays. The overall reservoir quality seems to be controlled by compaction and authigenic carbonate cementation. The minus cement porosity average 29.4%. The porosity loss due to compaction is 21.92% and by cementation is 29.71%. The loss of original porosity was due to early cementation followed by moderate mechanical compaction during shallow burial. Preservation of available miniscule primary porosity was ascribed to dissolution of carbonates and quartz overgrowth which resisted chemical compaction during deep burial. The studied sandstones may have low reservoir quality owing to existing porosity of less than 9%. More carbonate dissolution and its transformation in dolomite in sub-surface condition and macro-fracture porosity may result in enhanced secondary porosity and good diagenetic traps.  相似文献   

13.
东营凹陷古近系孔店组成岩特征及对储层的控制   总被引:1,自引:0,他引:1  
通过岩石薄片、扫描电镜、镜质体反射率、X衍射、物性分析等资料,对东营断陷盆地古近系孔店组成岩作用进行研究。结果表明:原始碎屑组分和化学沉积分异作用引起的早期胶结物性质决定了后期的成岩演化;典型成岩现象有强烈压实作用、硬石膏胶结、多期次碳酸盐胶结、多期次粘土矿物胶结、硅质强烈胶结、矿物强烈穿插交代、碎屑颗粒和胶结物的溶解作用,各种成岩现象对深部碎屑岩储层均产生重要影响。同时也证实:压实作用是引起深部碎屑岩强烈致密化的主要原因;硬石膏胶结、碳酸盐胶结和硅质胶结是引起致密化的又一重要原因;长石、碳酸盐胶结物的溶解作用是引起该地区储层改善的主要成岩因素。   相似文献   

14.
利用鄂尔多斯盆地临兴地区下石盒子组铸体薄片、扫描电镜、阴极发光、包裹体分析,地球化学等资料,通过统计与计算等方法,对研究区下石盒子组不同粒级砂岩的岩石学特征,成岩演化序列以及埋藏过程中孔隙的定量演化进行研究。结果表明:①岩石学组成中,粗砂岩刚性颗粒含量高,塑性颗粒则多集中在细砂岩中;粗砂岩中硅质胶结、碳酸盐胶结含量较高,中、细砂岩以高岭石胶结为主。②成岩演化阶段中,粗砂岩经历的成岩作用较为完全,而细砂岩在早成岩B期就已经基本致密化,中砂岩则为二者的过渡型。③二叠世-中晚三叠世为准同生-早成岩B阶段,成岩作用以压实为主,其对细砂岩孔隙度影响最大;晚三叠世-中侏罗世为中成岩A阶段,成岩作用以溶蚀和胶结为主,粗砂岩溶蚀作用较强,孔隙度较高,细砂岩基本不发育溶蚀和胶结作用;中侏罗世之后,成岩阶段达到了中成岩B,以亚铁碳酸盐胶结为主,粗砂岩受到胶结作用较强,降低了一定孔隙度,但物性依然较好,粗、中、细砂岩最终孔隙度分别为11.07%、6.08%及2.60%。综上所述,粗砂岩由于压实作用较弱,溶蚀作用较强,可以形成良好的储集空间,中砂岩主要受控于压实和胶结作用的双重影响,形成次一级的储集空间,而细砂岩以压实破坏为主,物性相对最差。  相似文献   

15.
济阳坳陷古近系深部储层成岩演化模式   总被引:4,自引:0,他引:4  
运用岩石薄片鉴定、扫描电镜分析、镜质体反射率分析、X-衍射分析和油层物性分析等手段,结合区域油气地质研究成果,以揭示济阳坳陷古近系深部碎屑岩储层的成岩演化模式和物性演化规律为目的开展工作。结果表明,济阳坳陷古近系深部碎屑岩储层主要受其所处构造背景、地层压力和流体环境的影响,发育6种成岩演化模式。弱陡坡/缓坡构造背景条件下发育早期中强超压-中强压实/胶结/溶蚀-多重介质成岩演化模式和晚期中强超压-(较)强压实/胶结/溶蚀-酸性介质成岩演化模式,超压形成的早晚是影响储层压实作用强弱的主要因素,而流体环境的差异与构造背景的差异有关。深洼陷发育弱超压/常压-(中)强压实/胶结-强溶蚀-热液酸性介质成岩演化模式和中弱超压-较强压实/胶结-强溶蚀-热液酸性介质成岩演化模式,热液活动加强了成岩流体对酸溶性组分的溶解,是该类成岩演化模式的主要影响因素。处于陡坡常压条件下的深层碎屑岩发育(中)强压实/胶结-弱溶蚀-热液酸性介质和强胶结-中弱溶蚀-多重介质成岩演化模式,早期沉积水体、后期成岩水体以及两者混合造成的多重介质是其主要影响因素。综合分析认为,层位和埋深是深部储层遭受成岩改造程度强弱的首要控制因素;构造位置是影响成岩压力场和流体场的基本前提;在不同的流体场背景中,深部热液对储层演化会不同影响;酸碱交替的多重成岩环境增加了次生孔隙带发育个数和次生孔隙垂向分布,但原始孔隙度保存率比以酸性介质为主的成岩环境低5%以上。  相似文献   

16.
Halite-impregnated carbonates in the Dawson Bay Formation of Saskatchewan lie between beds of halite and are buried to a depth of 1 km. They exhibit two different diagenetic styles – some resisted compaction and had high pre-salt porosities; others contain compaction-broken fossils and pressure-solution seams. The uncompacted rocks, together with the difficulty of explaining how halite cement could enter the Dawson Bay after overlying bedded halites were deposited, suggest that halite cementation occurred early with only a few tens of metres of overburden. Early diagenetic compaction is suggested by the presence of unbroken, displacive skeletal halite crystals, which cross-cut compaction structures, and by the difficulty of explaining how (1) later compaction could occur in halite-cemented rocks and (2) how pore-fluids could be expelled after surrounding rocks lost their permeability. The organic-rich nature of many carbonates may explain why compaction was both early and extensive, but this explanation fails to explain how similar compaction developed in horizons with lower organic contents. Chemical compaction may also have been enhanced by aragonite dissolution during seawater evaporation or brine dilution. Early chemical compaction in Dawson Bay carbonates indicates that compaction in other carbonates need not signify deep burial diagenesis; neither can compaction be used indiscriminately to identify other diagenetic events as being of deep burial origin. Early halite cementation, as in the Dawson Bay Formation, preserves carbonates at early diagenetic stages and may thus preserve geochemical information unmodified by later diagenesis.  相似文献   

17.
郑庆华  柳益群 《沉积学报》2015,33(5):1000-1012
鄂尔多斯盆地镇北地区含凝灰质的延长组长4+5致密油层勘探潜力巨大,但因成岩作用研究薄弱,相对高孔高渗储层成因机理和分布规律认识不清,使该区勘探开发进程受到明显的制约。综合应用铸体薄片、扫描电镜、电子探针、阴极发光、显微荧光、X射线衍射、流体包裹体、高压压汞和常规物性等方法,对镇北地区的长4+5储层成岩作用及成岩相带进行了研究。研究结果表明:研究区长4+5储层主要处于中成岩阶段A期,石英自生加大等硅质胶结作用和铁白云石等碳酸盐胶结作用是造成储层低孔特低渗的根本原因;绿泥石膜胶结作用和早期油的充注抑制了机械压实作用和胶结作用,保护了储层孔隙;长石碎屑的溶蚀作用扩大了储集空间。划分出机械压实相、碳酸盐胶结相、绿泥石膜胶结相和长石溶蚀相四类主要成岩相,其中长石溶蚀相常形成相对高孔高渗储层发育区,一般面孔率大于6.0%,孔隙度大于14.0%,渗透率大于1.30×10-3 μm2,主要分布在辫状河三角洲前缘亚相水下分流河道微相砂体中部。综合研究表明,沉积作用和成岩作用共同控制着相对高孔高渗储层的分布。  相似文献   

18.
张莉  舒志国  何生  陈绵琨  伍宁南  杨锐 《地球科学》2021,46(9):3139-3156
川东建南地区须家河组储层非均质性极强,致密化程度极高,为了查明储层差异演化过程,剖析储层差异演化控制因素,运用岩石学和岩石地球化学的多种实验方法,在详细刻画储层岩石学特征的基础上,划分了储层成岩相类型,查明了不同类型砂岩的物性特征和孔隙结构特征,分析了储层的差异性演化过程.研究区砂岩可以划分为4种成岩相类型,即强压实相、溶蚀相、硅质胶结相和强钙质胶结相.溶蚀相砂岩物性最好,强压实相砂岩次之,硅质胶结相和钙质胶结相砂岩物性最差.碎屑组分的差异是造成储层非均质性强和差异性演化的重要原因.塑性岩屑含量的差异,导致早成岩时期压实减孔程度的不同;长石含量的差异,影响了砂岩中溶蚀强度和方解石胶结程度;石英含量的差异,控制了砂岩中硅质胶结作用的强弱;最终,使得储层演化有先有后,空间分布非均质.   相似文献   

19.
松辽盆地宋芳屯油田扶杨油层储层成岩作用研究   总被引:1,自引:0,他引:1  
宋芳屯油田扶杨油层储集岩主要为混合砂岩,泥质含量高、钙质胶结物含量较高。对储层的成岩序列进行了研究,储层大部分进入早成岩阶段B期和晚成岩阶段A期;主要的成岩事件有压实作用、胶结作用、溶蚀作用、交代作用等;压实作用是使孔隙降低的主要原因,钙质胶结物存在使孔隙空间进一步降低,骨架颗粒的溶蚀作用增加孔隙空间;扶杨油层储层敏感性主要有水敏、速敏和酸敏。  相似文献   

20.
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   

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