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91.
川中、川南过渡带须家河组储集砂体成因类型及特征   总被引:2,自引:0,他引:2  
川中、川南过渡带地区在晚三叠世须家河期湖盆演化的各阶段沉积了不同成因类型的碎屑岩储积砂体,以须家河组二段、四段和六段最为发育,其成因类型主要有三角洲平原分流河道砂体、三角洲前缘水下分流河道砂体、河口坝砂体、滨湖砂滩和浅湖砂坝砂体。通过野外剖面、岩芯、测井曲线以及样品的薄片鉴定和扫描电镜分析,对各成因类型砂体的分布特征进行了研究,进而对各类砂体的结构构造、物性特征进行了对比研究。  相似文献   
92.
塔里木盆地志留系柯坪塔格组砂岩岩石学特征与物源分析   总被引:4,自引:0,他引:4  
张鑫  张金亮  覃利娟 《矿物岩石》2007,27(3):106-115
通过对塔里木盆地志留系柯坪塔格组砂岩的碎屑矿物含量与氧化物、微量元素变化规律分析,研究该地区砂岩的岩石学及其物源特征。研究结果表明塔里木盆地志留系柯坪塔格组构造环境为活动大陆边缘和被动大陆边缘,物源区主要为再循环造山带。砂岩成分主要在石英、钾长石、斜长石、伊利石和绿泥石等矿物之间变化。化学风化作用指标(CIW)和化学蚀变作用指标(CIA)反映了该地区砂岩受到了强烈的风化作用,风化作用强度为:塔中地区砂岩>塔北地区砂岩>满东地区砂岩。化学组分变化指标(ICV)反映有些砂岩中含有第一次旋回沉积物。A-CN-K三角图反映了砂岩的母岩中斜长石含量要高于钾长石含量,在花岗闪长岩和花岗岩之间变化,砂岩在风化过程中受到了钾的交代作用,长石以及长石中的高岭石发生了伊利石化。微量元素及其特征参数(如La/Yb-ΣREE、δEu等)也反映了该地区砂岩来源于花岗岩物源区。  相似文献   
93.
ABSTRACT

Zircons from Carboniferous sandstones (three samples) and Mid-Late Triassic sandstones (four samples) from the Tauride and Anatolide continental units were analysed for U-Pb-Hf isotopes. For comparison, zircons were also analysed from Carboniferous granites of the Afyon Zone, Anatolides (three samples). A NE African/Arabian source is inferred for both the Carboniferous sandstones of the Taurides (Alada?) and the Anatolides (Konya Complex). In contrast, the Carboniferous Karaburun Melange is characterised by a NW African provenance. A prominent Devonian population occurs in the Carboniferous Karaburun Melange, characterised by mainly positive εHf(t) values that differ significantly from those of the Devonian granites of the Sakarya continental crustal unit (Pontides). Middle-Late Triassic Tauride sandstones include minor Palaeozoic and Early Mesozoic zircons. In contrast, Devonian and Carboniferous zircons are relatively abundant in Late Triassic sandstones of the Karaburun Peninsula. The Hf isotopic compositions of 25 Carboniferous-aged zircons from three samples of Mid-Late Triassic sandstone and one of Late Carboniferous age (one sample) overlap with the εHf(t) values of Carboniferous arc-type granites in the Anatolides. Taking account of the available U-Pb and Lu-Hf isotopic data from comparative crustal units, the Devonian zircon populations from the melanges in the Karaburun Peninsula and the Konya Complex are inferred to have a westerly source (e.g. granitic rocks of Aegean region or central Europe). A tectonic model is proposed in which Palaeozoic Tethys sutured during the late Carboniferous in the west (Aegean region westwards), leaving an eastward-widening oceanic gulf in which sandstone turbidites accumulated, including Devonian zircons.  相似文献   
94.
红砂岩在我国分布广泛,由于含水率的变化使其崩解破碎十分显著。采用湖南株洲地区的红砂岩样,进行室内静态与扰动崩解试验。基于Weibull分布建立了红砂岩颗粒崩解破碎级配曲线演化模型,分析了模型参数λ与k的意义。分析表明,Weibull分布参数λ与k的大小及变化速率体现了红砂岩颗粒崩解破碎的演化过程。在建立模型的基础上,求得了相对崩解比的计算公式,并验证了计算公式的正确性。依据试验结果与模型计算值,讨论了耐崩解性指数与崩解比的异同及所采用试验方法的不同对试验结果造成的影响。在已有成果的基础上,验证了Weibull分布模型应用于岩石颗粒崩解破碎演化过程的可行性。  相似文献   
95.
本文讨论了准噶尔盆地北部地区姜石层的特征及成因,北准地区新第三系至第四系出现多层姜石层,这些姜石层的存在,表明该地区具有形成第三系可地浸砂岩型铀矿的良好前景。  相似文献   
96.
松辽盆地西南部层间氧化带砂岩型铀矿找矿方向   总被引:16,自引:1,他引:15  
松辽盆地西南部层间氧化带砂岩型铀矿找矿方向赵忠华刘广传崔长远(核工业东北地质局240研究所,沈阳110032)关键词开鲁盆地层间氧化带砂岩型铀矿找矿松辽盆地西南部系指内蒙古自治区哲里木盟及昭乌达盟所辖地区,西临大兴安岭,南依辽西山地,面积约60000...  相似文献   
97.
西湖凹陷西次凹古近系花港组和平湖组深层油气资源丰富,是东海陆架盆地勘探开发新领域,受储层差异致密化影响,油气成藏机理复杂。为了厘清西次凹深层油气成藏过程,本文通过流体包裹体岩相学特征、显微测温、激光拉曼光谱、包裹体所含油气地球化学等实验分析,结合构造演化、地层埋藏史、热史等,开展了系统的储层特征、油气成藏期次、成藏过程研究。结果表明,花港组深层(>4000 m)和平湖组储层均已致密化,溶蚀孔隙是主要的储集孔隙类型;花港组和平湖组均发育两期油气包裹体,早期含油包裹体较多,晚期以天然气包裹体为主,成藏时间分别为龙井运动期和冲绳运动期,以晚期天然气成藏最为关键。包裹体中油气地球化学特征类似,反映生烃母质以高等植物生源为主,低等生物为辅,与平湖组煤系烃源岩特征一致。冲绳运动叠加平湖组生气增压是晚期天然气成藏的主要动力,此时H10段及以上储层未致密化。根据储层致密化与成藏时序匹配关系可将西次凹M构造深层油气藏类型划分为常规型、先成藏后致密型、先致密后成藏型和边成藏边致密型4种。本文成果可为研究区下一步致密砂岩气的勘探开发部署提供重要的理论依据。  相似文献   
98.
Reservoir quality is a critical risk factor in deep to ultradeep reservoirs at depths >4.5 km. Analysis of Paleogene Wilcox sandstones on the upper Texas Gulf Coast provides insight into the evolution of reservoir quality during shallow to ultradeep burial diagenesis. Reduction of porosity and permeability with burial in Wilcox sandstones was evaluated using subsurface samples from 200 to 6700 m, at temperatures of 25–230 °C. Diagenesis and petrophysical properties were interpreted from petrographic data and core analyses. Wilcox sandstones are mostly lithic arkoses and feldspathic litharenites having an average composition of Q59F22R19. Provenance did not change significantly during Wilcox deposition in this area, nor does average sandstone composition vary among lower, middle, and upper Wilcox sandstones. However, composition does vary with sequence-stratigraphic position; lowstand slope-fan deposits contain more rock fragments than do deposits from highstand or transgressive systems tracts. Given observations from this onshore dataset, Wilcox sandstones deposited in deepwater environments in the Gulf of Mexico are likely to contain more rock fragments than their linked highstand equivalents.  相似文献   
99.
对苏皖下扬子区上白垩统浦口组(K2P)的三个砂岩样品进行了磷灰石裂变径迹(AFT)研究。结果显示:2个样品的AFT合并年龄为(88.8±4.4)Ma(径迹长度为(12.0±0.3)μm)和(82.1±6.8)Ma(径迹长度为(14.4±0.3)μm)与浦口组沉积年龄相近,说明它们沉降的幅度达到但没有超过AFT部分退火区间,1个样品的AFT合并年龄(117.3±5.9)Ma(径迹长度为(13.3±0.3)μm)大于浦口组沉积年龄,代表物源区抬升、剥露的冷却年龄。根据热历史模拟结果,识别出黄桥事件(110~90Ma)、仪征事件(70~60Ma)和三垛事件(35~22Ma)三期重要的构造事件,并将下扬子区晚白垩世以来的盆地演化划分为四个阶段:110~70Ma断坳复合型伸展盆地、70~35Ma拉张断陷盆地、35~22Ma挤压抬升阶段和22Ma至今坳陷盆地。  相似文献   
100.
Co-genetic debrite–turbidite beds are most commonly found in distal basin-plain settings and basin margins. This study documents the geometry, architectural association and paleogeographic occurrence of co-genetic debrite–turbidite beds in the Carboniferous Ross Sandstone with the goal of reducing uncertainty in the interpretation of subsurface data in similarly shaped basins where oil and gas is produced.The Ross Sandstone of western Ireland was deposited in a structurally confined submarine basin. Two outcrops contain co-genetic debrite–turbidite beds: Ballybunnion and Inishcorker. Both of the exposures contain strata deposited on the margin of the basin. An integrated dataset was used to characterize the stratigraphy of the Ballybunnion exposure. The exposure is divided into lower, middle, and upper units. The lower unit contains laminated shale with phosphate nodules, structureless siltstone, convolute bedding/slumps, locally contorted shale, and siltstone turbidites. The middle unit contains co-genetic debrite–turbidite beds, siltstone turbidites, and structureless siltstone. Each co-genetic debrite–turbidite bed contains evidence that fluid turbulence and matrix strength operated alternately and possibly simultaneously during deposition by a single sediment-gravity-flow event. The upper unit contains thin-bedded sandy turbidites, amalgamated sandy turbidites, siltstone turbidites, structureless siltstone, and laminated shale. A similar vertical facies pattern is found at Inishcorker.Co-genetic debrite–turbidite beds are only found at the basin-margin. We interpret these distinct beds to have originated as sand-rich, fully turbulent flows that eroded muddy strata on the slope as well as interbedded sandstone and mudstone in axial positions of the basin floor forming channels and associated megaflute erosional surfaces. This erosion caused the axially dispersing flows to laterally evolve to silt- and clay-rich flows suspended by both fluid turbulence and matrix strength due to a relative increase in clay proportions and associated turbulence suppression. The flows were efficient enough to bypass the basin center/floor, physically disconnecting their deposits from coeval lobes, resulting in deposition of co-genetic debrite–turbidite beds on the basin margin. The record of these bypassing flows in axial positions of the basin is erosional surfaces draped by thin siltstone beds with organic debris.A detailed cross-section through the Ross Sandstone reveals a wedge of low net-to-gross, poor reservoir-quality strata that physically separates sandy, basin-floor strata from the basin margin. The wedge of strata is referred to as the transition zone. The transition zone is composed of co-genetic debrite–turbidite beds, structureless siltstone, slumps, locally contorted shale, and laminated shale. Using data from the Ross Sandstone, two equations are defined that predict the size and shape of the transition zone. The equations use three variables (thickness of basin-margin strata, thickness of coeval strata on the basin floor, and angle of the basin margin) to solve for width (w) and trajectory of the basinward side of the low net-to-gross wedge (β). Beta is not a time line, but a facies boundary that separates sandy basin floor strata from silty basin-margin strata. The transition zone is interpreted to exist on lateral and distal margins of the structurally confined basin.Seismic examples from Gulf of Mexico minibasins reveal a wedge of low continuity, low amplitude seismic facies adjacent to the basin margin. Strata in this wedge are interpreted as transition-zone sediments, similar to those in the Ross Sandstone. Besides defining the size and shape of the transition zone, the variables “w” and “β” define two important drilling parameters. The variable “w” corresponds to the minimum distance a well bore should be positioned from the lateral basin margin to intersect sandy strata, and “β” corresponds to the deviation (from horizontal) of the well bore to follow the interface between sandy and low net-to-gross strata. Calculations reveal that “w” and “β” are related to the relative amount of draping, condensed strata on the margin and the angle of the basin margin. Basins with shallowly dipping margins and relatively high proportions of draping, clay-rich strata have wider transition zones compared to basins with steeply dipping margins with little draping strata. These concepts can reduce uncertainty when interpreting subsurface data in other structurally confined basins including those in Gulf of Mexico, offshore West Africa, and Brunei.  相似文献   
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