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1.
Ordovician fracture-cavity carbonate reservoir beds are the major type of producing formations in the Tahe oilfield,Tarim Basin.The seismic responses of these beds clearly changes depending on the different distance of the fracture-cavity reservoir bed from the top of the section.The seismic reflection becomes weak or is absent when the fracture-cavity reservoir beds are less than 20 ms below the top Ordovician.The effect on top Ordovician reflection became weaker with deeper burial of fracture-cavity reservoir beds but the developed deep fracture-cavity reservoir beds caused stronger reflection in the interior of the Ordovician.This interior reflection can be divided into strong long-axis, irregular and bead string reflections,and was present 80 ms below the top Ordovician.Aimed at understanding reflection characteristics,the spectral decomposition technique,which uses frequency to"tune-in"bed thickness,was used to predict Ordovician fracture-cavity carbonate formations in the Tahe oilfield.Through finely adjusting the processing parameters of spectral decomposition,it was found that the slice at 30 Hz of the tuned data cube can best represent reservoir bed development.Two large N-S-trending strong reflection belts in the mid-western part of the study area along wells TK440- TK427-TK417B and in the eastern part along wells TK404-TK409 were observed distinctly on the 30 Hz slice and 4-D time-frequency data cube carving.A small N-S trending reflection belt in the southern part along wells T403-TK446B was also clearly identified.The predicted reservoir bed development area coincides with the fracture-cavities connection area confirmed by drilling pressure testing results. Deep karst cavities occur basically in three reservoir bed-development belts identified by the Ordovician interior strong reflection.Spectral decomposition proved to be a useful technique in identifying fracture-cavity reservoir beds.  相似文献   

2.
Ordovician fracture-cavity carbonate reservoir beds are the major type of producing formations in the Tahe oilfieid, Tarim Basin. The seismic responses of these beds clearly changes depending on the different distance of the fracture-cavity reservoir bed from the top of the section. The seismic reflection becomes weak or is absent when the fracture-cavity reservoir beds are less than 20 ms below the top Ordovician. The effect on top Ordovician reflection became weaker with deeper burial of fracture-cavity reservoir beds but the developed deep fracture-cavity reservoir beds caused stronger reflection in the interior of the Ordovician. This interior reflection can be divided into strong long-axis, irregular and bead string reflections, and was present 80 ms below the top Ordovician. Aimed at understanding reflection characteristics, the spectral decomposition technique, which uses frequency to "tune-in" bed thickness, was used to predict Ordovician fracture-cavity carbonate formations in the Tahe oilfield. Through finely adjusting the processing parameters of spectral decomposition, it was found that the slice at 30 Hz of the tuned data cube can best represent reservoir bed development. Two large N-S-trending strong reflection belts in the mid-western part of the study area along wells TK440- TK427-TK417B and in the eastern part along wells TK404-TK409 were observed distinctly on the 30 Hz slice and 4-D time-frequency data cube carving. A small N-S trending reflection belt in the southern part along wells T403-TK446B was also clearly identified. The predicted reservoir bed development area coincides with the fracture-cavities connection area confirmed by drilling pressure testing results. Deep karst cavities occur basically in three reservoir bed-development belts identified by the Ordovician interior strong reflection. Spectral decomposition proved to be a useful technique in identifying fracture-cavity reservoir beds.  相似文献   

3.
<正>In recent years,great progress has been made constantly in oil and gas exploration in the Lungudong region of the Tarim Basin.However,progress has been slow in the evaluation of its main oil-producing horizons-the Ordovician carbonate reservoir beds.Based on previous researches and on the various data such as drilling,geology and oil test,in combination with the interpretation of each single-well imaging and conventional logging data,and through analysis and comparison,the identification methods in imaging and conventional logging for four types of carbonate reservoir beds in this region are summarized in this paper.Calculation formulas for four reservoir bed parameters,i. e.shale content,porosity,permeability and oil saturation in this region are proposed;and reservoir beds in this region are divided into three levels(Ⅰ,ⅡandⅢ) by combining oil test data and logging data,The lower limits of the effective porosity of reservoir beds and the fracture porosity of effective reservoir beds are determined as 1.8%and 0.04%,respectively.The physical property parameters are calculated by conventional logging curves,and the most advantageous areas for reservoir development are predicted comprehensively.On the plane,the high-value zones of reservoir bed parameters are mainly concentrated in the N-S-trending strike-slip fault,the Sangtamu fault horst zone and near the LG38 well area;vertically,the reservoir bed parameters of the Yijianfang Formation are better than those of the Yingshan and Lianglitage formations.  相似文献   

4.
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   

5.
碳酸盐岩表生岩溶作用控制着塔河油田奥陶系油藏缝洞系统的发育及分布。塔河油田奥陶系油藏经历了加里东期和海西早期两次岩溶作用,造成了储层极强的非均质性。通过塔河油田岩溶作用演化及发育期次的研究,将塔河油田奥陶系垂向岩溶带划分为地表岩溶带、纵向渗滤岩溶带和水平潜流岩溶带,平面上发育岩溶高地、岩溶斜坡和岩溶洼地3个地貌单元。通过对野外露头、岩心、钻井、测井、地震及生产动态资料的综合研究,认为溶洞、溶蚀裂缝及蜂窝状孔洞等连续孔隙是该区有效储集空间,基质作为不渗透(低渗)层对缝洞系统有一定的隔挡作用。结合表生岩溶洞穴的原理及对孔隙状态的控制作用,将塔河油田溶洞储集体根据不同成因分为落水洞、潜流洞和小溶洞,按溶洞充填物类型分为垮塌充填洞、机械充填洞和化学充填洞,同时建立了不同类型孔洞系统的识别特征及地质模式。结合塔河油田洞穴储层发育特征及生产实际,最终建立了塔河油田岩溶储集空间展布模式。  相似文献   

6.
<正>Basic characteristics of Ordovician carbonate reservoir beds in the Lungudong region of northeastern part of the Tarim Basin are described in detail and the reservoir-forming conditions of oil and gas are preliminarily discussed in this paper by collecting and sorting out a large amount of data.The carbonate reservoir beds are mainly developed in open-platform and platform marginal facies;the reservoir beds have large changes in and low average values of physical property;the main type is fractured reservoir beds with the fracture-porous type second.The reservoir bed development is chiefly controlled by the distribution of sedimentary facies,tectonic activity and karstification. Whereas the accumulation and distribution of hydrocarbons in the region are controlled by an advantageous structural location,a good reservoir-caprock combination and a favorable transporting system,with the distribution characterized by zones horizontally and belts vertically,the oil and gas are mainly concentrated in areas with structural uplift,densely developed fractures,and surface karst,a vertical vadose zone,and a horizontal undercurrent belt of palaeokarst.  相似文献   

7.
岩溶-裂缝是塔河油田西南部地区上奥陶统覆盖区中—下奥陶统碳酸盐岩储层主要储集空间类型。依据岩心观察、显微镜薄片鉴定、扫描电镜、钻井、深浅侧向和FMI成像测井等资料,综合识别了中—下奥陶统储层裂缝和孔洞发育段,认为该区储层缝洞发育特征与塔河油田主体区有较大的不同,其主要的储集空间类型为半充填—未充填的构造缝和溶蚀扩大缝,且以高角度斜裂缝和垂直裂缝为主,低角度裂缝较少;微裂缝和中缝发育,大裂缝和孔洞总体不发育,利用储层多因素综合评价方法指出了研究区内裂缝和孔洞发育的有利地区。  相似文献   

8.
Marine carbonate reservoirs, as a focus of petroleum exploration and development all over the world, are involved with high exploration risk and prediction difficulty owing to high heterogeneity and diversity of reservoir beds. In the Tarim Basin, NW China, carbonate reservoirs with resources about 38 % of the whole basin in a large prospecting area are mainly distributed in the Cambrian and Ordovician in central (Tazhong) and northern (Tabei) Tarim. Recently on the northern slope, Tazhong Low Rise, Central Uplift, Tarim Basin, a breakthrough has been made in the karsted weathering crust of Lower Ordovician Yingshan Formation and reef-flat reservoir of Upper Ordovician Lianglitag Formation. As a new frontier of exploration, oil/gas distribution and controlling factors of carbonate reservoirs in the Yingshan Formation are not clearly understood. In this work, play elements of the Yingshan Formation, such as seal-reservoir bed assemblage, oil/gas properties, and faulting, were studied by core and slice observation and field investigation. High-quality reservoir beds of Yingshan Formation are quasi-layer distributed in the interstratal karst belt about 250 m below the unconformity. The reservoir beds of fracture–void and void are formed by faulting, associated fracturing, and karstification. The Yingshan Formation is a large-scale condensate gas reservoir with partly oil. Owing to different oil–gas infilling periods, isolated pools far from the faults are primarily oil in the Hercynian; oppositely, condensate gas reservoirs near the faults are intensely influenced by gas invasion during the Himalayan movement. Laterally, oil/gas distribution is controlled by stratal pinch-out and strike-slip faults. Vertically, cap rock of the third to fifth members of the Lianglitag Formation and Yingshan interior high resistivity layers are superimposed with Yingshan reservoir beds to form several seal-reservoir bed assemblages. Oil and gas are superimposed and affected by gas invasion with characteristics of oil in the upper horizon and gas in the lower horizon.  相似文献   

9.
塔里木盆地塔河地区海西晚期火山岩构造特征与油气成藏   总被引:1,自引:0,他引:1  
通过地震剖面解释,根据断裂的切割层位将研究区火山岩断裂分为3类,即深层断裂、浅层断裂、火山岩内部微断裂。通过编制这3类断裂的平面展布图,对塔河地区火山岩断裂的性质、形成期次、分布特征及形成机理进行了分析。认为深层断裂形成于加里东期-海西期,以逆冲断层为主,走向呈NNE、NE、NNW3组,断裂主要分布于塔河火山岩发育区北部、西北部。浅层断裂形成于燕山期-喜马拉雅期,以正断层为主,断裂走向呈NE、NNE向,主要分布于盐边地带和东南部盐上火山岩分布区。火山岩内部的微断裂在顶部较底部发育,主要分布于塔河地区西部的火山岩中。根据火山岩储层和构造成因类型,将塔河地区火山岩划分为3种圈闭类型,即:构造裂缝和淋滤风化共同控制的圈闭、古凸起不整合遮挡和抬升淋滤风化共同控制的圈闭、埋藏溶蚀和构造裂缝共同控制的圈闭。分析了火山岩圈闭顶部的盖层条件和火山岩的油气成藏条件,认为三叠系底部柯吐尔组泥岩可形成有效的区域性封盖,塔河地区火山岩具有良好的油气成藏条件。  相似文献   

10.
Middle and lower Ordovician carbonate rock in the Tabei Uplift of the Tarim Basin forms important fractured reservoir beds. Core and log data indicate that tectonic fractures, as the main fractures in the Tabei Uplift, could be mainly classified into two types: oblique fractures and approximately vertical fractures. The fractures are mainly NNW‐trending and NNE‐trending, coincident with the large faults nearby. Fracture abundance was also controlled by lithology, and faults nearby played a significant role. Cores, thin sections and tests show that these carbonate rocks have as much as 2.5% fracture porosity and as much as 150 md fracture permeability. Based on the intersection of fractures in cores, together with fluid inclusion temperature data, and the timing of faulting from seismic profiles, tectonic fractures were considered to be mainly formed in three periods: the late Silurian when the first‐stage oblique fractures were formed, the late Permian when approximately vertical fractures were formed, and the late Tertiary when the second‐stage oblique fractures were formed. Lower Cambrian source rocks started to enter the stage of generous hydrocarbon generation and expulsion in the Silurian. Ordovician source rocks started to enter the stage of generous hydrocarbon generation and expulsion in the Permian and enter the over‐mature stage in the late Tertiary when light oil was generated. Timing of tectonic fractures formation and burial history analysis suggest that fractures formation might coincide with oil accumulation when fractures provided the pathway and storage space for the low permeability and low porosity reservoir beds caused by previous compaction and cementation. Considering the presence of a large amount of fracture‐developed dolomite in the deeper Ordovician Penglaiba Formation, the undrilled Penglaiba Formation should be paid more attention. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

11.
详细的钻井地质学、地球物理和地球化学研究表明,塔河油田南部奥陶系内部和顶部发育多幕次的加里东期岩溶作用,主要表现在奥陶系内部牙形石带缺失、钻井放空和泥浆漏失、地震剖面上奥陶统反射波组底部上超和顶部削截,以及溶洞充填方解石的Sr同位素特征等方面。加里东期岩溶储层主要受不整合面、断裂、岩性和古地貌等因素控制,表现出明显的断控和层控特征。由此预测该储层发育区位于古风化壳剥蚀区、加里东期断裂发育区和滩相储层发育区的叠合部位,主要位于阿克库勒凸起的轴部倾没端和塔河西南部、东南部的北东向、近南北向断裂发育区。  相似文献   

12.
详细的钻井地质学、地球物理和地球化学研究表明,塔河油田南部奥陶系内部和顶部发育多幕次的加里东期岩溶作用,主要表现在奥陶系内部牙形石带缺失、钻井放空和泥浆漏失、地震剖面上奥陶统反射波组底部上超和项部削截,以及溶洞充填方解石的Sr同位素特征等方面.加里东期岩溶储层主要受不整合面、断裂、岩性和古地貌等因素控制,表现出明显的断控和层控特征.由此预测该储层发育区位于古风化壳剥蚀区、加里东期断裂发育区和滩相储层发育区的叠合部位,主要位于阿克库勒凸起的轴部倾没端和塔河西南部、东南部的北东向、近南北向断裂发育区.  相似文献   

13.
塔里木盆地海相碳酸盐岩与油气   总被引:1,自引:0,他引:1  
塔里木盆地碳酸盐岩主要分布于台盆区寒武系—奥陶系,它既可以作为油气的储层和源岩,也可以作为油气的盖层或遮挡体。碳酸盐岩主要发育于碳酸盐岩台地相和斜坡相之中,其中开阔台地及台地边缘坡折带的生物碎屑滩和砂屑滩、局限台地的白云岩坪是主要的储集相带。潜山溶孔溶洞型白云岩、石灰岩及礁滩复合体中的生物碎屑灰岩、砂屑灰岩、鲕粒灰岩、礁灰岩以及潮坪白云岩是主要的储集岩。寒武系—下奥陶统、中—上奥陶统都发育有较好的碳酸盐岩烃源岩。根据油气的分布与聚集特点,对碳酸盐岩油气藏作了分类。论述了塔里木盆地碳酸盐岩油气勘探的前景和重要目标。  相似文献   

14.
T7^2界面为上奥陶统桑塔木组泥岩与良里塔格组灰岩地震反射界面,是塔里木盆地塔中、塔北隆起上奥陶统内部的一个重要构造-层序转换面,是早古生代碳酸盐台地型沉积向陆源碎屑充填沉积转换的标志.过去普遍认为两个组之间为连续沉积,界面性质系海侵上超并赋予“淹没台地”的涵义.但随着近年塔河油田南部地区的勘探和塔中隆起区北缘Ⅰ号断裂带油气富集规律性的深入研究,表明T7^2界面是一个区域性的古暴露界面和沉积间断界面.界面之下的上奥陶统良里塔格组顶面有明显的削蚀和截切现象,残存厚度在塔北、塔中之间存在极大的差异,反映塔北隆起T7^2界面的构造及风化壳岩溶作用明显强过塔中隆起.古暴露和风化壳岩溶作用导致T7^2界面之下的良里塔格组碳酸盐岩广泛发育岩溶,是塔中低凸起北缘Ⅰ号断裂构造带的主要油气藏聚集层位;在塔河南部,形成了一套厚度最大可达300m并贯穿良里塔格组与下伏恰尔巴克组、一间房组和鹰山组的古岩溶洞穴系统,造就了塔河油田今天以南部斜坡区上奥陶统良里塔格组灰岩古岩溶洞穴系统为主要油气储层的勘探大场面.  相似文献   

15.
Marine carbonate reservoirs, as a focus of petroleum exploration and development in China, are involved with high exploration risk and prediction difficulty owing to high heterogeneity and diversity of reservoir beds. In the Tarim Basin, NW China, carbonate reservoirs host about 38% of the whole basin's hydrocarbon resources in a large prospecting area mainly distributed in the Cambrian and Ordovician rocks in central (Tazhong) and northern (Tabei) Tarim. Recently, a better understanding has been made of the karsted weathering crust at the top of the Lower Ordovician Yingshan Formation in the northern slope area of the Tazhong Low Rise, Central Uplift, Tarim Basin. As a new frontier of exploration, oil/gas distribution and controlling factors of carbonate reservoirs in the Yingshan Formation are not clearly understood. In this work, we investigated the reservoir beds and oil/gas properties in 13 wells in Well block ZG‐43 on the No. 10 structural belt in the Tazhong Low Rise, and studied hydrocarbon accumulation characteristics with seismic and geochemical data. The Yingshan Formation in Well block ZG‐43 is mainly composed of calcarenite, dolomitic limestone, dolomite, cryptite, as low porosity and low permeability reservoir beds, with fracture‐void porosity constituting the main reservoir pore space. Oil/gas is quasi‐layer distributed beneath the unconformity between the Yingshan and Lianglitag formations to a depth of 140 m. The oil in Well block ZG‐43 is condensate with low density, low viscosity, low sulphur, low resin, low asphaltene, and high wax. The gas is 87.3% methane, generally containing H2S. The oil/gas distribution pattern is oil in the east and gas in the west, and H2S content in the west is lower than that in the east. The controlling factors for hydrocarbon are multi‐source supply and multi‐phase charging, interstratal karstification, hydrothermal activity, structural location and sealing condition. A structural–lithological trap is the main type of oil/gas accumulation. Oil/gas distribution was clearly affected by strike–slip faults. Oil/gas with multi‐source supply and multi‐phase charging was controlled by favourable local palaeo‐highs, and affected by later karsting and hydrothermal activity, as well as gas invasion in the Himalayan (Cenozoic) period. Under the caprock of compact limestone in the third to fifth members of the Lianglitag Formation, oil/gas migrated up along the strike–slip fault planes, and moved laterally to both sides in a ‘T’ shape, and formed large‐scale quasi‐layer condensate gas reservoirs controlled by reservoir bed quality. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

16.
塔里木盆地塔河油田奥陶系大型油气藏形成条件   总被引:31,自引:4,他引:31  
林忠民 《地质论评》2002,48(4):372-376
塔河油田位于塔里木盆地北部沙雅隆起阿克库勒凸起的西南部,它是在长期发育的阿克加勒鼻状古隆起基础上形成的下奥陶统盐碉岩溶-缝洞型大型油气田。受区域构造-沉积背景控制,塔河地区下奥陶统属于碳酸盐岩开阔台地环境,一直处于继续性隆起状况,是油气运聚的长期指向区,并经历了多欠的构造运动。岩溶作用和成岩作用的叠加改造,形成了具强烈非均质性的岩溶-缝洞型储层,油气主要赋存于距风化壳不整合面200m范围内的岩溶缝洞系统中。勘探成果表明,长期发育的继承性古隆、丰富的多油源供给、强烈非均质性的岩溶-缝洞型储层及优良的储盖配置、多层次和多类型圈闭的广泛发育、以及由岩溶缝洞-断裂-不整合面组成的疏导体系,是形成塔河大型油气田的重要条件。  相似文献   

17.
塔河油田奥陶系海西早期、加里东中期岩溶对比研究   总被引:5,自引:0,他引:5  
塔河油田为我国第一个、第一大古生界海相大油田,奥陶系是最主要的层位,产量占塔河油田总产量的75%以上,海西早期、加里东中期岩溶作用对塔河油田奥陶系碳酸盐岩储层的形成和分布具有重要的控制作用。通过岩溶的平面分布、缝洞充填物类型、古生物、锶同位素、碳、氧同位素、稀土元素、包裹体、荧光等可以区分海西早期岩溶和加里东中期岩溶;海西早期岩溶古地貌起伏较大,对储层具有明显的控制作用,加里东中期岩溶古地貌总体起伏较小,对储层的控制作用不明显。海西早期岩溶主要受构造、不整合面、古地貌和岩性的控制,其中构造是最重要的因素;加里东中期岩溶主要受构造、加里东中期Ⅰ、Ⅱ幕不整合面、岩性的控制,具有明显的断控和层控特征,最后对海西早期、加里东中期岩溶有利储层分布区进行了预测。  相似文献   

18.
塔河油田奥陶系油藏TK440井组注水压锥地质模式研究   总被引:1,自引:0,他引:1  
塔里木盆地塔河油田奥陶系致密灰岩中的缝洞油藏储集空间主要为由天然裂缝和酸压裂缝沟通的一个或多个大型管道状洞穴构成的复杂系统.塔河油田四区TK440,TK449H和TK424C井等3口相互连通的油井见水直至水淹的开发过程表明产油层存在多个不同的边底水侵入通道,并不遵循由低到高逐渐见水的常规特征.在3口油井水淹之后,通过低部位的TK440井探索性注水使高部位TK424C井含水下降,而TK449H则变成不产水,使两口井的油产量明显提高.根据注水过程中的油水关系变化研究,提出TK440井组的储层概念模式和全新的注水压雏模式,即低部位注水可能实现对高部位水淹井从原水侵相反方向上补充刺余油体能量,导致高部位水淹井含水下降起到压制水锥的效果,从而达到提高采收率的作用.  相似文献   

19.
塔河油田十二区奥陶系油藏为碳酸盐岩岩溶缝洞型油藏,油气水分布规律复杂。对原油的物理性质、平面及纵向上的分布特征、油水界面等的分析表明,区内主要为高黏度、含蜡、高含硫的超重质原油。平面上密度分布呈西部和东部低、中部高的特点;纵向上原油密度与深度关系不大。高产油区多沿主断裂带分布。油水界面不统一,但从东向西随中奥陶统顶面的降低而降低。认为该区油气分布不受现今构造位置高低的控制,而是受区域构造背景、断裂带的分布、储集层的发育程度、成藏演化过程以及不整合面等因素综合控制。  相似文献   

20.
塔河油田奥陶系古岩溶洞穴识别及预测   总被引:18,自引:1,他引:18  
李宗杰  王勤聪 《新疆地质》2003,21(2):181-184
在塔河油田奥陶系中蕴藏着丰富的石油资源,碳酸盐岩储层的主要储集空间为裂缝和溶蚀孔、洞,其中岩溶洞穴是最主要的储集空间,研究岩溶洞穴的展布具重要意义.应用钻井、测井、地震等资料分析了岩溶洞穴的识别标志,并利用地震反射结构和振幅变化率技术预测了岩溶洞穴在塔河油田某区的展布.  相似文献   

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