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1.
塔北地区三叠系油藏原油中性含氮化合物和烷基苯酚自南向北存在着运移分馏作用,表现为中性含氮化合物的绝对浓度由高变低,屏蔽型化合物相对富集而部分屏蔽型化合物和裸露型化合物相对贫瘠,1,8 DMCA/1,7 DM CA,1,8 DMCA/2,7 DMCA,1,8 DMCA/部分屏蔽化合物,1,8 DMCA/裸露化合物的比值由小变大,而 [a]/[c]的比值则由大变小,烷基苯酚化合物 2 MPH/3 MPH和 2,6 DMPH/2,3 DMPH的比值亦由小变大。此外同一构造带中原油自西向东,从下而上中性含氮化合物同样存在着运移分馏效应。研究还表明塔北地区三叠系原油横向上自南向北,从吉拉克地区向桑塔木断垒和轮南断垒带方向运移,而侧向上原油从下而上,自西至东进行了运移和调整  相似文献   

2.
塔里木盆地北部奥陶系油气相态及其成因分析   总被引:8,自引:3,他引:5  
塔里木盆地北部地区奥陶系是最重要的勘探层系,油气资源丰富;同时油气相态复杂多样,既有凝析气藏、正常油藏,也有稠油油藏、沥青等。通过对油气藏形成演化与保存过程的系统分析,结合油气地球化学和流体包裹体等分析数据,发现油气相态的多样性与油气多期次充注与次生蚀变作用有关。提出塔北隆起的东部奥陶系存在三期油气充注过程,分别发生在加里东运动晚期-海西早期、海西运动晚期、喜马拉雅运动晚期,原油主要来源于中、上奥陶统烃源岩,天然气主要来自与寒武系烃源岩有关的液态烃的裂解;塔北隆起的中西部奥陶系的油气充注主要发生在海西运动晚期。塔北奥陶系油藏形成以后,经历了三期明显的调整改造过程:海西早期构造抬升导致志留-泥盆系遭受剥蚀,东部源自寒武系油气的古油藏遭受破坏,形成沥青;三叠系沉积前的晚海西运动,使得奥陶系生源的油藏大范围遭受降解稠化;晚喜山期,来自于满加尔坳陷的天然气自东向西充注,致使隆起东部早期形成的油藏发生强烈的气侵改造,形成次生凝析气藏。而中西部奥陶系油藏在三叠系沉积前遭受降解稠化后,一直处于沉降深埋过程,油藏得到有效保存;由于成藏时间较早,轻质组分散失较多,气油比极低,油质较稠。研究认为,油气相态的多样性主要受晚海西期构造运动的抬升造成的生物降解作用和喜马拉雅晚期构造运动造成的天然气自东向西大规模充注对油藏进行气洗改造两大过程的控制。  相似文献   

3.
Molecular data from a large set of source rock, crude oil and oil-containing reservoir rock samples from the Tarim Basin demonstrate multiple sources for the marine oils in the studied areas of this basin. Based on gammacerane/C31 hopane and C28/(C27 + C28 + C29) sterane ratios, three of the fifteen crude oils from the Tazhong Uplift correlate with Cambrian-Lower Ordovician source rocks, while the other crude oils from the Tazhong Uplift and all 39 crude oils from the Tahe oilfield in the Tabei Uplift correlate with Middle-Upper Ordovician source rocks. These two ratios further demonstrate that most of the free oils and nearly all of the adsorbed and inclusion oils in oil-containing reservoir rocks from the Tazhong Uplift correlate with Cambrian-Lower Ordovician source rocks, while the free and inclusion oils in oil-containing carbonates from the Tahe oilfield correlate mainly with Middle-Upper Ordovician source rocks. This result suggests that crude oils in the Tazhong Uplift are partly derived from the Cambrian-Lower Ordovician source rocks while those in the Ordovician carbonate reservoirs of Tahe oilfield are overwhelmingly derived from the Middle-Upper Ordovician source rocks.The scatter of C23 tricyclic terpane/(C23 tricyclic terpane + C30 17α,21β(H)-hopane) and C21/(C21 + ΣC29) sterane ratios for the free and inclusion oils from oil-containing carbonates in the Tahe oilfield possibly reflects the subtle organofacies variations in the source rocks, implying that the Ordovician reservoirs in this oilfield are near the major source kitchen. In contrast, the close and positive relationship between these two ratios for oil components in the oil-containing reservoir rocks from the Tazhong Uplift implies that they are far from the major source kitchen.  相似文献   

4.
塔里木盆地塔北、塔中地区四口井(库南1井,轮南46井,塔中12井和塔参1井)寒武-奥陶系12个碳酸盐岩烃源岩(泥灰岩,泥质灰岩和云岩)岩芯样品抽提物芳烃组分中的二苯并噻吩类化合物组成和丰度变化特征可分为三种类型:Ⅰ二苯并噻吩、甲基二苯并噻吩型;Ⅱ二苯并噻吩、甲基二苯并噻吩、二甲基二苯并噻吩+三甲基芴混合物型;Ⅲ二苯并噻吩、甲基二苯并噻吩、二甲基二苯并噻吩和三甲基二苯并噻吩型。研究的塔北、塔中隆起11个海相油二苯并噻吩类化合物分布类型均为二苯并噻吩、甲基二苯并噻吩、二甲基二苯并噻吩和三甲基二苯并噻吩型,和海相烃源岩二苯并噻吩类化合物第Ⅲ种分布类型完全相同。据此推断:塔北隆起8个海相油可能主要来源于塔北轮南地区下奥陶统;塔中隆起3个海相油可能来源于塔中地区中-上奥陶统。  相似文献   

5.
C2-carbazole isomers have been investigated in crude oils from the Hui-Liu Structure Ridge (HLSR) in the Pearl River Mouth Basin (PRMB), South China Sea. The NH shielded isomer, as well as the NH partially shielded isomers, was detected in high abundance and the NH exposed isomers in lower abundance. A small-enrichment trend of 1,8-dimethylcarbazole (DMC) was observed in crude oils along the western part of HLSR (WPHLSR), which may indicate little effect of migration on the C2-carbazole distributions. Two strikingly different distribution patterns of NH partially shielded isomers were observed in the reservoirs along the WPHLSR: one with a preference of 1,3- and 1,6-DMCs and the other with a preference of 1,4- and 1,5-DMCs. All of the oils occurring in the Upper reservoirs have a preference of 1,3- and 1,6-DMCs, whereas those trapped in the Lower reservoirs show a preference of 1,4- and 1,5-DMCs, which may indicate there are two petroleum migration systems in the WPHLSR.  相似文献   

6.
Silurian sandstone in Tarim Basin has good reservoir properties and active oil and gas shows, especially thick widely-distributed bituminous sandstone. Currently, the Silurian was found containing both bitumen and conventional reservoirs, with petroleum originating from terrestrial and marine source rocks. The diversity of their distribution was the result of "three sources, three stages" accumulation and adjustment processes. "Three sources" refers to two sets of marine rocks in Cambrian and Middle-Upper Ordovician, and a set of terrestrial rock formed in Triassic in the Kuqa depression. "Three stages" represents three stages of accumulation, adjustment and reformation occurring in Late Caledonian, Late Hercynian and Late Himalayan, respectively. The study suggests that the Silurian bitumen is remnants of oil generated from Cambrian and Ordovician source rocks and accumulated in the sandstone reservoir during Late Caledonian-Early Hercynian and Late Hercynian stages, and then damaged by the subsequent two stages of tectonic uplift movements in Early Hercynian and Pre-Triassic. The authors presumed that the primary paleo-reservoirs formed during these two stages might be preserved in the Silurian in the southern deep part of the Tabei area. Except for the Yingmaili area where the Triassic terrestrial oil was from the Kuqa Depression during Late Himalayan Stage, all movable oil reservoirs originated from marine sources. They were secondary accumulations from underlying Ordovician after structure reverse during the Yanshan-Himalayan stage. Oil/gas shows mixed-source characteristics, and was mainly from Middle-Upper Ordovician. The complexity and diversity of the Silurian marine primary properties were just defined by these three stages of oil-gas charging and tectonic movements in the Tabei area.  相似文献   

7.
剥蚀量恢复是古构造演化恢复的基础,对于恢复盆地沉积地层格架,研究盆地隆坳格局迁移、油气分布聚集关系等具有重要意义。我国最大沉积盆地塔里木盆地的塔北地区中-下奥陶统地层油气资源丰富,在经历多次构造运动后,抬升剥蚀严重。本文按照“同层多期”的思想识别了对塔北地区油气勘探举足轻重的中-下奥陶统顶面经历剥蚀的5个主要构造期,采用“地震地层综合法”,在精细地震资料解释的基础上计算了其在5个主要构造期的剥蚀量。通过分析剥蚀过程,认为中-下奥陶统顶面从加里东中期到喜山期剥蚀范围依次减小,剥蚀厚度在加里东中期最大剥蚀可达915 m,位于现在的英买1井附近。海西早期剥蚀最大厚度达892 m,位于现今两北地区北部一带;海西晚期最大剥蚀厚度位于现今的齐古1井附近,剥蚀量可达690 m;印支—燕山期最大剥蚀厚度可达546 m,位于现今阿北1井附近;喜山期对中-下奥陶统顶面的影响已经不如前几期,最大剥蚀厚度仅338 m,位于现今的沙雅6井附近。就5期总剥蚀厚度而言,最大可达936 m,位于顺13井附近。油气运聚的总体趋势是在塔北地区北部不断抬升遭受广泛剥蚀的前提下,油气沿着以中-下奥陶统顶面为核心辐射出的立体复杂疏导体系向高部位的塔北隆起运移成藏。油气有利勘探区应在阿克库勒凸起和“两北”地区的古斜坡位置,正如塔北地区满深1井(沙雅县境内)获得高产油气流的勘探实践所印证。  相似文献   

8.
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   

9.
塔里木盆地塔北隆起哈拉哈塘地区奥陶系由于现今构造位置低,埋深在6500~8000m,长期以来一直将其作为塔北隆起的一个次级凹陷单元,并认为是一个海相油气的生烃凹陷,制约了哈拉哈塘的油气勘探。本文通过对哈拉哈塘构造解析和沉降演化过程恢复,发现哈拉哈塘地区是从石炭纪才开始转为负向构造单元,加里东-早海西期,它属于轮南大型古潜山的西斜坡部位;奥陶系鹰山组-一间房组碳酸盐岩经历了多期岩溶的叠加改造,风化岩溶缝洞体储层发育。通过最新钻井资料及油气地球化学分析数据,证实哈拉哈塘奥陶系沉积时期不是生烃凹陷,不发育烃源岩,哈拉哈塘及其以北地区的油气是来自南部满西地区的中、上奥陶统烃源岩。油气藏解剖表明,哈拉哈塘地区在晚海西期成藏;三叠系沉积前北部构造抬升,导致奥陶系油藏遭受局部破坏和降解。自三叠纪沉积以来,奥陶系油藏一直处于持续深埋过程,盖层不断加厚,油藏基本保持了晚海西期成藏时的形态,因此,哈拉哈塘地区是一个古老的油气系统。油气成藏条件分析表明,哈拉哈塘地区油气成藏条件优越,生储盖条件配置良好,奥陶系碳酸盐岩岩溶储层广泛分布,并处在油气向古隆起高部位运移的有利路径上,具有大面积、准层状富集油气的特征。  相似文献   

10.
Carbon isotopic compositions were determined by GC–IRMS for individual n-alkanes in crude oils and the free, adsorbed and inclusion oils recovered by sequential extraction from reservoir rocks in the Tazhong Uplift and Tahe oilfield in the Tabei Uplift of Tarim Basin as well as extracts of the Cambrian–Ordovician source rocks in the basin. The variations of the δ13C values of individual n-alkanes among the 15 oils from the Tazhong Uplift and among the 15 oils from the Triassic and Carboniferous sandstone reservoirs and the 21 oils from the Ordovician carbonate reservoirs in the Tahe oilfield demonstrate that these marine oils are derived from two end member source rocks. The major proportion of these marine oils is derived from the type A source rocks with low δ13C values while a minor proportion is derived from the type B source rocks with high δ13C values. Type A source rocks are within either the Cambrian–Lower Ordovician or the Middle–Upper Ordovician strata (not drilled so far) while type B source rocks are within the Cambrian–Lower Ordovician strata, as found in boreholes TD2 and Fang 1. In addition, the three oils from the Cretaceous sandstone reservoirs in the Tahe oilfield with exceptionally high Pr/Ph ratio and δ13C values of individual n-alkanes are derived, or mainly derived, from the Triassic–Jurassic terrigenous source rocks located in Quka Depression.The difference of the δ13C values of individual n-alkanes among the free, adsorbed and inclusion oils in the reservoir rocks and corresponding crude oils reflects source variation during the reservoir filling process. In general, the initial oil charge is derived from the type B source rocks with high δ13C values while the later oil charge is derived from the type A source rocks with low δ13C values.The δ13C values of individual n-alkanes do not simply correlate with the biomarker parameters for the marine oils in the Tazhong Uplift and Tahe oilfield, suggesting that molecular parameters alone are not adequate for reliable oil-source correlation for high maturity oils with complex mixing.  相似文献   

11.
塔里木盆地塔北隆起发育两组呈小角度相交(40°)的透入性X型走滑断裂,分别沿着NNE走向和NNW延伸。在对塔北哈拉哈塘地区三维地震资料解释的基础上,对走滑断层的几何展布特征以及断层的剖面变形特征进行研究;同时重点解析了RP6断裂和HA13断裂,分析比较NNW向与NNE向断层的变形及发育特征差异;结合盆地重磁资料以及周缘造山带的活动特征,对塔北隆起小角度的X型走滑断层的发育机制以及演化进行了分析。研究表明,塔北隆起走滑断层在垂向上具有明显的分层变形特征,分为三个构造层:震旦系-中寒武统下构造层(TH3界面以下)、上寒武统-中奥陶统中构造层(TH3-TO3t界面)和上奥陶统-石炭系上构造层(TO3t-TP界面)。断层在下构造层和中构造层中整体处于压扭环境,多发育正花状构造;上构造层中断层主要发育负花状构造或正断层,整体处于张扭环境。两组断裂比较,NNW向断裂活动性强,在各构造层中均有显著的断裂特征发育,垂向连通性强,发育先存基底断裂,而NE向断层主要发育在中构造层,在下构造层和上构造层中断层发育不明显。活动性分析表明,断层的形成与演化具有多期性,走滑断层的形成经历了三期主要活动:中寒武世末、中晚奥陶世和志留纪-石炭纪。塔北隆起X型走滑断裂的形成受到了NNW向基底断裂和薄弱带的控制,NNW向先存基底断裂带或薄弱带优先发育走滑断裂,基底断裂与主挤压应力方向的夹角小于45°-Φ/2,NNE断层的发育受NNW向先存断裂限制,最终形成小角度相交的X型断裂。  相似文献   

12.
华南下寒武统Ni-Mo-Se多金属层S-Se同位素体系   总被引:1,自引:0,他引:1  
张斌  朱光有  苏劲  卢玉红 《地学前缘》2012,19(4):276-283
为了进一步理解华南下寒武统Ni-Mo-Se多金属层的物质来源及形成环境,文中分析了遵义中南村和张家界后坪两个Ni-Mo-Se矿层及其围岩的黄铁矿硫同位素和全岩的硒同位素组成。硫同位素组成显示两个Ni-Mo-Se矿层形成时的环境存在区域性差别,中南村矿层形成于间歇开放的海洋环境,而后坪矿层形成于封闭的缺氧(静海)环境。较大的硫同位素范围暗示硫酸盐还原菌控制硫同位素的分馏,而热液流体可能提供了大量金属元素,从而导致矿层富集大量的硫化物和稀有金属。硒同位素组成指示牛蹄塘组底部热液流体的Se可能重新经历了氧化还原循环,而Se的富集过程可能受有机质和粘土矿物吸附或类质同象过程控制。因此,控制多金属富集的因素主要为富集金属的热液流体的参与和缺氧环境下的自生沉积。  相似文献   

13.
多源多灶的生烃背景导致轮南地区的油气成藏过程高度复杂化.基于油气成藏动力学理论,综合运用钻井、地震以及地球化学等资料对轮南低凸起关键时期油气输导体系格架及典型油气藏输导样式的研究表明,由于志留系沥青砂盆地级的分布特征有力地证实了加里东晚期奥陶系岩溶缝洞体尚未形成,因此志留系砂体是加里东晚期源自寒武系烃源岩的烃类向轮南低凸起横向输导的主要通道;其次,海西早期的强烈抬升及长时间的暴露剥蚀导致表生岩溶作用深度改善了轮南地区碳酸盐岩层系的储集效能,而潜山风化壳之下的奥陶系岩溶缝洞储集体是这一时期源自满加尔坳陷内奥陶系烃源岩烃类的横向运载层;喜山期油气成藏的实质为海西晚期奥陶系整装油气藏形成后的调整改造过程,包括过量干气的气洗改造以及不同尺度断裂的垂向调整.轮南油田、桑塔木油田以及解放渠东油田三叠系油气藏的形成均受控于深大断裂的垂向输导.同时,上覆盖层的强制性封闭将喜山期干气的横向输导路径束缚于奥陶系内部,奥陶系油藏经气洗相分馏改造转变为次生的饱和凝析气藏.而由于桑塔木断垒带地区连接奥陶系与石炭系的层间断裂以及轮古东地区奥陶系层内断裂活动所诱发的泄压相分馏改造,不仅在石炭系圈闭形成了纯气相的不饱和凝析气藏,还直接控制了轮古东油田凝析气藏及其流体性质的分布.   相似文献   

14.
塔河油田加里东期岩溶储层特征及分布预测   总被引:5,自引:0,他引:5  
岩溶储层是塔河油田奥陶系碳酸盐岩的主要储层,是海西早期与加里东期岩溶作用的结果。海西期岩溶储层主要发育在石炭系直接覆盖于中下奥陶统之上的地区,上奥陶统覆盖区的岩溶储层主要是加里东期岩溶作用形成的。地震剖面奥陶系反射波组底部上超、顶部削切特征,牙形剌化石带的缺失、志留系层序地层对比均证实奥陶系在加里东中期有过隆升剥蚀,说明塔河油田具备有加里东岩溶作用的地质条件,锶同位素特征证实了加里东期岩溶洞穴的存在。在上奥陶统覆盖区,岩溶储层主要发育于加里东不整合面(T47和T27)下300 m之内,岩溶储层中,岩溶洞穴高度主要为0~30 m之间,最大可达75 m,显然是加里东中期岩溶作用的产物。加里东期断裂控制了加里东岩溶储层的发育,由此预测了加里东期岩溶储层的发育区带。  相似文献   

15.
多旋回盆地油气藏形成后多经历复杂的构造改造作用,并对油气的保存与分布具有重要的控制作用。结合塔里木盆地油气藏实例分析,将碳酸盐岩油气藏断裂改造作用划分为断裂切割改造、断裂抬升改造、断裂褶皱改造、断裂再活动改造与断裂成岩封闭改造等5种类型。断裂改造方式主要有圈闭变化、盖层减薄、水力作用、压力变化与成岩变化等,并造成油气逸散与补充、水洗与降解及流体性质的变化等,从而导致碳酸盐岩油气藏与油气分布的复杂性。断裂改造作用研究对多旋回油气盆地勘探开发具有重要借鉴意义。  相似文献   

16.
《Applied Geochemistry》2001,16(9-10):1269-1284
Chemistry of major and minor elements, 87Sr/86Sr, δD, and δ18O of oilfield waters, and 87Sr/86Sr of whole rock were measured from Paleozoic strata in the Central Tarim basin, NW China. The aim is to elucidate the origin and migration of formation water and its relation to petroleum migration. High salinity oilfield waters in Carboniferous, Silurian and Ordovician reservoirs have maintained the same Na/Cl ratio as seawater, indicative of subaerially evaporated seawater. Two possible sources of evaporitic water are Carboniferous (CII) and Cambrian, both of which contain evaporitic sediments. Geographic and stratigraphic trends in water chemistry suggest that most of the high salinity water is from the Cambrian. Strontium, H and O isotopes as well as ion chemistry indicate at least 3 end member waters in the basin. High-salinity Cambrian evaporitic water was expelled upward into Ordovician, Silurian and Carboniferous reservoirs along faults and fractures during compaction and burial. Meteoric water has likely invaded the section throughout its history as uplift created subaerial unconformities. Meteoric water certainly infiltrated Silurian and older strata during development of the CIII unconformity and again in recent times. Modern meteoric water enters Carboniferous strata from the west and flows eastward, mixing with the high salinity Cambrian water and to a lesser degree with paleometeoric water. The third end member is highly radiogenic, shale-derived water which has migrated eastward from the Awati Depression to the west. Enrichment of Ca and Sr and depletion of K, Mg, and SO4 relative to the seawater evaporation trajectory suggest waters were affected by albitization of feldspars, dolomitization, illitization of smectite, and SO4 reduction. The mixing of meteoric water occurred subsequently to seawater evaporation, main water-rock interactions, and brine migration. The direction of brine migration is consistent with that of petroleum migration, suggesting water and petroleum have followed the same migration pathways.  相似文献   

17.
准噶尔盆地西北缘南部红车断裂带- 车排子凸起油气藏众多,原油物理化学性质和地球化学特征十分复杂,原油类型及其来源长期存在很大争议。本文在准噶尔盆地不同时代烃源岩生成原油典型地球化学特征与主要油源判识指标归纳总结的基础上,对红车断裂带- 车排子凸起原油地球化学特征和来源进行系统分析研究,将该区域原油分为五类,其中三类原油分别来源于二叠系湖相烃源岩、中—下侏罗统煤系烃源岩、古近系安集海河组湖相烃源岩,另外两类为混合原油,分别为来源于二叠系湖相烃源岩的生物降解稠油与中—下侏罗统煤系烃源岩生成的正常原油和古近系湖相烃源岩生成的正常原油的混合原油。红车断裂带石炭系—白垩系油藏原油主要来源于沙湾凹陷二叠系湖相烃源岩,车排子凸起东北部春风油田稠油来源于沙湾凹陷二叠系湖相烃源岩;车排子凸起东侧- 红车断裂带西侧新近系沙湾组油藏轻质原油来源于四棵树凹陷古近系湖相烃源岩;车排子凸起中部春光油田白垩系—古近系油藏稠油为二叠系来源稠油和侏罗系正常原油的混合原油,新近系沙湾组油藏稠油为二叠系来源稠油与新近系正常原油的混合原油;车排子凸起西部石炭系—古近系油藏轻质原油来源于四棵树凹陷中—下侏罗统煤系烃源岩,而新近系沙湾组油藏轻质原油来源于四棵树凹陷古近系湖相烃源岩。本文对准噶尔盆地西北缘南部地区油气藏成藏研究及区域油气勘探决策具有重要参考作用。  相似文献   

18.
Two oil families in Ordovician reservoirs from the cratonic region of the Tarim Basin are distinguished by the distribution of regular steranes, triaromatic steroids, norcholestanes and dinosteroids. Oils with relatively lower contents of C28 regular steranes, C26 20S, C26 20R + C27 20S and C27 20R regular triaromatic steroids, dinosteranes, 24-norcholestanes and triaromatic dinosteroids originated from Middle–Upper Ordovician source rocks. In contrast, oils with abnormally high abundances of the above compounds are derived from Cambrian and Lower Ordovician source rocks. Only a few oils have previously been reported to be of Cambrian and Lower Ordovician origin, especially in the east region of the Tarim Basin. This study further reports the discovery of oil accumulations of Cambrian and Lower Ordovician origin in the Tabei and Tazhong Uplifts, which indicates a potential for further discoveries involving Cambrian and Lower Ordovician sourced oils in the Tarim Basin. Dinosteroids in petroleum and ancient sediments are generally thought to be biomarkers for dinoflagellates and 24-norcholestanes for dinoflagellates and diatoms. Therefore, the abnormally high abundance of these compounds in extracts from the organic-rich sediments in the Cambrian and Lower Ordovician and related oils in the cratonic region of the Tarim Basin suggests that phytoplankton algae related to dinoflagellates have appeared and might have flourished in the Tarim Basin during the Cambrian Period. Steroids with less common structural configurations are underutilized and can expand understanding of the early development history of organisms, as well as define petroleum systems.  相似文献   

19.
塔里木盆地塔北地区具有寒武系特征原油的分布及其成因   总被引:2,自引:2,他引:0  
塔里木盆地塔北地区油气资源十分丰富,油气成因复杂。海相原油主要来自于寒武系或奥陶系烃源岩,或者二者混源。其中,对混源油定性研究多、定量研究少。随着勘探的深入和精细,需要定量回答油气的混源比例。本文根据不同端元油的人工混源配比实验,发现生物标志化合物具有随混源比例变化的特征,建立了混源比例与生标参数之间的关系式,并对塔北地区混源油中寒武系原油比例做了定量计算,进而研究了其分布规律与成因机制。研究认为,塔北地区原油主要来自于中、上奥陶统烃源岩,寒武系烃源岩有少量贡献。从空间分布上来看,具有从西到东、从浅至深,混源油中寒武系烃源岩来源的原油比例具有逐渐增高的特点,高比例寒武系来源原油的混源油主要分布在轮南低凸起的桑塔木断垒带东侧和轮东断裂周围,明显受烃源岩分布、输导体系和成藏过程等因素控制,该研究对进一步认识塔北地区油气生成、运移、聚集规律,以及指导油气勘探都具有重要意义。  相似文献   

20.
塔里木盆地顺北地区超深层垂深为7 200~7 863.6 m的奥陶系一间房-鹰山组储层中发现了挥发油藏和轻质油藏,油藏赋存深度下限不断突破传统认识.使用地球化学方法研究了顺北地区不同断裂带油气藏的地球化学特征及蚀变作用.顺北地区不同断裂带原油均具有轻碳同位素特征,C23三环萜烷/C21三环萜烷>1,C28甾烷含量低的特点,三芴系列组成中具有较高含量的二苯并噻吩含量,表明与塔河原油具有相似的母源.(C21+C22)甾烷/(C27~C29)甾烷、C27重排/C27规则甾烷、甲基菲指数和二苯并噻吩系列成熟度表明顺北地区原油成熟度呈现1号断裂带(含分支断裂)≈3号断裂带>次级断裂带>5号断裂带>7号断裂的特征,原油成熟度受控于油藏初始静温.顺北地区奥陶系天然气均为湿气,天然气甲烷碳同位素分布范围为-50.7‰~-44.7‰,不同断裂带天然气成熟度的差异与不同断裂带原油成熟度的分布规律相似.顺北地区原油(4+3)甲基双金刚烷含量较低,分布范围为9.25~36.44 μg/g,指示原油裂解程度较低.原油中均可检测出完整系列的低聚硫代金刚烷,含量分布范围为0.76~18.88 μg/g,表明原油硫酸盐热化学还原作用(TSR)弱,顺北地区天然气为湿气及甲烷碳同位素轻表明油气藏未遭受气侵作用.地温研究表明顺北地区地温梯度低,为2.12℃/100 m,埋深8 000 m的地层目前仅为160~170℃,地质历史时期,奥陶系地温未超过170℃,未达到原油大量裂解温度的门限.顺北地区奥陶系长期的低地温加之油气藏蚀变作用弱,是顺北地区奥陶系保持挥发油相的关键.   相似文献   

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