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1.
喜山期的干气对塔里木盆地塔中Ⅰ号坡折带古油藏气侵作用是导致油气分馏形成凝析气藏的重要原因,前人关于塔中地区气侵的研究多为定性描述,而定量化的研究较少。以处于塔中Ⅰ号坡折带内带的塔中83井区为研究对象,剖析研究区的成藏地质条件,总结其油气性质、组分特征,进而开展原油样品正构烷烃定量测试,计算研究区不同油气藏的原油正构烷烃损失率Q,对其气侵强度进行了定量化评价。正构烷烃损失率Q的计算结果表明,研究区油气藏都遭受了不同程度气侵(Q变化范围为12%~86%),气侵强度在平面上表现出由北西向南东逐渐减小,剖面上由下向上逐渐变小,同时,气侵导致油气性质改变,原油中的低碳数正构烷烃溶于气相,脱离油相形成与凝析油伴生的高含腊量原油,证实了沿塔中82走滑断裂和塔中Ⅰ号断裂交汇部位充注的高-过成熟度干气对研究区油气藏的气侵作用,为该区油气成藏研究提供了定量证据。  相似文献   

2.
轮南低凸起气洗作用响应及定量评价   总被引:2,自引:0,他引:2  
自喜山期, 过量干气自东向西对轮南低凸起原始油藏的大规模侵入、冲刷, 诱发本区持续性气洗分馏作用的发生.在各组分气液溶解平衡的格架下, 气洗作用将导致残余油中正构烷烃的大量损失以及次生凝析气藏的形成.地球化学研究表明, 残余油与凝析油中轻烃组分(C6-C8) 的变化趋势具有典型的气洗分馏特征.同时, 基于气洗作用模型, 通过对各层系原油正构烷烃相对蒸发量(Q) 的计算, 定量描述了轮南地区气洗作用的强度.计算结果显示, 奥陶系的油气藏曾遭受强烈的气洗作用, 原油中正构烷烃的相对蒸发量由东向西表现出依次递减的特征.其中, 轮古东地区Q值高达97%;位于轮南低凸起中部的轮古2井以及轮古18井地区, 正构烷烃相对蒸发量较小(Q=20%~76%); 而在更加靠近西部的轮古17及轮古100井, 其原油中正构烷烃分布正常(Q=0), 并未发生气洗分馏作用.另一方面, 石炭系以及三叠系的油气藏均表现出未遭受气洗作用的特征, 证实了喜山期大量干气的优势运移通道被限制于海西早期运动所形成的奥陶系岩溶缝洞体系中的事实.因此, 奥陶系, 尤其是位于临近气源区的轮古东地区, 是轮南地区气藏的有利靶区.   相似文献   

3.
塔里木盆地塔中礁滩体大油气田成藏条件与成藏机制研究   总被引:4,自引:6,他引:4  
中国海相碳酸盐岩油气勘探近年来进展很快,发现了一批大型油气田。塔中地区是塔里木盆地的重点勘探区和富油气区,奥陶系蕴藏了丰富的油气资源。奥陶系良里塔格组受塔中I号坡折带的控制发育陆棚边缘礁滩体,储层性质为低孔-特低孔、低渗灰岩储层,埋深在4500~6500m。储层的形成和分布受早期高能沉积相带、溶蚀作用和断裂作用等因素的控制,有效储层的空间展布控制了油气的分布与大面积成藏。油源对比认为,塔中良里塔格组礁滩体油气藏的原油主要来自于中上奥陶统烃源岩,并混有寒武系烃源岩成因的原油;天然气主要来自于寒武系油裂解气,沿塔中I号坡折带断裂向内充注。成藏过程分析表明,塔中地区曾存在三期主要成藏期,第一期为加里东晚期成藏,油气来自于寒武系-下奥陶统烃源岩,但早海西期的构造运动,对该期油气破坏严重,造成大范围油藏破坏。第二期成藏期是晚海西期,也是塔中地区最重要的油气充成藏期,油气来自于中上奥陶统烃源岩。第三期成藏期是晚喜山期,受库车前陆冲断影响,台盆区快速沉降,埋深急速增大,寒武系原油裂解气形成,沿深部断裂向浅部奥陶系充注,对油藏进行气洗改造,从而形成大面积分布的凝析气藏。  相似文献   

4.
张斌  黄凌  吴英  王辉  崔洁 《地学前缘》2010,17(4):270
库车坳陷以产天然气为主,同时产出少量原油和凝析油,油气充注不同步,普遍具有"油早气晚"的特点,晚期大量天然气的侵入,必然对早期聚集的油藏发生改造作用。对气藏中原油成分变化的定量计算和讨论,可为天然气的注入强度定量评价提供直接证据。未遭受气洗的原油,正构烷烃摩尔浓度的对数与相应的碳数呈线性关系,而气洗作用可使轻组分的正构烷烃最先溶解于干气中,并随着天然气继续向前运移,原始油藏中的轻组分正构烷烃大大减少。以此为理论基础,建立了正构烷烃损失的定量计算模型。结果表明克拉2构造原油正构烷烃损失程度最高,平均可达70%左右,大北构造带原油正构烷烃损失程度差异较大,与该地区断块发育有关。气洗作用导致原油正构烷烃减少,而金刚烷、多环芳烃等在天然气中溶解度较低的化合物得以浓缩富集,相对含量大大增加。轻芳烃含量也会随之而增加,原油芳香度增加,石蜡度降低。在模拟实验基础上对气洗程度进行了定量评价,初步估算表明,克拉2构造原油遭受的气洗作用最强,是其他构造带的2~5倍。  相似文献   

5.
塔里木盆地大宛齐油田的部分原油经受了不同程度的微生物降解作用,通过对该油田原油中轻烃分布特征的研究, 能更深入地认识微生物降解作用对轻烃的影响。结果表明,微生物优先消耗正构烷烃,其次为异构烷烃和环烷烃;从而导致 C6、C7轻烃三角图发生相应变化。在大宛齐原油中,随微生物降解程度的增加,正庚烷值和异庚烷值逐渐减小;当庚烷值 为0~21,异庚烷值为0~2.6时,为“微生物降解”原油。微生物降解作用亦能使苯/正己烷、甲苯/正庚烷两个比值增大,而 使正庚烷/甲基环己烷比值减小;基于甲苯/正庚烷、正庚烷/甲基环己烷两个比值建立的判别次生蚀变作用的模板,当原油 处于轻微微生物降解作用时,该模板易与蒸发分馏趋势混淆,需谨慎使用。  相似文献   

6.
塔中南缘断裂坡折带发育的良里塔格组优质礁滩体储层是塔中地区奥陶系碳酸盐岩油气勘探的重点,但目前未获得重大突破。利用岩心、镜下薄片、测井、地震资料,并结合地震反演及构造解析等方法,对塔中南缘断裂坡折带的地质结构特征进行了精细刻画,分析了其构造演化并探讨了其成因模式,明确了其上发育的台地边缘礁滩复合体的结构特征并预测了优质礁滩体的分布。研究结果表明:塔中南缘断裂坡折带为一条近EW向展布、分割了卡塔克隆起和塘古孜巴斯凹陷的高角度逆生长边界断层。断裂坡折带沿走向的构造样式、活动方式及演化模式具有明显的分带性和多期性特征,由西向东划分了Ⅰ、Ⅱ、Ⅲ、Ⅳ、Ⅴ段。坡折带于加里东中期Ⅰ幕开始发育并在加里东中期Ⅲ幕定型,加里东中期Ⅰ幕(T47)坡折带的古地貌奠定了礁滩体发育的基础,而其后的演化影响了礁滩体的垂向生长结构。优质礁滩体储层在纵向上主要发育于良里塔格组上段,而横向上则主要分布在断裂坡折带Ⅲ段。  相似文献   

7.
塔中421井和塔中402井石炭系油层2个原油样和8个油砂样连续抽提组分甾烷、萜烷分布特征和正构烷烃单体碳同位素组成具有明显的差异,具有不同的来源。塔中421井上石炭统3个油砂样自由态组分、束缚态组分和油气包裹体具有伽马蜡烷和C28甾烷相对含量高、正构烷烃单体碳同位素组成重的特征,划分为Ⅰ类原油,对比认为主要来源于寒武系-下奥陶统烃源岩。塔中421井和塔中402井上石炭统的2个油样具有伽马蜡烷和C28甾烷相对含量低、并且正构烷烃单体碳同位素组成轻的特征,划分为Ⅱ类原油,其来源尚不明确。塔中402井石炭系上、中和下统的5个油砂样各类组分具有介于Ⅰ、Ⅱ类原油之间的特征,为Ⅰ和Ⅱ类原油的混合物。5个油砂样从自由态组分、束缚态组分至油气包裹体Ⅰ类原油含量依次增高,Ⅱ类原油含量依次降低。2口井8个油砂样从自由态组分、束缚态组分至油气包裹体C23三环萜烷/(C23三环萜烷+C30藿烷)和C21/(C21+∑C29)甾烷比值都依次降低,反映了油气充注过程中,原油成熟度不断升高。塔中4井区储层油砂不同吸附态烃类分子与碳同位素的研究结果反映塔中4油田具有多种油气来源,经历长期油气充注过程,寒武系-下奥陶统烃源岩在地史上对该区具有成烃贡献。  相似文献   

8.
塔里木盆地塔中地区Ⅰ号断裂坡折带为碳酸盐岩油气藏的有利成藏区。由于受碳酸盐岩储集层特性的影响,其整体含油、局部富集的特征十分明显。从储层的沉积相、物性和类型三个方面分别讨论储层对油气总体分布的控制作用。认为生物骨架礁沉积区、储层物性高值区及裂缝-孔隙型储层发育区为目前高产油气井的主要分布区。  相似文献   

9.
塔中古生界储层中流体包裹体成分分析及其意义   总被引:2,自引:0,他引:2  
对塔中地区30个储层包裹体样品进行了MCI(包裹体成分)与单体烃同位素分析.观察到包裹油与储层油既有区别又有联系.共有6个包裹体特别是下奥陶统样品显示C28-甾烷丰度相对较高、甾烷异构化程度相对较低、低分子量甾萜类化合物丰度相对较高等寒武系的成因特征,指示寒武系源岩对塔中地区有成烃贡献.多数分析包裹油显示中上奥陶统成因生物标志物特征,以及介于寒武系与中上奥陶统成因原油之间的单体正构烷烃同位素特征,个别包裹油显示与中上奥陶统完全一致的单体同位素与生物标志物特征,指示中上奥陶统对塔中地区也具有成烃贡献.塔中部分包裹油与储层油间、包裹油间显著的地球化学性质差异,指示该区具明显的多期成藏特征.塔中储层包裹体成分分析可有效地用于识别端员油、多期充注与混源聚集、恢复生物降解、气侵等次生改造原油面貌.流体包裹体成分分析对于叠合盆地的油气成因与成藏过程研究有重要意义.  相似文献   

10.
塔中隆起原油特征与成因类型   总被引:19,自引:2,他引:19  
塔里木盆地塔中隆起油气性质多样、分布与成因复杂, 为揭示油气的特征与成因, 对塔中及外围104个原油样品进行了精细地球化学研究.依据单体烃碳同位素、特征生物标志物分析, 将塔中原油分为4种类型: (1) 寒武系成因原油, 具有较重正构烷烃单体烃碳同位素(-29.6‰~-29.1‰)、甲藻甾烷较发育及C27、C28、C29规则甾烷呈反“L”型或线型分布等特征; (2) 中、上奥陶统成因原油, 具有较轻的正构烷烃单体烃同位素(-34‰~-35.6‰)、甲藻甾烷等不太发育与C27、C28、C29规则甾烷呈“V”型分布等特征; (3) 富含含硫芳烃-二苯并噻吩原油, 主要分布于塔中4井区; (4) 混源油, 单体烃碳同位素特征界于Ⅰ、Ⅱ类原油之间, 是塔中最为主要的原油类型.油-油对比与油气性质分析表明, 塔中地区至少有两套主力烃源岩供烃.塔中部分原油生物标志物显示寒武系-下奥陶统成因特征, 而单体烃碳同位素却与中上奥陶统成因原油更为接近, 这种不同馏分的不一致现象系不同成因原油混源的结果, 反映单一应用生物标志物指标有其局限性.塔中油气性质具有分带、分块、分层特征, 反映叠合盆地多源、多期成藏、储层非均质性等多种特性.   相似文献   

11.
Measurements of the absolute and relative concentrations of nitrogen-containing compounds in crude oils from different reservoir strata (Ordovician, Silurian and Carboniferous) in the Tazhong region of the Tarim Basin, Xinjiang, China, showed that even though there are quite a number of factors affecting the distributional and compositional characteristics of neutral nitrogen-containing compounds in crude oils, the distributional and compositional characteristics of crude oils whose source conditions are approximate to one another are influenced mainly by the migration and fractionation effects in the process of formation of oil reservoirs. In addition, crude oils in the Tazhong region show obvious migration-fractionation effects in the vertical direction. Carboniferous crude oils are characterized by high migration parameters and low compound concentrations, just in contrast to Ordovician crude oils. This indicates that crude oils from shallow-level oil reservoirs were derived from those of deep-level oil reservoirs via faults, unconformable contact or carrier beds. Crude oils from the Tazhong region show some migration-fractionation effects in the lateral direction, but mixing of crude oils derived from different hydrocarbon source rocks in the process of formation of oil reservoirs made it more complicated the migration and accumulation of crude oils, as well as the formation of oil reservoirs.  相似文献   

12.
准确评价原油裂解程度对研究原油稳定性和预测油气的相态分布具有重要意义.原油裂解程度通常用金刚烷含量来表征,然而气洗和热化学硫酸盐还原作用(TSR)等次生作用可能会造成原油中金刚烷含量增加,从而难以准确评价其含量.本研究通过对塔里木盆地原油中金刚烷化合物进行分析,发现TSR初期对金刚烷含量影响不大,但会使成熟度参数乙基单...  相似文献   

13.
1 Introduction Since the 1990’s of the 20th century, oil & gas geochemists have shifted their research focus on hydrocarbon source rocks in the past to that on reservoir rocks and oil reservoirs at present; their research field has been expanded from oil & gas exploration to the assessment of oil reservoirs and production & management. Therefore, reservoir geochemistry as a branch disciplinary of organic geochemistry is now attracting great concern of many oil & gas explorers and oilfield en…  相似文献   

14.
Fractionated carbazoles have been detected for the first time in crude oils from the Tazhong area of the Tarim Basin, and these nitrogen compounds were successfully utilized in the study of petroleum migration. Alkylcarbazoles are quite abundant in all the samples analyzed; small amounts of benzocarbazoles were detected only in some of the sample, and dibenzocarbazoles were not found in the oils. Based on the distributions of G1, G2 and G3 types of C2-alkylcarbazoles, the ratio of C3-/C2-carbazoles and the relative concentrations of alkylcarbazole and alkylbenzocarbazole, oils in the Carboniferous CIII reservoir in the Tazhong uplift are thought to have laterally migrated to the high level of Tazhong structure No. 4 from both northwest and southeast. The study here also shows that oils in the area may have undergone long-distance migration. This project is financially supported by the China National Petroleum Corporation and the State Educational Commission.  相似文献   

15.
Different types of crude oils have different light hydrocarbon compositional and geochemical characteristics. Based on the light hydrocarbon data from two kinds of oils, i.e., coal-generated oils and marine oils in China, light hydrocarbons in marine oils in the Tazhong area are generally relatively enriched in n-heptane, and coal-generated oils from the Turpan Basin are enriched in methylcyclohexane. The K1 values, reported by Mango (1987), range from 0.97 to 1.19 in marine oils, basically consistent with what was reported by Mango on light hydrocarbons in terms of the majority of the crude oil data. But the K1 values of coal-generated oils are particularly high (1.35-1.66) and far greater than those of marine oils; heptane values in marine oils, ranging from 32.3% to 45.4%, and isoheptane values, ranging from 1.9 to 3.7, are respectively higher than those of coal-generated oils, indicating that the oils are in the high-maturity stage. In addition, expulsion temperatures of coal-generated oils from the Turpan Basin are obviously lower than those of marine oils from the Tazhong area.  相似文献   

16.
<正>The Silurian stratum in the Tazhong uplift is an important horizon for exploration because it preserves some features of the hydrocarbons produced from multi-stage tectonic evolution.For this reason,the study of the origin of the Silurian oils and their formation characteristics constitutes a major part in revealing the mechanisms for the composite hydrocarbon accumulation zone in the Tazhong area.Geochemical investigations indicate that the physical properties of the Silurian oils in Tazhong vary with belts and blocks,i.e.,heavy oils are distributed in the TZ47-15 well-block in the North Slope while normal and light oils in the No.Ⅰfault belt and the TZ16 well-block,which means that the oil properties are controlled by structural patterns.Most biomarkers in the Silurian oils are similar to that of the Mid-Upper Ordovician source rocks,suggesting a good genetic relationship. However,the compound specific isotope of n-alkanes in the oils and the chemical components of the hydrocarbons in fluid inclusions indicate that these oils are mixed oils derived from both the Mid-Upper Ordovician and the Cambrian-Lower Ordovician source rocks.Most Silurian oils have a record of secondary alterations like earlier biodegradation,including the occurrence of "UCM" humps in the total ion current(TIC) chromatogram of saturated and aromatic hydrocarbons and 25-norhopane in saturated hydrocarbons of the crude oils,and regular changes in the abundances of light and heavy components from the structural low to the structural high.The fact that the Silurian oils are enriched in chain alkanes,e.g.,n-alkanes and 25-norhopane,suggests that they were mixed oils of the earlier degraded oils with the later normal oils.It is suggested that the Silurian oils experienced at least three episodes of petroleum charging according to the composition and distribution as well as the maturity of reservoir crude oils and the oils in fluid inclusions.The migration and accumulation models of these oils in the TZ47-15 well-blocks,the No.Ⅰfault belt and the TZ16 well-block are different from but related to each other.The investigation of the origin of the mixed oils and the hydrocarbon migration and accumulation mechanisms in different charging periods is of great significance to petroleum exploration in this area.  相似文献   

17.
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   

18.
油层不同开采时期原油组分变化特征   总被引:1,自引:0,他引:1  
陈祖林  朱扬明  陈奇 《沉积学报》2002,20(1):169-173
运用有机地球化学分离、分析技术对取自塔里木盆地的东河、塔中和轮南油田不同时期开采出的原油样品进行剖析,研究其宏观组成和微观分子在时空上的变化规律。分析结果表明,原油饱 /芳比值随开采时间的推移呈下降的趋势;饱和烃与非烃 +沥青质的含量变化有很好的相关性。随着开采时间的增长,原油中正构烷烃的主峰碳数后移,原油的轻 /重组分比降低。原油碱性氮、有机酸等非烃类化合物随开采时间的推移也呈降低的趋势。这些变化与原油在驱替过程中的自然色层吸附作用机理和原油中各种组分的相互作用关系有关。该项研究对于深入探索驱油机理、预测原油润湿性和提高采收率具有重要的实际意义。  相似文献   

19.
Carbazole compounds in crude oils from the Tazhong uplift of the Tarim basin have been fractionated and detected and successfully used to study petroleum migration and trace source rocks in the study area. Alkylcarbazoles have been found in large amounts in the oil samples analyzed and alkylbenzocarbazoles detected in a small concentration only in part of the samples, but alkyldibenzocarbazoles have not been found in oils. Based on the distribution of G1, G2 and G3 of C2-alkylcarbazoles, the ratio of C3-carbazoles to C2-carbazoles and the relative amounts of alkylcarbazoles and alkylbenzocarbazoles, one can know that the vertical oil migration in the Tazhong uplift is generally from below upward, i.e. from the Ordovician through the Silurian to the Carboniferous. Evidently, source rocks in the uplift should be lower Palaeozoic strata (Ordovician and Cambrian). This study shows that carbazoles are of great importance in the study of petroleum migration and source rocks.  相似文献   

20.
塔中原油超高二苯并噻吩硫特征及其控制因素   总被引:1,自引:1,他引:0  
塔中相当部分原油具有高丰度芳香硫——二苯并噻吩(DBTs)特征,其在原油中的绝对丰度高达26 859μg/g,在芳烃中的相对丰度高达58.2%,主要分布在塔中I号构造带下奥陶统、塔中4(TZ4)和塔中1-6(TZ1-6)井区。采用综合地球化学研究途径,对该区原油的高DBTs特征及其主控因素进行初步探讨。分析表明,研究区母源岩较强地控制DBTs的丰度,纯泥岩、页岩中DBTs丰度不高,灰岩、云岩等烃源岩DBTs丰度偏高或超高;观察到在正常油窗范围内,烃源岩和相关原油随成熟度增加DBTs丰度增加,而塔中型高-过熟原油中DBTs丰度有先增加后减小的趋势,表明热成熟作用对该化合物有较强的控制作用;发现生物降解、水洗可使原油中DBTs丰度降低,但对塔中原油中DBTs影响较小;观测到塔中相当部分原油的DBTs含量与硫酸盐热化学还原作用——TSR的作用产物H2S、硫醇、长链烷基四氢噻烷有一定正相关性。对比研究认为,有多种因素控制塔中原油中DBTs丰度与分布,热成熟作用、TSR是导致塔中下奥陶统部分原油高DBTs特征的重要原因,前者可能是主要因素,特殊母源岩因素相对较少,尽管尚不能排除。TZ4井区等石炭系高DBTs原油主要来自深部地层,与下奥陶统抑或更深层高DBTS原油的混入有关。本研究对于该区深层油气勘探具有重要意义。  相似文献   

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