首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 156 毫秒
1.
<正>近年来发现塔里木盆地典型来自于寒武系-下奥陶统烃源岩的原油具有富集13C的特征,其稳定碳同位素比值基本上集中在-28‰左右。比如:塔东2井寒武系储层中的原油明显具有寒武系-下奥陶统烃源岩成因原油的生标分布特征,被认为是寒武系自生自储的一个古油藏,其全油稳定碳同位素比值为-28.283‰,但相应的烃源岩干酪根同位素比值在-31‰左右;塔中62井志留系储层的原油被认为是一典型来自于寒武系烃源岩的透镜体油藏,其全油稳定碳同位素比值为-28.606‰;另外被认为来自于寒武系-  相似文献   

2.
塔里木盆地海相油气源与混源成藏模式   总被引:3,自引:0,他引:3  
塔里木盆地油气源长期争论不休.采用单体烃同位素、包裹体成分与年代指示生物标志物等途径, 对塔里木盆地塔中、轮南典型油气藏进行了油气成因与混源成藏模式的研究.结果表明, 塔中、轮南绝大部分原油生物标志物与中上奥陶统烃源岩相似, 仅少部分原油显现与寒武系—下奥陶统烃源岩相近的特征, 但正构烷烃单体烃碳同位素分析表明, 原油绝大部分实质仍为混源油.塔中包裹烃成分分析进一步证实了原油的混源特性.利用同位素进行的混源定量结果表明, 塔中原油中寒武系—下奥陶统成因原油的混入量约为11%~100%(均值45%); 轮南地区约为11%~70%(均值36%), 表明寒武系—下奥陶统、中上奥陶统均为塔里木盆地的主力烃源岩.油气运移地化指标与地质条件的综合研究认为, 塔中地区断层是油气运移的重要通道, 塔中I号断层与斜交的走滑断层的交汇点是油气的主要注入点; 轮南地区侧向运移特征较明显.研究区存在调整型、多期充注型与原生型多种混源成藏模式.塔里木海相油气的普遍混源表明深层仍有油气勘探潜能.揭示海相混源油气成藏机制是指导塔里木海相油气勘探的关键.   相似文献   

3.
塔里木盆地下古生界存在中—下寒武统和中—上奥陶统两套有效烃源层。前者 R。已达2.0%以上,只能作为有效气源岩;后者成熟度适中且有一定分布范围,是塔里木盆地最现实的烃源层,可分为三段,其中以上奥陶统中部的印干组和良里塔格组最具重要意义。对盆地中海相原油与寒武系和奥陶系岩石抽提物中甲基甾垸、三芳甲基甾烷及降胆甾烷的分布进行直观对比,表明原油与中—上奥陶统存在亲缘关系,而与寒武系无明显相关。全盆地所有钻遇的寒武系岩样,C_(27)—C_(28)—C_(29)甾烷碳数分布呈“斜线”型或反“L”型,而绝大部分中一上奥陶统岩样则呈不对称“V”字型分布。所分析的储层沥青的甾烷碳数分布与上述寒武系岩样一致,说明寒武系生油岩在地质历史上确曾生过油。包括塔中4、轮南、桑塔木和东河塘等在内的工业性油田产出的油,其甾烷碳数都呈不对称“V”字型分布,只有极少数的油样呈“斜线”或反“L”型分布,因此塔里木盆地的原油主要与中—上奥陶统相关,而与寒武系相关极少。运用C_7温度参数评价原油成熟度,结果为塔里木盆地主要油区原油的形成温度在117~133℃之间,对应的 R。值为0.78%~0.92%,只相当于中等成熟阶段,可以推断它们不可能源于寒武系,只能源于奥陶系。  相似文献   

4.
塔里木盆地下古生界存在中一下寒武统和中一上奥陶统两套有效烃源层。前者R。已达2.0%以上,只能作为有效气源岩;后者成熟度适中且有一定分布范围,是塔里木盆地最现实的烃源层,可分为三段,其中以上奥陶统中部的印干组和良里塔格组最具重要意义。对盆地中海相原油与寒武系和奥陶系岩石抽提物中甲基甾烷、三芳甲基甾烷及降胆甾烷的分布进行直观对比,表明原油与中—上奥陶统存在亲缘关系,而与寒武系无明显相关。全盆地所有钻遇的寒武系岩样,C27—C28—C2。甾烷碳数分布呈“斜线”型或反“L”型,而绝大部分中—上奥陶统岩样则呈不对称“V”字型分布。所分析的储层沥青的甾烷碳数分布与上述寒武系岩样一致,说明寒武系生油岩在地质历史上确曾生过油。包括塔中4、轮南、桑塔木和东河塘等在内的工业性油田产出的油,其甾烷碳数都呈不对称“V”字型分布,只有极少数的油样呈“斜线”或反“L”型分布,因此塔里木盆地的原油主要与中—上奥陶统相关,而与寒武系相关极少。运用G温度参数评价原油成熟度,结果为塔里木盆地主要油区原油的形成温度在117~133℃之间,对应的R。值为0.78%~0.92%,只相当干中等成熟阶段,可以推断它们不可能源干寒武系,只能源干奥陶系。  相似文献   

5.
从塔里木盆地看中国海相生油问题   总被引:175,自引:3,他引:172  
梁狄刚 《地学前缘》2000,7(4):534-547
塔里木盆地厚达 5~ 7km的海相寒武、奥陶系 ,可划分出下、中寒武统和中、上奥陶统两套工业性烃源岩。油源对比证实 :盆地目前保存下来的海相成因工业性油藏 ,主要来源于中上奥陶统泥灰岩。正是因为塔里木盆地比四川、鄂尔多斯盆地多了一套中等成熟的中上奥陶统油源岩 ,所以能够找到海相油田。笔者认为 :海相工业性烃源岩不必很厚 ,但w (TOC)应≥0 .5% ,碳酸盐岩要含泥质 ;海相源岩往往并不发育在凹陷中心 ,而发育在 4种有利沉积相带上 ;碳酸盐岩具有“双重母质”的特点 ,浮游藻类偏油 ,底栖藻类偏气。海相源岩的形成模式有“保存模式”和“生产力模式”两种 ,分别对应于塔里木寒武系和中上奥陶统烃源岩。塔里木古生代克拉通早期活动、晚期稳定、持续降温的演化史 ,有利于海相油气的多期成藏和晚期保存。  相似文献   

6.
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   

7.
塔里木盆地寒武系—奥陶系海相烃源岩地球化学特征   总被引:1,自引:0,他引:1  
塔里木盆地寒武系-奥陶系属广阔的台地和槽盆沉积,是塔里木盆地海相主力烃源岩,通过对寒武系一下奥陶统及中-上奥陶统烃源岩的饱和和芳香烃的部析,发现11个分子系列参数在两套烃源岩中具有明显的区别,寒武系一下奥陶统烃源岩Tmax较高,烃指数极低,产率指数较高,两套烃源岩的TOC玎当,Ph/nC18值较高,藿烷/甾烷值较低(<2.0),甲藻甾烷含量较高,重排甾烷含量较低,姥鲛烷/植烷值较低,伽马蜡烷/C30藿烷值较高,表明寒武系处于厌氧环境的时间较长,水体盐度较高,有利于有机质的堆积和保存。  相似文献   

8.
中—上奥陶统:塔里木盆地的主要油源层   总被引:14,自引:0,他引:14  
塔里木盆地下古生界存在中-下寒武统一和中-上奥陶统两套有效烃源层。前者R0已达2.0%以上,只能作为有效气源岩;后者成熟度适中且能一定分布范围,是塔里木盆地最现实的烃源层,可分为三段,其中以上奥陶统中部的印干组和良里塔格组最具重要意义。对盆地中海相原油与寒武系和奥陶系岩石抽提物中甲基甾烷、三芳甲基甾烷及降胆甾烷的分布进行直观对比,表明原油与中-上奥陶统存在亲缘关系,而与寒武系无明显相关。全盆地所有  相似文献   

9.
塔中奥陶系原油的地球化学特征及其来源   总被引:2,自引:0,他引:2  
塔中奥陶系的油气资源十分丰富,是塔里木盆地油气勘探的重点层系之一,但油源仍是困扰地质勘探家的重要问题。通过系统分析塔中奥陶系原油的地球化学特征,进行了原油族群划分和油源判识。原油以轻质油为主,轻烃分析表明,原油没有发生大量裂解,原油的生成温度介于115~129℃,表明其主体成分形成于生油窗阶段。运用特征性生物标志物系统分析表明,原油可分为三个族群,分别来源于中—上奥陶统源岩、寒武系源岩及混合来源。在“三芴”组成上,原油均以较低的氧芴含量和较高的硫芴含量为特征。原油中饱和烃的碳同位素比值均轻于-31.2‰,平均值为-32.8‰,芳烃的碳同位素比值均轻于-30.4‰,平均值为-31.7‰,这些特征明显与塔东2井和塔深1井的寒武系原油不同。分析认为,碳同位素明显偏重的原油应来源于寒武系源岩,但碳同位素较轻的原油可能来源于中—上奥陶统源岩,也可能来源于寒武系源岩。  相似文献   

10.
塔中隆起原油特征与成因类型   总被引:21,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.
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   

12.
The free, adsorbed and inclusion oils were recovered by sequential extraction from eleven oil and tar containing reservoir rocks in the Tazhong Uplift of Tarim Basin. The results of gas chromatography (GC) and GC–mass spectrometry analyses of these oil components and seven crude oils collected from this region reveal multiple oil charges derived from different source rocks for these oil reservoirs. The initially charged oils show strong predominance of even over odd n-alkanes in the range n-C12 to n-C20 and have ordinary maturities, while the later charged oils do not exhibit any predominance of n-alkanes and have high maturities. The adsorbed and inclusion oils of the reservoir rocks generally have high relative concentrations of gammacerane and C28 steranes, similar to the Cambrian-Lower Ordovician source rocks. In contrast, the free oils of these reservoir rocks generally have low relative concentrations of gammacerane and C28 steranes, similar to the Middle-Upper Ordovician source rocks. There are two interpretations of this result: (1) the initially charged oils are derived from the Cambrian-Lower Ordovician source rocks while the later charged oils are derived from the Middle-Upper Ordovician source rocks; and (2) both the initially and later charged oils are mainly derived from the Cambrian-Lower Ordovician source rocks but the later charged oils are contaminated by the oil components from the Silurian tar sandstones and the Middle-Upper Ordovician source rocks.  相似文献   

13.
There is a type of asphalt that originated from differentiation from reservoir bed (named reservoir bed-differentiated asphalt)in the Silurian asphaltic sandstones of the Tarim Basin.These asphalts are the result of second-time charging of hydrocarbons into the Silurian reservoir,which were derived from Lower Paleozoic source rocks.Asphalt was differentiated from the reservoir bed in the hydrocarbon gathering area of secondary migration.The different-tiation is caused by changes in reservoir physical properties when pearl or chain hydrocarbons migrating through and gathering in the reservoir bed,and light components are lost and heavy ones are involved in the formation of asphalt or heavy oil.There are two kinds of occurrence of these asphalts in the Silurian system of the Tarim Basin.One is the poor heavy oil layer with lower oil saturation in trap and the other is scattered hydrocarbon distributed along the trans-port layer and unconformity surface.Reservoir bed-differentiated asphalts have two characteris-tics:total hydrocarbon content is high in extractable organic matter and the ratio of saturated to aromatic hydrocarbon is usually greater than unity.The physically modeling experiment has confirmed these characteristics and the genesis of the reservoir bed-differentiated asphalts.  相似文献   

14.
塔里木盆地塔中隆起构造演化与油气关系   总被引:5,自引:0,他引:5       下载免费PDF全文
笔者结合塔里木盆地形成的构造背景对塔中隆起的主要构造演化过程进行了研究,并具体分析了各构造演化阶段与志留系油气的关系。研究表明,塔中隆起源于早古生代拉张背景下的正断层,寒武-奥陶纪为其烃源岩形成的重要时期;早奥陶世末-晚奥陶世末的构造反转是塔中隆起的主要形成期,同时也为志留系的形成及复合圈闭提供了古地理背景;泥盆纪末塔中鼻状隆起基本定型,古油藏遭受破坏,形成了沥青砂岩;早二叠世晚期的构造变形使古油藏遭受进一步的破坏;二叠纪后构造变动主要以调节为主。伴随整个构造的演化,志留系的油气聚集也是分期次、不同规模的进行。  相似文献   

15.
Asphalts distributed widely in the Silurian sandstones of the Tarim Basin include dry asphalt, soft asphalt and heavy oil. These asphaltic sandstones underwent multi-episodic sedimentary and tectonic events, and their occurrence is diverse and complex, being mixed with normal oil usually. So far, very little work has been done on the asphaltic sandstone origin and hydrocarbon charging ages. After detailed study on the Silurian sandstones, the following highlights were obtained from the analytical results: distribution of the mixed asphalt, heavy oil and normal oil in the Silurian sandstones is the result of multi-stage hydrocarbon charging from the Lower Paleozoic marine source rocks; the characters of asphalts formed from oils of different charging ages are of difference; the most important process constraining the asphaltic sandstone origin is thought to be biodegradation. This paper was financially supported by funds of Petroleum & Natural Gas Exploration in the Tarim Basin from the “State 9th Five-Year Plan Period” Key Scientific Project (No. 96-111).  相似文献   

16.
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   

17.
Research on the molecular fossil characteristics of heavy oil from Well Tadong-2 is of great importance to constrain the source of marine crude oils in the Tarim Basin, Xinjiang, China. The authors synthetically applied the isotope mass spectrograph, chromatography and chromatography-mass spectrography to the studies of molecular fossil characteristics of heavy oil from Well Tadong-2 in the Tarim Basin, and the results obtained revealed that heavy oil from Well Tadong-2 is characterized by high gammacerane, high C28 sterane, low rearranged sterane and high C27-triaromatic steroid, these characteristics are similar to those of Cambrian-Lower Ordovician source rocks, demonstrating that Cambrian crude oils came from Cambrian-Lower Ordovician source rocks; condensed compounds (fluoranthene, pyrene, benzo[a]anthracene, bow, benzo fluoranthene, benzopyrene) of high abundance were detected in heavy oil from Well Tadong-2, and the carbon isotopic values of whole oil are evidently heavy, all the above characteristics revealed that hydrocarbons in the crude oils became densified in response to thermal alteration.  相似文献   

18.
对玉北地区输导体系进行研究, 分析其油气运聚过程, 研究结果表明, 玉北地区油气基本输导介质主要分为: 断层、不整合、输导层, 其中玉北中部地区输导能力较强, 而玉北东部地区的输导能力较差.对玉北地区奥陶系3口井25块样品的有机和无机包裹体进行了分析, 分析结果表明, 玉北地区奥陶系油藏主要发生了两期成藏: 第1期发生在海西晚期262~252 Ma期间, 主要为发黄色荧光的低成熟油充注; 第2期发生喜山晚期12.5~0 Ma, 主要为发蓝白色荧光的高成熟度油充注.玉北地区奥陶系油藏有效烃源岩为下寒武统和上寒武统-下奥陶统两套烃源岩, 且发育储盖组合为: 下石炭统巴楚组泥岩、泥灰岩盖层与中-下奥陶统风化岩溶型储层组成的不连续层间组合.   相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号