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61.
渤海盆地辽东湾地区古近系烃源岩成熟演化模拟   总被引:4,自引:1,他引:3  
古近系是辽东湾地区的主力烃源岩层系, 包括孔店组(Ek)-沙河街组四段(Es4)、沙河街组三段(Es3)、沙河街组一、二段(Es1-2)、东营组三段(Ed3)4套烃源岩, 它们主要分布在该地区的3个凹陷(辽西、辽中和辽东)的各个次洼中。在沉积和构造发育史的基础上, 结合烃源岩地球化学和热史等参数对烃源岩成熟演化进行模拟。对辽中凹陷各洼陷典型井区的烃源岩演化模拟表明辽中凹陷不同洼陷内各烃源岩层系的成熟演化历史存在明显差异:在东营组沉积末期,Es4-Ek烃源岩普遍进入生油门限,现今,基本上处于高-过成熟阶段;在馆陶组沉积末期,Es3和Es-2烃源岩普遍进入生油门限,Ed3烃源岩部分进入生油门限,现今,Es3和Es-2烃源岩在辽中凹陷的部分地区达到生油高峰期。同时, 利用Basinview软件模拟了辽东湾地区古近系4套烃源岩的成熟演化历史, 表明在盆地演化过程中同一套烃源岩在辽东湾地区不同凹陷进入生油门限和达到生油高峰及生气阶段的时间存在差异。研究成果可以为该地区深凹区的烃源岩预测与评价和计算烃源岩体积、生、排烃量等提供重要参数,这对指导该地区的油气资源勘探具有重要意义。   相似文献   
62.
塔里木盆地原油孢粉集合   总被引:5,自引:2,他引:3  
记述了塔里木盆地 44个原油样品中发现的孢子花粉化石 83属 1 6 3种 基于原油孢粉集合组成的研究,探讨了塔北、库车、喀什和叶城四个含油区油源岩的时代和层位 并根据孢粉化石的颜色鉴定了油源岩的成熟度。研究结果表明,研究区石炭系、三叠系和侏罗系油源岩都是成熟的油源岩。此外,还详细介绍了从原油中萃取孢子花粉和藻类化石的方法。  相似文献   
63.
塔里木盆地中高氮天然气的成因及其与天然气聚集的关系   总被引:2,自引:0,他引:2  
《沉积学报》2000,18(4)
塔里木盆地塔北和塔中地区的海相腐泥型天然气,N2含量较高,尤其是湿气,N2含量分布在10.1%~36.2%,而干气的N2含量则低于10%,即湿气的N2含量高于干气的N2含量。同是下古生界寒武-奥陶系来源的海相腐泥型天然气,为什么湿气和干气的氮气含量相差如此之大?根据与氮气相伴生的烃类气体、非烃气体及稀有气体的组份及同位素特征,认为塔里木盆地的中高氮天然气属于有机成因,来源于下古生界海相烃源岩。文章还提出塔北和塔中地区湿气和干气N2含量差异与源岩的演化程度和圈闭的捕获条件有关。  相似文献   
64.
徐家围子断陷深层天然气的形成   总被引:6,自引:0,他引:6  
通过对松辽盆地徐家围子断陷深层天然气的地质和地球化学分析 ,揭示了天然气的成因特征和形成过程。该区天然气的分子组成和同位素组成均显示出较大的变化 ,甲烷是天然气中的主要组分 ,质量分数在 57.4 % - 98.2 %之间 ,平均为 90 .1%。主要非烃气体是CO2 和N2 ,平均质量分数分别为 4 .9%和 3.2 % ,且CO2 质量分数变化范围较大。气体同位素分析结果表明 ,甲烷同位素显示煤型气特征 ,而乙烷和丙烷的同位素显示油型气的特征 ,表明徐家围子深部除煤和Ⅲ型干酪根作为主要气源外 ,仍有一定含量趋于生油的Ⅱ型干酪根作为次要气源 ,实测和计算结果证实天然气主要是有机质在高成熟阶段形成的产物。运移过程中和成藏后的次生变化使天然气的组成和同位素面目变得非常复杂 ,尤其是由盖层微渗漏造成的蒸发分馏作用使同位素出现倒转。徐家围子断陷深层煤型气的发现为该区油气勘探展示出了更广阔的前景。  相似文献   
65.
塔里木盆地克拉通区天然气碳同位素与成熟度关系探讨   总被引:9,自引:5,他引:4  
周兴熙  王红军 《地球化学》1999,28(6):571-579
气藏中天然气碳同位素的轻重不仅反映了母质继续效应和成熟效应,同时也取决于累积、散失、混合效应。塔里木盆地3个古隆起(中、 塔北和巴楚)区的天然气均主要来自寒武系一下奥陶统烃财。塔中地区保存条件好,天然气聚集时期长,为连续聚气区,其累积效应强,碳同位素普遍偏轻;塔北和 扎塔格地区保存状况相对较差,天然气聚集期短,累积效应弱,碳同位素值重了区。塔中北皮一些奥陶第 藏由于有中上奥陶统生成的低熟气-生物气  相似文献   
66.
朝长地区原油中的有机含氮化合物及其应用   总被引:9,自引:2,他引:7  
李素梅  王铁冠 《现代地质》1999,13(4):444-450
松辽盆地朝长地区 (朝阳沟—长春岭 )原油中含有丰富的吡咯类含氮化合物 ,其地球化学特征明显。与烃类化合物类似 ,非烃中吡咯类化合物可用于反映原油的成因类型。朝长地区原油中吡咯类化合物的分布特征及其运移效应为油气注入模型理论提供了很好的例证 ,表明吡咯类等非烃化合物在油藏地球化学理论与应用研究中具有广泛的前景。  相似文献   
67.
Removed overburden, burial, maturation, and petroleum generation analysis indicates that maturity in the Arkoma Basin and the Ouachita Foldbelt is explained effectively using simple burial models that account for the significant surface erosion that has occurred and assuming geothermal gradients similar to present-day gradients have been approximately constant through geologic time. Regional models, based on analysis at 115 well locations, indicate that from 5,000 to 15,000 ft (1.5–4.5 km) of section, differing with location from north to south and west to east, has been removed from the Arkoma Basin region, and as much as 25,000–40,000 ft (7.5–12 km) have been removed from areas of the Ouachita Foldbelt. Based on burial and thermal history reconstruction, increasing maturation from west to east across the basin is primarily the result of increasing overburden and subsequent surface erosion from west to east. The models predict most publicly available vitrinite reflectance data within a factor of 1.5 at two standard deviations. Comparison of model and measured reflectance-depth trends in six wells indicates that hydrothermal fluid movement should not have modified reflectance by more than approximately 20% in the center of the basin. Analysis indicates that most of the basin is overmature for oil production from intervals below the Spiro Sandstone, except to the north and northwest. Although thermal maturities are high, methane is stable throughout the basin. Except for the basal Arbuckle Group, all formations were thermally immature for oil generation prior to burial by the Mississippian and Morrowan in the Ouachita Foldbelt of Oklahoma and by the Atokan and Desmoinesian over most of the basin and study area. In the deeper part of the present basin, all strata entered and passed through the oil window during or within 10 My after Atokan time. Because no additional major quantities of hydrocarbons were generated after Atokan time, the hydrocarbons must have been emplaced and trapped during this brief time interval.  相似文献   
68.
The reproductive biology of Acanthopagrus butcheri has been studied in the permanently open Swan River and intermittently open Moore River estuaries on the lower west coast of Australia (31--32 °S) and in the permanently open Nornalup Walpole and normally closed Wellstead estuaries on the southern coast of Western Australia (34--35 °S). Trends exhibited by gonadosomatic indices, gonadal maturity stages and the sizes and developmental stages of the oocytes demonstrate that A. butcher typically spawns in spring and early summer. However, spawning occurred in salinities ranging from as low as 3.5-8 g L–1 in the Moore River Estuary to as high as 41-45 g L–1 in the Wellstead Estuary. Furthermore, water temperatures during spawning were greater in the two northern estuaries (19.7--28.5 °C) than in the two southern and cooler estuaries (17.5--23.4 °C). Histological studies strongly indicate that A. butcheri spawn more than once in a breeding season and demonstrate that the development of its oocytes exhibits group synchrony sensu de Vlaming (1983). The ages and total lengths at which, on average, female and male A. butcheri both first attain maturity in the Swan River Estuary were ca 2 years and ca 215 mm. However, the age at which individual fish in that system reach maturity was influenced by body size. This suggests that the attainment of first maturity at an older age but smaller length in the Moore River and Nornalup Walpole estuaries than is the case in the Swan River Estuary is a consequence of the slower growth rates of A. butcheri in those estuaries. The combination of the young age (ca 2 years) but small length (ca 145 mm) at which maturity is first attained in the Wellstead Estuary could have resulted from selection pressures brought about by high mortality rates and/or heavy fishing pressure in this estuary. The mean fecundity of A. butcheri, based on the combined number of yolk vesicle and yolk granule oocytes found in ovaries just prior to the onset of spawning, was 1580 × 103. The significance of the sizes at first maturity, minimum legal length for capture, mesh selectivity data and closure of certain regions of estuaries to fishing for the management of the recreational and commercial fishery for A. butcheri is discussed.  相似文献   
69.
页岩储层由于其复杂的构造和孔隙特征,目前一般的岩石物理模型无法对其进行精确描述.微纳米孔隙作为页岩气主要的储集空间,对页岩整体弹性参数有较大影响.干酪根作为页岩中重要的有机质矿物,在页岩中的赋存状态随成熟度不同而变化,同时干酪根也是纳米级孔隙的主要发育场所.目前常规的岩石物理建模方法没有体现微纳米孔隙的作用,同时较少考虑不同成熟度下干酪根对页岩储层弹性性质的影响.本文采用一种微纳米孔隙理论描述页岩微纳米孔隙特性,考虑微纳米孔隙和不同成熟度下干酪根的赋存状态,应用上述微纳米孔隙模型、各向异性SCA-DEM模型、各向异性Eshelby-Cheng模型和Brown-Korringa固体替换方程等建立一种新的页岩储层岩石物理模型.利用中国西南某工区页岩气井对该模型进行验证,模型预测的横波速度与测井速度拟合较好.结果表明不同干酪根成熟度的页岩岩石物理建模结果具有一定的差异,据此可大致区分该工区井的干酪根成熟度;最后对微纳米孔参数进行正演分析,结果反映了页岩的纵横波速度随微纳米孔隙参数的变化趋势.  相似文献   
70.
As the two important components of shale, organic matter(OM) and clay minerals are usually thought to strongly influence the hydrocarbon generation, enrichment and exploitation. The evolution process of OM and clay minerals as well as their interrelationship over a wide range of thermal maturities are not completely clear. Taking Yanchang(T_3y), Longmaxi(S_1l) and Niutitang(?_1n) shales as examples, we have studied the microstructure characteristics of OM and clay minerals in shales with different thermal maturities. The effects of clay minerals and OM on pores were reinforced through sedimentation experiments. Using a combination of field emission scanning electron microscopy(FESEM) and low-pressure N_2 adsorption, we investigated the microstructure differences among the three shales. The results showed that both OM and clay minerals have strong effects on pores, and small mesopore(2–20 nm) is the dominant pore component for all three samples. However, the differences between the three samples are embodied in the distribution of pore size and the location. For the T_3y shale, clay minerals are loosely arranged and develop large amounts of pores, and fine OM grains often fill in intergranular minerals or fractures. Widespread OM pores distribute irregularly in S_1l shale, and most of the pores are elliptical and nondirectional. The ?_1n shale is characterized by the preferred orientational OM-clay aggregates, and lots of pores in the composites are in the mesopore range, suggesting that over maturity lead to the collapse and compaction of pores under huge pressure of strata. The results of the current research imply that with increasing thermal maturity, OM pores are absent at low maturity(T_3y), are maximized at high maturity(S_1l) and are destroyed or compacted at over-mature stage(?_1n). Meanwhile, clay minerals have gone through mineral transformation and orientational evolution. The interaction of the two processes makes a significant difference to the microstructure evolution of OM and clay minerals in shale, and the findings provide scientific foundation in better understanding diagenetic evolution and hydrocarbon generation of shale.  相似文献   
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