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941.
砂体类型与分布特征的差异性造就了油气储层发育的非均质性,通过岩心垂向序列特征明确了沙溪庙组砂体成因类型,并综合测井、地震资料刻画了不同类型砂体的空间分布。沙溪庙组浅水三角洲平原发育垂积型主河道、侧积/填积型次河道砂体以及溢岸砂体,前缘发育侧积型近端水下分流河道、填积型远端水下分流河道、进积型河口坝砂体以及席状砂体;平原主河道砂体厚度多大于10 m,宽600~1 800 m,通过同位垂向切叠与侧向等高程切叠而形成毯状连片砂体,次河道砂体多位于主河道侧缘,厚度平均7.5 m,物性较差,并常被主河道切割而零星分布;内前缘近端水下分流河道砂体厚4~8 m,宽500~1 200 m,多错位切叠或拼接接触,呈带状;远端水下分流河道发育于三角洲外前缘,单砂体厚2.5~6 m,宽200~700 m,平面呈鞋带状,砂体孤立;前缘河口坝砂体分布较少,垂向上常被河道切叠;平原相带两类河道砂体的物性差异造成了储层内部的非均质性,而三角洲前缘储层的非均质性更多在于不同类型砂体的迷宫状展布上。  相似文献   
942.
受构造作用控制,辽河西部凹陷清水洼陷沙三段页岩沉降-沉积中心发生由北西向南东方向的明显迁移,表现为欠补偿沉积的半深湖-深湖相同步迁移。从湖盆中心向陆方向,清水洼陷沙三段沉积时期主要发育了深湖-半深湖-浅湖-扇三角洲等沉积类型,对应形成了从Ⅰ、Ⅱ到Ⅲ型的干酪根分布。与此对应,页岩中的石英、长石等脆性矿物含量递次增多,而黏土矿物含量逐渐减少,反映为沉积相对页岩有机地球化学条件和矿物成分的控制作用。在深大断裂控制下,页岩沉积剖面表现为向西减薄的楔形,TOC从中心处的最大值向外逐渐降低,成熟度Ro介于0.5%~2.0%,为页岩油气的形成提供了有利的富集条件。在现今埋深状态下,洼陷区页岩一般处于热成熟生油阶段,埋深较大的局部地区可达高成熟阶段,进入页岩气为主状态,形成“下气上油”的生烃格局。沙三段页岩主要处于中成岩阶段B期,出现了大量定向排列的片状伊利石。在4 000 m以深的页岩中,伊蒙混层比小于15%,发育了多种孔隙类型,伴生黄铁矿和伊利石等黏土矿物,孔隙度一般为0.7%~3.5%,8~35 nm的页岩孔隙直径所占体积最大。高精度含气量解析结果表明,双兴1井沙三段页岩含气量为1.6~5.44 m3/t,随着页岩储层成岩裂缝增加,页岩含气量不断增加。总含气量、吸附含气量与TOC具有很好的相关性,但总含气量增加速度较吸附气增量速度更大,这与有机质生油气产物关系密切,与溶解态天然气的存在也不无关系。有机质类型多样、油气共生、含气量较大且下气上油,形成了辽河清水洼陷特色的页岩气富集模式。  相似文献   
943.
根据祁连山木里地区已知天然气水合物上方不同期次近地表土壤地球化学勘查重复性试验,对土壤酸解烃、顶空气、荧光光谱、碳酸盐等指标方法的稳定性及异常重现性问题进行研究和探讨。结果表明,各项化探指标不同期次含量最大值等特征值虽然存在一定程度的差异,但是其数据波动特征和数据结构是相对一致的。顶空气甲烷、酸解烃、荧光光谱和碳酸盐方法指标前后两次测量结果均具有较高的相关性,配对T-检验显示顶空气轻烃、酸解烃和碳酸盐指标数据变化差异不显著,从统计学上看其指标数据具有较好的稳定性。顶空气甲烷、酸解烃、荧光光谱等指标地球化学异常在研究区已知天然气水合物矿区上方具有相似的空间分布特征,说明其化探指标异常空间上具有良好的稳定性和重现性;但是顶空气重烃异常模式、碳酸盐异常强度的变化,反映其具有重现性,但异常稳定性相对较差。这为地球化学勘查在陆域冻土区天然气水合物勘查中发挥作用提供了较好的基础。  相似文献   
944.
珠江口盆地西部海域发育弱BSR或无BSR的天然气水合物储层,常规叠后反演所获得的参数单一,难以精确预测其天然气水合物分布特征。本文在地震道集优化处理、精细速度分析、岩石物理分析及低频模型精确建立的基础上,针对性地采用叠前同时反演技术,对珠江口盆地西部海域天然气水合物储层进行预测,并利用岩相流体概率分析技术对其进行综合识别,实现了对天然气水合物储层地精细刻画。反演预测结果表明,研究区天然气水合物较为发育,预测结果与钻探结果吻合程度较高,应用效果良好。  相似文献   
945.
Comprehensive quantitative evaluation of shale gas content and the controlling factors in different occurrence states is of great significance for accurately assessing gas-bearing capacity and providing effective well-production strategies. A total of 122 core samples from well JY-A in the Fuling shale gas field were studied to reveal the characteristics of S_1 l shale,15 of which were selected to further predict the shale gas content in different occurrence states, which are dependent on geological factors in the thermal evolution process. Geological parameters were researched by a number of laboratory programs, and the factors influential in controlling shale gas content were extracted by both PCA and GRA methods and prediction models were confirmed by the BE method using SPSS software. Results reveal that the adsorbed gas content is mainly controlled by TOC, Ro, SSA, PD and pyrite content, and the free gas content is mainly controlled by S_2, quartz content, gas saturation and formation pressure for S_1 l in well JY-A. Three methods, including the on-site gas desorption method, the empirical formula method, and the multiple regression analysis method were used in combination to evaluate the shale gas capacity of well JY-A, all of which show that the overall shale gas content of well JY-A is in the range of 2.0–5.0 m~3/t and that the free gas ratio is about 50%, lower than that of well JY-1. Cause analysis further confirms the tectonics and preservation conditions of S_1 l in the geological processes, especially the influence of eastern boundary faults on well JY-A, as the fundamental reasons for the differences in shale gas enrichment in the Jiaoshiba area.  相似文献   
946.
Coal-formed gas generated from the Permo-Carboniferous coal measures has become one of the most important targets for deep hydrocarbon exploration in the Bohai Bay Basin, offshore eastern China. However, the proven gas reserves from this source rock remain low to date, and the distribution characteristics and accumulation model for the coal-formed gas are not clear. Here we review the coal-formed gas deposits formed from the Permo-Carboniferous coal measures in the Bohai Bay Basin. The accumulations are scattered, and dominated by middle-small sized gas fields, of which the proven reserves ranging from 0.002 to 149.4×108 m3 with an average of 44.30×108 m3 and a mid-point of 8.16×108 m3. The commercially valuable gas fields are mainly found in the central and southern parts of the basin. Vertically, the coal-formed gas is accumulated at multiple stratigraphic levels from Paleogene to Archaeozoic, among which the Paleogene and PermoCarboniferous are the main reservoir strata. According to the transporting pathway, filling mechanism and the relationship between source rocks and reservoir, the coal-formed gas accumulation model can be defined into three types: "Upward migrated, fault transported gas" accumulation model, "Laterally migrated, sandbody transported gas" accumulation model, and "Downward migrated, sub-source, fracture transported gas" accumulation model. Source rock distribution, thermal evolution and hydrocarbon generation capacity are the fundamental controlling factors for the macro distribution and enrichment of the coal-formed gas. The fault activity and the configuration of fault and caprock control the vertical enrichment pattern.  相似文献   
947.
Fracability characterizes the effectiveness of hydraulic fracturing. The existing assessment methods cannot reflect the actual value of the effectiveness due to a lack of comprehensive consideration and neglect of the influences of engineering factors. This study aims to solve this problem by implementing geological static data and production dynamic data in multivariate analysis in Zhaotong shale gas demonstration zone. First, the reservoir quality index (RQI) was introduced to evaluate the exploration potential by integrating the geological parameters with gray relational analysis. Moreover, the differences in fracturing fluid types and proppant sizes were considered, and the operating parameters were normalized on the basis of the equivalence principle. Finally, the general reservoir fracability index (GRFI) was proposed based on a dimensioned processing of the various parameters. A case study was conducted to verify the accuracy and feasibility of this new approach. The results demonstrate that (1) the organic carbon and gas content are adjusted to contribute the most to the calculation of the RQI, while the effective porosity contributes the least; (2) the fracturing scale is the main operating parameter determining the fracability, which has the strongest correlation with the effectiveness of fracking; and (3) the GRFI has a positive correlation with shale gas production, and the lower limit of the GRFI of 2,000 corresponds to a daily production of 50,000 m3/d; this value is defined as the threshold value of a stripper well. The GRFI is consistent with the productivity trend of shale gas wells in the research block, which suggests that the new model is accurate and practical for well candidate selection.  相似文献   
948.
Organochlorine pesticides (OCPs) are a class of toxic and harmful persistent organic pollutants widely found in environment. Hexachlorocyclohexane (HCHs) and DDTs are two of the most widely used OCPs (Qiu et al., 2004), so it is important to find out their compositional characteristics and sources in surface sediments. Guanghai Bay is located in the south of Guanghai Bay Industrial Park in Taishan City, Guangdong Province. It borders Huangmaohai to the east and Zhenhai Bay to the west, covering an area of about 236 square kilometers. In this study, surface sediments were collected at 16 sites in Guanghai Bay (Fig. 1). After the surface sediments were pretreated, GC‐MS was used to analyze OCPs. A total of 14 OCPs were detected and their content was shown in Table 1. The concentration of ΣOCPs ranged between 0.507~0.860ng·g‐1, with an average of 0.680 ng?g‐1. In general, the content of ΣOCPs was the highest at No. A12 site. The concentrations of these 14 detected OCPs ordered as dieldrin > epoxy heptachlor > P, P'‐DDD > γ‐HCH >endrin >aldrin > P, P'‐DDE >mirex >hexachlorobenzene >P, P'‐DDT > α‐HCH > δ‐HCH >β‐HCH > heptachlor.  相似文献   
949.
950.
瞿建华  杨荣荣  唐勇 《地质学报》2019,93(4):915-927
准噶尔盆地玛湖富烃凹陷下三叠统百口泉组新近发现了我国首个源上大面积连续型砂砾岩油藏群,是对全球"连续型"油气藏研究的新补充,但其成藏机理和模式并不很清楚。为加强对其的理论认识,并为下步勘探提供参考,基于油气生、储、盖、圈、运、保等基础石油地质条件,并结合油气藏特征,进行了成藏条件与成藏模式的综合研究。结果表明,优质充足的下二叠统风城组碱湖油气来源、规模有效的扇三角洲前缘砂砾岩储层、多重组合的扇三角洲平原致密砾岩、泥岩和断裂封盖保存、沟通良好的高角度断裂输导体系、平缓连续的构造背景奠定了大面积连续成藏的地质基础。在此背景下,高成熟的风城组所生成油气,在切穿烃源灶和储层的高角度压扭性断裂沟通下,优先充注物性相对好的扇三角洲前缘水下河道砂岩和砂质细砾岩,并且在地层异常高压促进下,控制着油气富集程度,使得油气成藏表现为大型缓坡浅水扇三角洲沉积控制下的源上扇-断-压三控大面积"连续型"。百口泉组油气藏具有的油质轻且含气、微裂缝广泛发育,以及异常高压等,决定了砾岩储层虽总体低孔低渗,但依旧能够高产。在油源断裂沟通的斜坡区上倾方向,叠合地层异常高压以及扇三角洲前缘水下河道砂砾岩的区域是下步有利勘探方向。  相似文献   
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