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首页> 外文期刊>Journal of Petroleum Science & Engineering >Distribution, origin, and evolution of overpressure in the Shahejie Formation of northern Dongpu Depression, Bohai Bay Basin, China
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Distribution, origin, and evolution of overpressure in the Shahejie Formation of northern Dongpu Depression, Bohai Bay Basin, China

机译:渤海湾盆地北部北部北部山脉形成的分布,起源和演变

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The distribution, origin, and evolution of overpressure in the petroliferous basin are important problems that need to be addressed for oil and gas exploration. The distribution and origin of overpressure in the Shahejie Formation in the northern Dongpu Depression are analyzed based on geological studies, logs, and pressure data. The contribution ratios of different overpressure origins are quantified, and the evolutionary stages of overpressures of different origins are further divided. The results show that the formation pressure coefficients of Shahejie Formation in the Dongpu Depression are mainly within the range of 0.9-1.5. The overpressures are mainly distributed in the Sha-3 and Sha-4 Members of the Haitongji sag, the Central uplift belt and the Qianliyuan sag. From the sag to its surrounding area, the formation pressure coefficient gradually decreases. The high deposition rate and strong hydrocarbon generation are the main causes of overpressure formation in the Shahejie Formation in the Dongpu Depression. Based on the stress-strain characteristics of different origin overpressures and the log response parameters, two models, acoustic travel time-effective vertical stress and electrical resistivity-effective vertical stress, are established to identify and quantify the different origin overpressures. The calculation results for the area from the Haitongji sag and Qianliyuan sag to the Central uplift belt show that the main cause of overpressure gradually changes from both disequilibrium compaction and hydrocarbon generation to disequilibrium compaction as the main factor, with the contribution of disequilibrium compaction to overpressure in the Central uplift belt at about 87%. The Sha-3 Members of the Shahejie Formation in the Haitongji sag and the Qianliyuan sag are more strongly affected by hydrocarbon generation, which accounts for 42% and 47.5% of overpressure origin, respectively. There are five stages in the evolution of overpressure in the Shahejie Formation in the northern Dongpu Depression: normal compaction (before 35 Ma), mixed pressurization (35-27 Ma), uplift and pressure release (27-17 Ma), disequilibrium compaction (17-11 Ma), and secondary mixed pressurization (12 Ma-present).
机译:凡士林盆地过度压力的分布,起源和演变是对石油和天然气勘探需要解决的重要问题。基于地质研究,日志和压力数据分析了北部北部北部坳陷沙河街形成的超压分布和起源。量化不同超压起源的贡献比率,不同起源的超压的进化阶段进一步分裂。结果表明,东濮凹陷中沙河街形成的形成压力系数主要在0.9-1.5的范围内。过压主要分布在海龙街,中央隆起腰带和千里远凹陷的沙县和4名成员。从下垂到周边地区,地层压力系数逐渐减少。高沉积速率和强碳氢化合物产生是东濮凹陷在沙河街形成中的超压形成的主要原因。基于不同来源的压力 - 应变特性和日志响应参数,建立两个模型,声学行进时间有效的垂直应力和电阻率有效的垂直应力,以识别和量化不同的原始超压。从海棠凹陷和千里元凹陷的地区的计算结果表明,过压的主要原因从不平衡压实和油气发电逐渐变化,以减少压实作为主要因素,促进不平衡压实对超压的贡献在中央隆起皮带上约为87%。海公吉凹陷的沙河杰的SHA-3成员分别受到碳氢化合物产生的强烈影响,分别占过压起源的42%和47.5%。在东浦北部的沙河街形成中的超压进化中有五个阶段:正常压实(35 mA之前),混合加压(35-27 mA),隆起和压力释放(27-17 mA),不平衡压实( 17-11mA)和二次混合加压(12 mA-Press)。

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