Densification Mechanism and Natural Gas Accumulation Process, Triassic Xujiahe Formation, Hechuan Area, Sichuan Basin, China

IF 1.8 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Lithosphere Pub Date : 2023-07-25 DOI:10.2113/2023/4522740
Lin Jiang, Wenfeng Zhao, Dongmei Bo, Yang Fan, Gang Zhou, Jiaqing Hao
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Abstract

We have witnessed a skyrocketing development of tight gas in China. However, all developed gas field in China face the obstacle of the decrease of production. The Xujiahe Formation in Sichuan Basin shows a promising future for the next big gas field. In this work, we will shed light on the densification mechanism and natural gas accumulation process of Triassic Xujiahe Formation, Hechuan Area, Sichuan Basin through physical experiments and theory analysis. We describe the reservoir characteristics. The diagenesis types and characteristics of sandstone reservoirs in the promising future of the next big gas field. In this work, we will shed light on the densification mechanism and natural gas accumulation process of Triassic Xujiahe Formation, Hechuan Area, Sichuan Basin through physical experiments and theory analysis. We describe the reservoir characteristics. The diagenesis types and characteristics of sandstone reservoirs in the second Member of Xujiahe Formation in Hechuan area are analyzed by means of rock thin section, cast thin section, and mercury injection. By observing the microscopic characteristics, types, and homogenization temperature distribution of fluid inclusions, the accumulation period of natural gas in Hechuan gas field is given, and the accumulation process of natural gas is revealed. The results show that (1) the natural gas charging the tight sandstone reservoirs of the Upper Triassic Xujiahe Formation in Hechuan area is a continuous process. The gas accumulation period can be roughly divided into two stages; (2) combining with the analysis of the hydrocarbon accumulation period of time, we put forward the natural gas accumulation model of the Xujiahe Formation, Hechuan area: the natural gas accumulation is accompanied by formation densification.
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四川盆地合川地区三叠系须家河组致密化机制与天然气成藏过程
我们见证了中国致密气的飞速发展。然而,中国所有已开发的气田都面临着产量下降的障碍。四川盆地须家河组为下一个大型气田提供了广阔的开发前景。本研究将通过物理实验和理论分析,揭示四川盆地合川地区三叠系须家河组致密化机理和天然气成藏过程。我们描述了储层特征。下一个大气田前景看好的砂岩储层成岩类型及特征。本研究将通过物理实验和理论分析,揭示四川盆地合川地区三叠系须家河组致密化机理和天然气成藏过程。我们描述了储层特征。采用岩石薄片、铸体薄片和压汞等方法,分析了合川地区须二段砂岩储层的成岩类型和特征。通过对流体包裹体微观特征、类型及均一温度分布的观察,给出了合川气田天然气成藏期次,揭示了天然气成藏过程。结果表明:(1)合川地区上三叠统须家河组致密砂岩储层天然气充注是一个连续的过程。天然气成藏期大致可分为两个阶段;(2)结合油气成藏期次分析,提出了合川地区须家河组天然气成藏模式:天然气成藏伴随着地层致密化。
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来源期刊
Lithosphere
Lithosphere GEOCHEMISTRY & GEOPHYSICS-GEOLOGY
CiteScore
3.80
自引率
16.70%
发文量
284
审稿时长
>12 weeks
期刊介绍: The open access journal will have an expanded scope covering research in all areas of earth, planetary, and environmental sciences, providing a unique publishing choice for authors in the geoscience community.
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