Hydrocarbon accumulation and orderly distribution of whole petroleum system in marine carbonate rocks of Sichuan Basin, SW China

IF 7 Q1 ENERGY & FUELS Petroleum Exploration and Development Pub Date : 2024-08-01 DOI:10.1016/S1876-3804(24)60511-2
Xusheng GUO , Renchun HUANG , Dianwei ZHANG , Shuangjian LI , Baojian SHEN , Tianjia LIU
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Abstract

Based on the situation and progress of marine oil/gas exploration in the Sichuan Basin, SW China, the whole petroleum system is divided for marine carbonate rocks of the basin according to the combinations of hydrocarbon accumulation elements, especially the source rock. The hydrocarbon accumulation characteristics of each whole petroleum system are analyzed, the patterns of integrated conventional and unconventional hydrocarbon accumulation are summarized, and the favorable exploration targets are proposed. Under the control of multiple extensional-convergent tectonic cycles, the marine carbonate rocks of the Sichuan Basin contain three sets of regional source rocks and three sets of regional cap rocks, and can be divided into the Cambrian, Silurian and Permian whole petroleum systems. These whole petroleum systems present mainly independent hydrocarbon accumulation, containing natural gas of affinity individually. Locally, large fault zones run through multiple whole petroleum systems, forming a fault-controlled complex whole petroleum system. The hydrocarbon accumulation sequence of continental shelf facies shale gas accumulation, marginal platform facies-controlled gas reservoirs, and intra-platform fault- and facies-controlled gas reservoirs is common in the whole petroleum system, with a stereoscopic accumulation and orderly distribution pattern. High-quality source rock is fundamental to the formation of large gas fields, and natural gas in a whole petroleum system is generally enriched near and within the source rocks. The development and maintenance of large-scale reservoirs are essential for natural gas enrichment, multiple sources, oil and gas transformation, and dynamic adjustment are the characteristics of marine petroleum accumulation, and good preservation conditions are critical to natural gas accumulation. Large-scale marginal-platform reef-bank facies zones, deep shale gas, and large-scale lithological complexes related to source-connected faults are future marine hydrocarbon exploration targets in the Sichuan Basin.

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中国西南部四川盆地海相碳酸盐岩中油气聚集及整个石油系统的有序分布
根据中国西南四川盆地海相油气勘探的现状和进展,按照油气聚集要素组合,特别是源岩组合,划分盆地海相碳酸盐岩整体石油系统。分析了各整体石油系统的油气聚集特征,总结了常规和非常规油气综合聚集的规律,提出了有利的勘探目标。四川盆地海相碳酸盐岩在多期伸展-收敛构造循环的控制下,包含三套区域源岩和三套区域盖岩,可划分为寒武系、志留系和二叠系整体石油系统。这些整体石油系统以独立的油气聚集为主,各自含有亲缘天然气。在局部地区,大型断层带贯穿多个整体石油系统,形成断层控制的复杂整体石油系统。整个石油系统中普遍存在大陆架面页岩气聚集、边缘平台面控制气藏、平台内断层和面控制气藏的油气聚集序列,具有立体聚集和有序分布的格局。优质的源岩是形成大型气田的基础,整个石油系统中的天然气一般富集在源岩附近和源岩内。大规模储层的开发和维护是天然气富集的必要条件,多源、油气转化、动态调整是海洋石油积聚的特点,良好的保存条件是天然气积聚的关键。大尺度边缘平台礁滩面带、深层页岩气、与源连断层有关的大尺度岩性复合体是四川盆地未来海洋油气勘探的目标。
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11.50
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473
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