Control of Earth system evolution on the formation and enrichment of marine ultra-deep petroleum in China

IF 7 Q1 ENERGY & FUELS Petroleum Exploration and Development Pub Date : 2024-08-01 DOI:10.1016/S1876-3804(24)60512-4
Shuichang ZHANG , Huajian WANG , Jin SU , Xiaomei WANG , Kun HE , Yuke LIU
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Abstract

Taking the Paleozoic of the Sichuan and Tarim basins in China as example, the controlling effects of the Earth system evolution and multi-spherical interactions on the formation and enrichment of marine ultra-deep petroleum in China have been elaborated. By discussing the development of “source-reservoir-seal” controlled by the breakup and assembly of supercontinents and regional tectonic movements, and the mechanisms of petroleum generation and accumulation controlled by temperature-pressure system and fault conduit system, Both the South China and Tarim blocks passed through the intertropical convergence zone (ITCZ) of the low-latitude Hadley Cell twice during their drifts, and formed hydrocarbon source rocks with high quality. It is proposed that deep tectonic activities and surface climate evolution jointly controlled the types and stratigraphic positions of ultra-deep hydrocarbon source rocks, reservoirs, and seals in the Sichuan and Tarim basins, forming multiple petroleum systems in the Ediacaran–Cambrian, Cambrian–Ordovician, Cambrian–Permian and Permian–Triassic strata. The matching degree of source-reservoir-seal, the type of organic matter in source rocks, the deep thermal regime of basin, and the burial-uplift process across tectonic periods collectively control the entire process from the generation to the accumulation of oil and gas. Three types of oil and gas enrichment models are formed, including near-source accumulation in platform marginal zones, distant-source accumulation in high-energy beaches through faults, and three-dimensional accumulation in strike-slip fault zones, which ultimately result in the multi-layered natural gas enrichment in ultra-deep layers of the Sichuan Basin and co-enrichment of oil and gas in the ultra-deep layers of the Tarim Basin.

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地球系统演化对中国海洋超深层石油形成和富集的控制作用
以中国四川盆地和塔里木盆地古生代为例,阐述了地球系统演化和多球体相互作用对中国海相超深层石油形成和富集的控制作用。通过探讨超大陆断裂组装和区域构造运动控制的 "源-储-封 "发育,以及温压系统和断层导管系统控制的石油生成和富集机制,发现华南和塔里木区块在漂移过程中均两次穿过低纬度哈德利小区的热带辐合带(ITCZ),形成了优质的烃源岩。提出深部构造活动和地表气候演化共同控制了四川盆地和塔里木盆地超深部烃源岩、储层和封隔层的类型和地层位置,在埃迪卡拉-寒武纪、寒武纪-奥陶纪、寒武纪-二叠纪和二叠纪-三叠纪地层中形成了多个石油系统。源-储层-封隔的匹配程度、源岩中有机质的类型、盆地深部热力机制以及跨构造期的埋藏-抬升过程共同控制着油气从生成到积累的全过程。形成了平台边缘带近源富集、断层高能滩远源富集、走向滑动断层带立体富集等三种油气富集模式,最终形成四川盆地超深层天然气多层富集和塔里木盆地超深层油气共富集。
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CiteScore
11.50
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0.00%
发文量
473
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