中国东部近海渤海湾盆地大、中型白垩系火山岩储层的形成

IF 7 Q1 ENERGY & FUELS Petroleum Exploration and Development Pub Date : 2024-06-01 DOI:10.1016/S1876-3804(24)60486-6
Changgui XU , Gongcheng ZHANG , Shengbing HUANG , Xuanlong SHAN , Tingyu LIU , Jiahui LI
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引用次数: 0

摘要

本文以渤海湾盆地海域中生代油气勘探地质、地球物理资料和2019年以来发现的高产火山岩油气井为基础,系统总结了渤海大中型白垩系火山岩油气藏的形成条件。研究表明,渤海中生代大型中熔岩和中熔岩复合火山岩造山运动是形成大型火山岩油气藏的物质基础。火山喷口-原生面带的喷出面上亚层和火山导管面的隐爆角砾岩亚层有利于大规模火山储层的形成。以高孔隙度、中低渗透率和中等孔隙度、中低渗透率为特征的两类高效储层是形成大、中型火山岩储层的核心。高孔隙度和中低渗透率储层由中熔岩泡状熔岩或密集溶蚀叠加的隐爆角砾岩形成。中等孔隙度和中低渗透率的储层是由强烈的构造作用与流体溶解作用叠加形成的。风化和构造转化是研究区大中型火山岩储层的主要形成机制。低源 "源-储层垂挂型 "是大中型火山岩储层的最佳源-储层构造关系。渤中脉外围存在有利的火山岩面、高效储层和源-储层垂向配置关系,靠近走向滑动断层及其分支断层的大型中熔岩型和中熔岩型复合火山岩体是未来勘探的主要方向。
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Formation of large- and medium-sized Cretaceous volcanic reservoirs in the offshore Bohai Bay Basin, East China

Based on the geological and geophysical data of Mesozoic oil-gas exploration in the sea area of Bohai Bay Basin and the discovered high-yield volcanic oil and gas wells since 2019, this paper methodically summarizes the formation conditions of large- and medium-sized Cretaceous volcanic oil and gas reservoirs in the Bohai Sea. Research shows that the Mesozoic large intermediate-felsic lava and intermediate-felsic composite volcanic edifices in the Bohai Sea are the material basis for the formation of large-scale volcanic reservoirs. The upper subfacies of effusive facies and cryptoexplosive breccia subfacies of volcanic conduit facies of volcanic vent-proximal facies belts are favorable for large-scale volcanic reservoir formation. Two types of efficient reservoirs, characterized by high porosity and medium to low permeability, as well as medium porosity and medium to low permeability, are the core of the formation of large- and medium-sized volcanic reservoirs. The reservoir with high porosity and medium to low permeability is formed by intermediate-felsic vesicular lava or the cryptoexplosive breccia superimposed by intensive dissolution. The reservoir with medium porosity and medium to low permeability is formed by intense tectonism superimposed by fluid dissolution. Weathering and tectonic transformation are main formation mechanisms for large and medium-sized volcanic reservoirs in the study area. The low-source “source-reservoir draping type” is the optimum source-reservoir configuration relationship for large- and medium-sized volcanic reservoirs. There exists favorable volcanic facies, efficient reservoirs and source-reservoir draping configuration relationship on the periphery of Bozhong Sag, and the large intermediate-felsic lava and intermediate-felsic composite volcanic edifices close to strike-slip faults and their branch faults are the main directions of future exploration.

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