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Lithofacies and reservoir characteristics of Permian volcanic rocks in the Sichuan Basin

机译:四川盆地二叠纪火山岩岩相和储层特征

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In order to provide basis for further exploration and deployment of volcanic gas reservoirs in the Sichuan Basin, we classified Permian volcanic rocks in this basin using drilling, mud logging, assay, logging and seismic data comprehensively. Then, the lithological characteristics, lithofacies characteristics, lithofacies distribution and reservoir characteristics of different types of volcanic rocks were studied. Besides, the main factors controlling the development of volcanic reservoirs were determined. And the following research results were obtained. First, volcanic rocks in the Sichuan Basin can be comprehensively classified into 4 categories (i.e., volcanic lava, volcaniclastic lava, volcaniclastic rocks and sedimentary volcaniclastic rocks), and basalt, breccia lava, tuffaceous breccia lava, tuff, sedimentary tuff are mainly developed. Second, 3 types of volcanic lithofacies are extensively developed in the Sichuan Basin, including overflow facies, effusive facies and volcanic sedimentary facies. Overflow facies is mainly dominated by basalt, effusive facies is mainly composed of volcaniclastic lava, and volcanic sedimentary facies is mainly composed of tuff and sedimentary tuff. Third, volcanic reservoirs are lithologically composed of breccia lava and basalt. Breccia lava reservoirs are pore-type reservoirs of moderate porosity and low permeability with devitrified micropores and dissolution pores as main reservoir space. In basalt, fractures and dissolution pores are mainly developed, and they are porous-fractured reservoirs with lower matrix porosity. Fourth, the factors controlling volcanic reservoirs mainly include lithology, lithofacies, later fluid alteration and tectonism. Volcaniclastic lava is devitrified in the process of rapid condensation, and a great number of dispersion-shape micropores are formed to provide favorable conditions for further dissolution and pore enhancement in the later stage. Post-diagenesis effect (e.g. dissolution) and fracture development make the reservoir properties better. In conclusion, the areal distribution of volcanic reservoirs in the Sichuan Basin is mainly controlled by the lithofacies. Porous-fractured basalt reservoirs are mainly developed in the Ya'an–Leshan–Pingshan area in the southwestern Sichuan Basin, and pore-type volcaniclastic lava reservoirs are mainly developed in the Chengdu–Jianyang–Santai area.
机译:为了给四川盆地的火山岩气藏进一步勘探和部署提供依据,我们综合利用钻井,录井,化验,测井和地震资料对该盆地的二叠纪火山岩进行了分类。然后,研究了不同类型火山岩的岩性,岩相特征,岩相分布和储层特征。此外,确定了控制火山岩储层发育的主要因素。并获得了以下研究结果。首先,四川盆地的火山岩可大致分为4类(即火山熔岩,火山碎屑岩,火山碎屑岩和沉积火山碎屑岩),而玄武岩,角砾岩熔岩,凝灰质角砾岩熔岩,凝灰岩,沉积凝灰岩则主要发育。其次,四川盆地广泛发育三种类型的火山岩相,包括溢流相,喷出相和火山沉积相。溢流相主要由玄武岩为主,喷出相主要由火山碎屑熔岩组成,而火山沉积相主要由凝灰岩和沉积凝灰岩组成。第三,火山岩储层在岩性上由角砾岩熔岩和玄武岩组成。角砾岩熔岩储层是孔隙度中等,渗透率低的孔隙型储层,以失透的微孔和溶蚀孔为主要储层空间。在玄武岩中,裂缝和溶蚀孔隙主要发育,它们是基质孔隙度较低的多孔裂缝储层。第四,控制火山岩储层的因素主要包括岩性,岩相,后期流体蚀变和构造作用。火山碎屑熔岩在快速凝结过程中失透,形成了大量的分散状微孔,为后期进一步溶解和增强孔隙提供了有利条件。后成岩作用(例如溶解)和裂缝发育使储层性质更好。综上所述,四川盆地火山岩储集层的分布主要受岩相控制。四川盆地西南部的雅安—乐山—坪山地区发育有裂缝型玄武岩储层,成都市—建阳—三台地区主要发育有孔隙型火山碎屑熔岩储层。

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