中国四川盆地下寒武统琼珠寺页岩气藏孔隙发育特征及控制因素

Zi-Nuo Zhang , Mi-Ruo Lin , Ke-Lai Xi , Jia-Ming Li
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摘要

近年来,四川盆地下寒武统琼珠寺组页岩气勘探取得重大突破。然而,琼珠寺地层页岩气储层的孔隙特征和控制因素尚不明确,阻碍了页岩气的进一步勘探和开发。本文以四川盆地下寒武统琼珠寺组为研究对象。通过显微观察对琼珠寺地层页岩气藏的矿物组成和岩相类型进行了划分。此外,采用聚焦离子束扫描电子显微镜(FIB-SEM)、先进矿物鉴定表征系统(AMICS)分析、大视场缝合扫描电子显微镜技术(MAPS)和氮吸附实验等方法,综合确定了孔隙发育的差异特征和控制因素。结果表明,琼珠寺地层的孔隙类型主要由颗粒间孔隙和晶间孔隙组成。琼珠寺地层孔隙结构复杂。不同岩性的孔隙结构参数存在显著差异。石英和长石具有很强的抗压性,有助于原生孔隙的保存。粘土矿物和碳酸盐矿物通过堵塞孔隙阻碍孔隙发育。有机质对孔隙发育的影响相对较小。根据矿物成分和孔隙参数,层状页岩是不同岩性类型中相对有利的储层面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Pore development characteristics and controlling factors of Lower Cambrian Qiongzhusi shale gas reservoir in Sichuan Basin, China

Recently, the shale gas exploration of Lower Cambrian Qiongzhusi Formation in Sichuan Basin has made a great breakthrough. However, the pore characteristics and controlling factors of the shale-gas reservoir in the Qiongzhusi Formation are not clear, which hinders further exploration and development of shale gas. This paper focuses on the Qiongzhusi Formation in the Lower Cambrian of the Sichuan Basin. On the basis of mineral composition and the lithofacies types of shale-gas reservoirs in Qiongzhusi Formation were classified by microscopic observation. Additionally, focused ion beam-scanning electron microscope (FIB-SEM), advanced mineral identification and characterization system (AMICS) analysis, large-field stitching scanning electron microscope technology (MAPS) and nitrogen adsorption experiment were employed to comprehensively determine the differential characteristics and controlling factors of pore development. The results indicate that the pore types in Qiongzhusi Formation are mainly composed of interparticle pores and intercrystalline pores. The pore structure of Qiongzhusi Formation is complex. Significant differences in pore structure parameters are observed among different lithofacies. Quartz and feldspar contribute to the preservation of primary pores due to their strong compressive resistance. Clay minerals and carbonate minerals impede pore development by occluding pores. The influence of organic matter on the pore development is relatively small. According to the mineral composition and pore parameters, laminated shale is a relatively favorable reservoir facies among different lithofacies types.

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