四川盆地五峰组—龙马溪组页岩气优质储层开发模式及评价技术识别

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS
Dazhong Dong , Feng Liang , Quanzhong Guan , Yuqiang Jiang , Shangwen Zhou , Rongze Yu , Yifan Gu , Surong Zhang , Lin Qi , Yan Liu
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引用次数: 5

摘要

2012年,中国第一个全国页岩气示范区在四川盆地设立。经过10年的建设和实践,四川盆地已建成10×1012立方米级的巨型海相页岩气区块,页岩气进入大规模效益勘探开发的新阶段。为系统总结页岩气勘探开发成果,为深部页岩气和页岩油勘探开发提供指导和参考;通过对盆地内重点井的电性、岩相、储层参数和微观孔隙度的分析,系统总结了五峰组-龙马溪组页岩气的主要特征、开发模式及优质储层识别评价关键技术。并得出以下研究结果。首先,生物成因硅质页岩、钙质页岩和混合页岩是优质页岩气藏的主要岩相类型,它们形成于半深水和深水大陆架环境中。它们的横向分布受古地貌控制,垂直发育受物源、氧化还原条件和古生产力的影响。它们的厚度为25–90米。第二,在优质页岩气藏中,发育有机孔隙、无机孔隙和微裂缝(包括薄层/层理裂缝),其中有机孔隙是主要的储集空间之一,微裂缝不仅是不可或缺的储层空间,也是生产途径。页岩气的储集空间总体上是微纳孔,大孔在页岩气富集中起着重要作用。第三,建立了沉积型、成岩型和改造型三种优质储层开发模式。沉积类型是基础。龙马溪组底部笔石带高U/Th层段发育多个优质储层,其厚度主要受古地貌控制,尤其是凹陷区厚度更大。成岩类型可分为三种形式,即同生早成岩刚性支撑、中晚成岩矿物有机质转化和超压释放压实。改造类型以具有微裂缝的优质储层为主。第四,识别和评价优质页岩气藏的核心技术包括大尺寸岩心和岩石切片观测、高精度岩石矿物识别、实验含气量测试和模拟、SEM微观表征、三维微观孔隙重建、综合地球物理解释和预测以及大数据分析。综上所述,近10年的示范区建设研究与实践成果,可以加深对国内优质页岩气藏的认识,促进页岩气藏相关理论与技术的有效发展,提高页岩气甜点带/层段的预测精度,扩大页岩气勘探开发成果示范区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development model and identification of evaluation technology for Wufeng Formation–Longmaxi Formation quality shale gas reservoirs in the Sichuan Basin

In 2012, China's first national shale gas demonstrations areas were set up in the Sichuan Basin. After 10 years' construction and practice, the giant marine shale gas area of 10 × 1012 m3 level is built up in the Sichuan Basin, and shale gas steps into a new stage of large-scale benefit exploration and development. In order to systematically summarize the achievements in shale gas exploration and development and provide guidance and reference for the exploration and development of deep shale gas and shale oil & gas in other areas, this paper systematically summarizes the main characteristics, development models and key identification and evaluation technologies for quality reservoirs of Wufeng Formation–Longmaxi Formation shale gas by analyzing the electric property, lithofacies, reservoir parameters and microscopic porosity of key wells in the basin. And the following research results are obtained. First, biogenetic siliceous shale, calcareous shale and mixed shale are main lithofacies types in quality shale gas reservoirs, and they are formed in the environment of semi-deep and deep water continental shelf. Their lateral distribution is controlled by the paleogeomorphology and their vertical development is influenced by provenance, redox condition and paleo productivity. They are 25–90 m thick. Second, in the quality shale gas reservoirs develop organic pores, inorganic pore and microfractures (including lamina/bedding fractures), among which, organic pore is one of the main reservoir spaces and microfracture is not only indispensable reservoir space, but also production pathway. The reservoir space of shale gas is overall micro-nano pore, and macropores play an important role in shale gas enrichment. Third, three development models of quality reservoir are established, including sedimentary type, diagenesis type and reworking type. The sedimentary type is the foundation. Multiple quality reservoirs are developed in the high U/Th interval of graptolite belt at the bottom of Longmaxi Formation, and their thickness is mainly controlled by paleogeomorphology and especially greater in the depression area. The diagenesis type is divided into three forms, i.e., syngenetic-early diagenetic rigid support, middle-late diagenetic mineral-organic matter transformation, and overpressure relief compaction. The reworking type is dominated by quality reservoirs with microfractures. Fourth, the core technologies for identifying and evaluating quality shale gas reservoir include large-size core and rock slice observation, high-accuracy rock mineral identification, experimental gas content test and simulation, SEM microscopic characterization, 3D microscopic pore reconstruction, comprehensive geophysical interpretation and prediction and big data analysis. In conclusion, nearly 10 years' research and practice achievements in demonstration area construction can deepen the understanding on domestic quality shale gas reservoirs, promote the effective development of the theories and technologies related to shale gas reservoirs, improve the prediction accuracy of shale gas sweet spot zones/intervals, and expand the shale gas exploration and development achievements of demonstration areas.

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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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