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Tectonic Fractures in Tight Gas Sandstones of the Upper Triassic Xujiahe Formation in the Western Sichuan Basin,China

机译:川西地区上三叠统须家河组致密气砂岩的构造断裂

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摘要

The western Sichuan Basin,which is located at the front of the Longmen Mountains in the west of Sichuan Province,China,is a foreland basin formed in the Late Triassic.The Upper Triassic Xujiahe Formation is a tight gas sandstone reservoir with low porosity and ultra-low permeability,whose gas accumulation and production are controlled by well-developed fracture zones.There are mainly three types of fractures developed in the Upper Triassic tight gas sandstones,namely tectonic fractures,diagenetic fractures and overpressure-related fractures,of which high-angle tectonic fractures are the most important.The tectonic fractures can be classified into four sets,i.e.,N-S-,NE-,E-W-and NW-striking fractures.In addition,there are a number of approximately horizontal shear fractures in some of the medium-grained sandstones and grit stones nearby the thrusts or slip layers.Tectonic fractures were mainly formed at the end of the Triassic,the end of the Cretaceous and the end of the Neogene-Early Pleistocene.The development degree of tectonic fractures was controlled by lithology,thickness,structure,stress and fluid pressure.Overpressure makes not only the rock shear strength decrease,but also the stress state change from compression to tension.Thus,tensional fractures can be formed in fold-thrust belts.Tectonic fractures are mainly developed along the NE-and N-S-striking structural belts,and are the important storage space and the principal flow channels in the tight gas sandstone.The porosity of fractures here is 28.4% of the gross reservoir porosity,and the permeability of fractures being two or three grades higher than that of the matrix pores.Four sets of high-angle tectonic fractures and horizontal shear fractures formed a good network system and controlled the distribution and production of gas in the tight sandstones.
机译:川西盆地位于中国西部的龙门山前缘,是三叠世晚期形成的前陆盆地。上三叠统须家河组是致密的气砂岩储集层,孔隙度低,超细低渗透性,其气藏和生产受发育的裂缝带控制。上三叠统致密气砂岩主要发育三种类型的裂缝,即构造裂缝,成岩裂缝和超压相关裂缝,其中高斜角构造裂缝最为重要。构造裂缝可分为四类:NS-,NE-,EW-和NW-走向裂缝。此外,在一些构造裂缝中还存在许多近似水平的剪切裂缝。逆冲或滑移层附近的中粒砂岩和砂砾岩。构造裂缝主要形成在三叠纪末,白垩纪末和新近纪-早P末。构造裂缝的发育程度受岩性,厚度,结构,应力和流体压力的控制。过大的压力不仅使岩石的抗剪强度降低,而且应力状态从压缩状态转变为拉伸状态,从而形成拉伸裂缝。构造断裂主要发育在东北,北向构造带上,是致密气砂岩的重要储集空间和主要流动通道。这里的孔隙度为总孔隙度的28.4%。储层孔隙度高,裂缝渗透率比基体孔隙高两到三级。四套大角度构造裂缝和水平剪切裂缝形成了良好的网状体系,控制了致密砂岩中的气分布和产出。

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  • 来源
    《地质学报(英文版)》 |2010年第5期|1229-1238|共10页
  • 作者

    ZENG Lianbo; LI Yuegang;

  • 作者单位

    Key State Laboratory of Petroleum Resource and Prospecting,China University of Petroleum,Beijing102249,China;

    Northwest Sichuan Gas Field,Southwest Oil and Gas Field Branch,PetroChina Company Limited,Jiangyou,Sichuan 621709,China;

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  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 地质学;
  • 关键词

  • 入库时间 2022-08-19 04:09:50
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