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基于有限元技术的应力状态确定与应用:以四川盆地泸州区块龙马溪组为例

Determination and Application of Stress States Based on Finite Element Techniques: A Case Study of the Longmaxi Formation in the Luzhou Block, Sichuan Basin.

作者信息

Liu Zhaoyi, Cui Hanzhuo, Han Lingling, Hou Lidong, Bai Jinsong, Wang Changhao, Zhan Hongming

机构信息

Northeast Petroleum University, Daqing 163318, China.

Heli (Tianjin) Energy Technology Co., Ltd, Tianjin 300452, China.

出版信息

ACS Omega. 2024 Oct 25;9(44):44347-44364. doi: 10.1021/acsomega.4c05260. eCollection 2024 Nov 5.

Abstract

Knowledge of the present-day in situ stress field (PIS) has important theoretical and practical significance for shale gas exploration and development. The Wufeng-Longmaxi Formation in the Luzhou Block serves as the main reservoir of marine shale production in southern China. However, there is no clear understanding of PIS in the Luzhou area, which leads to a series of production problems. To investigate the PIS of deep shale reservoirs in Luzhou, experimental and finite element methods (FEMs) were used. Data obtained from imaging logging data, well deviation data, multipole array acoustic logging (XMAC), and world stress map were used to determine the orientation of the horizontal maximum principal stress ( ). Additionally, acoustic emission experiments were employed to determine the magnitude of three principal stresses. Based on FEM, with the stress of a single well as a constraint, a three-dimensional (3D) stress field model was developed. The results show that the orientation of varies from 90 to 120 °E. Further, there are significant differences in stress regimes across the region, with strike-slip/reverse faulting stress regime ( > ≈ ) in the northern region and strike-slip stress regime in the southern region ( > > ). In addition, geomechanical evaluations of wellbore stability and natural activation of fractures were performed. The Luzhou Block mainly develops two groups of natural fractures (NE-SW trending and NW-SE trending), with NW-SE trending being the dominant fracture development orientation. During the fracturing operation, a pore pressure increment larger than 50 MPa is conducive to maintaining a high opening ratio of the reservoir and improving the gas production efficiency. Horizontal wells drilled in the direction of maximum horizontal principal stress in the Wufeng-Longmaxi Formation reduce the probability of wellbore instability. The research results provide a reference for the effective development of deep shale gas reservoirs in southern Sichuan.

摘要

了解现今原地应力场(PIS)对页岩气勘探开发具有重要的理论和实际意义。泸州区块的五峰—龙马溪组是中国南方海相页岩气生产的主要储层。然而,目前对泸州地区的原地应力场尚缺乏清晰认识,导致了一系列生产问题。为研究泸州深层页岩储层的原地应力场,采用了实验和有限元方法(FEM)。利用成像测井数据、井斜数据、多极子阵列声波测井(XMAC)以及世界应力图获取的数据来确定水平最大主应力( )的方向。此外,通过声发射实验确定三个主应力的大小。基于有限元方法,以单井应力为约束条件,建立了三维(3D)应力场模型。结果表明, 的方向在90°至120°E之间变化。此外,该区域的应力状态存在显著差异,北部地区为走滑/逆断层应力状态( > ≈ ),南部地区为走滑应力状态( > > )。另外,还进行了井筒稳定性和裂缝自然活化的地质力学评价。泸州区块主要发育两组天然裂缝(NE - SW走向和NW - SE走向),其中NW - SE走向是裂缝发育的主要方向。在压裂作业过程中,孔隙压力增量大于50 MPa有利于保持储层的高张开度并提高产气效率。在五峰—龙马溪组中,沿水平最大主应力方向钻水平井可降低井筒失稳的概率。研究结果为川南深层页岩气藏的有效开发提供了参考。

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