富满油田断控缝洞型储层地应力场建模及应用

    Modeling and application of in-situ stress field in fault-controlled Fracture-vug reservoirs in the Fuman Oilfield

    • 摘要: 为了明确断控缝洞型碳酸盐岩储层地应力分布特征,以提高碳酸盐岩的勘探效率和开发效益。本文基于地质信息、钻井信息、地震资料以及地震属性分析,以富满油田FY210断裂带为例,开展地应力场建模,明确地应力分布模式,分析了断裂力学有效性,并提出基于地应力分析的储层品质评价方法和提产对策。结果表明:(1)断控缝洞型碳酸盐岩储层的非均质性强,断层、裂缝、孔洞造成局部应力场发生不同程度降低,根据地应力变化可以反推断-缝-孔-洞发育情况;(2)缝洞体的地应力具有“壳式”分布模式,内部低值区为有利储层体,外部强应力壳体表现为应力集中,渗透性较差,属于不利的钻探目标;(3)除了常规岩石物理参数外,地应力、断裂活动性、可压裂性等地质力学属性也是影响断控缝洞型碳酸盐岩储层品质和产能的重要因素,井位部署和井轨迹优化应充分考虑地应力相关因素,并兼顾储层改造效率,促进单井提产和油藏效益开发。

       

      Abstract: In order to clarify the distribution characteristics of in-situ stress in fault-controlled fracture-vug reservoirs and improve the exploration efficiency and development benefits of carbonate reservoir. Based on geological information, drilling information, seismic data, and seismic attribute analysis, this article conducts a modeling of the in situ stress field in the FY210 fault zone of the Fuman Oilfield, clarifies its in situ stress distribution mode, analyzes the effectiveness of fracture mechanics, and proposes a reservoir quality evaluation method and production improvement strategy based on in situ stress analysis. The results indicate that: (1) the heterogeneity of fault-controlled fracture-vug reservoirs is strong, and faults, fractures, and pores cause obvious reduction in local stress fields. Based on changes in in situ stress, the development of fractures, pores, and caves can be inferred; (2) The in-situ stress field of the fracture-vug exhibits a "shell like" distribution pattern, with favorable reservoir bodies in the low stress value areas inside and stress concentration and poor permeability in the strong stress shell outside, making it an unfavorable drilling target; (3) In addition to conventional petrophysical parameters, geomechanical properties such as in-situ stress, fracture activity, and fracturability are also important factors that affect the quality and productivity of fracture-controlled vuggy carbonate reservoirs. Well placement and well trajectory optimization should fully consider factors related to in-situ stress, while also taking into account reservoir reconstruction efficiency to promote single well production and reservoir benefit development.

       

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