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Research and application on simulation of oilfield 3D in-situ stress field by multi-information co-processing

机译:多信息协同处理对油田3D原位应力场仿真的研究与应用

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When designing an oilfield development program and deploying well patterns, it is often assumed that the maximum principal stress is along a single direction. A wrong determination of the principle stress may cause early water breakthrough and thereby abate production results. In-situ stress field has significant impacts on well pattern design and hydraulic fracturing. To obtain the distribution of a 3D in-situ stress field for a research area, the single-well in-situ stress curves were built by synthesizing laboratory experiments, fracturing results, and experienced formula and logging information. A 3D in-situ stress model was built by stochastic modeling. First, the relationship between vertical compressional wave velocity and longitudinal compressional wave velocity was established. Then, a calculated model of corrected rock mechanical parameters model was built with a triaxial rock mechanics testing system, and a modified tectonic stress coefficient was established according to fracturing data. In accordance with the calculated model and correction coefficient, the single-well in-situ stress variation curve is then determined. Base on the obtained single-well curve, a logging curve, a 3D in-situ stress model of the area was built by applying the stochastic modeling method. Further applications of the 3D in-situ stress field model were finally demonstrated through comparison of simulated results with field monitoring data in Ordos Basin. The results demonstrated high accuracy of the new model and therefore provided guidance to reservoir simulation and well pattern design for low-permeability reservoirs.
机译:在设计油田开发计划和部署井模式时,通常认为最大主应力沿着单一方向。原理压力的错误确定可能导致早水突破,从而减轻生产结果。原位应力场对井图案设计和液压压裂产生重大影响。为了获得研究区域的3D原位应力场的分布,通过合成实验室实验,压裂结果和经验丰富的公式和测井信息来构建单井原位应力曲线。通过随机造型构建了一种3D原位应力模型。首先,建立了垂直压缩波速度与纵向压缩波速度之间的关系。然后,采用三轴岩石力学检测系统建立了一个计算的校正岩机械参数模型模型,并根据压裂数据建立改进的构造应力系数。根据计算出的模型和校正系数,然后确定单井原位应力变化曲线。基于所获得的单井曲线,通过应用随机造型方法构建测井曲线,建立了该区域的3D原位应力模型。通过对鄂尔多斯盆地中的现场监测数据的模拟结果进行模拟结果,最终展示了3D原位应力场模型的进一步应用。结果表明了新模型的高精度,因此为储层模拟和低渗透水库提供了井图案设计的指导。

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