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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Streamline-based integration of time-lapse seismic and production data into petroleum reservoir models
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Streamline-based integration of time-lapse seismic and production data into petroleum reservoir models

机译:基于流线的时移地震和生产数据集成到石油储层模型中

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摘要

We have developed an efficient approach of petroleum reservoir model calibration that integrates 4D seismic surveys together with well-production data. The approach is particularly well-suited for the calibration of high-resolution reservoir properties (permeability) because the field-scale seismic data are areally dense, whereas the production data are effectively averaged over interwell spacing. The joint calibration procedure is performed using streamline-based sensitivities derived from finite-difference flow simulation. The inverted seismic data (i.e., changes in elastic impedance or fluid saturations) are distributed as a 3D high-resolution grid cell property. The sensitivities of the seismic and production surveillance data to perturbations in absolute permeability at individual grid cells are efficiently computed via semianalytical streamline techniques. We generalize previous formulations of streamline-based seismic inversion to incorporate realistic field situations such as changing boundary conditions due to infill drilling, pattern conversion, etc. A commercial finite-difference flow simulator is used for reservoir simulation and to generate the time-dependent velocity fields through which streamlines are traced and the sensitivity coefficients are computed. The commercial simulator allows us to incorporate detailed physical processes including compressibility and nonconvective forces, e.g., capillary pressure effects, while the streamline trajectories provide a rapid evaluation of the sensitivities. The efficacy of our proposed approach was tested with synthetic and field applications. The synthetic example was the Society of Petroleum Engineers benchmark Brugge field case. The field example involves waterflooding of a North Sea reservoir with multiple seismic surveys. In both cases, the advantages of incorporating the time-lapse variations were clearly demonstrated through improved estimation of the permeability heterogeneity, fluid saturation evolution, and swept and drained volumes. The value of the seismic data integration was in particular proven through the identification of the continuity in reservoir sands and barriers, and by the preservation of geologic realism in the calibrated model.
机译:我们已经开发出一种有效的石油储层模型校准方法,该方法将4D地震勘测与井产量数据集成在一起。该方法特别适合于高分辨率油层属性(渗透率)的校准,因为现场规模的地震数据在面积上是致密的,而生产数据是在井间间距上有效地平均的。联合校准过程使用从有限差分流模拟中得出的基于流线的灵敏度进行。反演的地震数据(即,弹性阻抗或流体饱和度的变化)被作为3D高分辨率网格单元特性来分布。通过半分析流线技术,可以有效地计算出地震和生产监控数据对单个网格单元绝对渗透率扰动的敏感性。我们概括了基于流线的地震反演的先前公式,以结合现实的现场情况,例如由于填充钻井,模式转换等导致的边界条件变化。商业有限差分流模拟器用于油藏模拟并生成随时间变化的速度跟踪流线并计算灵敏度系数的字段。商业仿真器使我们能够结合详细的物理过程,包括可压缩性和非对流力,例如毛细压力效应,而流线形轨迹可快速评估灵敏度。我们提出的方法的有效性已在合成和现场应用中进行了测试。综合示例是石油工程师协会基准的布鲁日现场案例。现场示例涉及通过多次地震勘探对北海水库进行注水。在这两种情况下,通过改进对渗透率非均质性,流体饱和度演化以及扫掠和排水体积的估计,可以清楚地表明结合时移变化的优势。地震数据集成的价值尤其通过确定储层砂岩和屏障的连续性,以及通过在校准模型中保留地质真实性而得到证明。

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