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Modeling Vertical Multifractured Wells in Vaca Muerta Shale Oil Play, Argentina

机译:在Argentina Vaca Muerta Shale Oil Play中建模垂直多乳房井

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Oil production from the unconventional Vaca Muerta play is increasing as a result of a rigorous appraisal and exploitation strategy. Multiple wells have already demonstrated the potential of the Neuquén Basin, however optimization is still ongoing to determine the best practice for completing wells. A stand out difference of the Vaca Muerta play is its thickness (100 m to 450 m), as such a development strategy based solely on vertical wells is being considered in addition to the horizontal well strategy more commonly applied in other shale plays. The thickness of the Vaca Muerta formation creates new challenges and opportunities due to the stratigraphic variation in petrophysical and mechanical properties which can affect fracture effectiveness and well productivity. Completion design, geology and production performance need to be linked. Specifically, the geology of the Vaca Muerta formation, as is the case in most reservoirs, varies significantly more in the vertical direction in comparison to the horizontal direction. With optimum solutions not necessarily being intuitive, numerical simulation is critical as it enables a large number of variables to be analyzed and their individual impact understood and quantified. The objective of this paper is to present the four different approaches that have been used to build numerical models to represent the vertical wells in Vaca Muerta. These are: 1. A single layer model with a planar fracture placed in a zone of improved permeability to represent the Stimulated Rock Volume (SRV) which is then surrounded by undisturbed matrix. 2. A multilayer model with multiple planar fractures placed in an undisturbed matrix. 3. A multilayer model with multiple planar fractures (one per stage), the SRV surrounding the fractures and the undisturbed matrix behind it. 4. A multilayer model, where the SRV is modeled within a dual porosity model. This work shows how these models were constructed, the measurements that were honored and the estimation and justification of values assumed for unknown parameters. The impact of the different methodologies on the time taken and quality of the history match obtained and subsequent forecasts is also discussed. YPF has collected an extensive data set including PLTs, microseismic surveys, downhole pressure gauges, and pressure build ups, which has been used to constrain the numerical models. Building and history matching these models has been challenging but enables conclusions to be made about rock, fluid and completion interaction that cannot be obtained otherwise. The simpler models, have in some cases, enabled rapid estimates to be made for EUR which have subsequently been supported by the results from the more detailed modeling approaches.
机译:由于严谨的评估和开发策略,非传统Vaca Muerta Play的石油生产正在增加。多个井已经展示了Neuquén盆地的潜力,但优化仍然正在进行中,以确定完成井的最佳做法。 Vaca Muerta Play的突出差异是其厚度(100米至450米),因为除了在其他页岩剧中更常用的水平井策略之外,还考虑了仅基于垂直井的发展战略。 Vaca Muerta形成的厚度由于岩石物理和机械性能的地层变异而产生了新的挑战和机会,这可能影响裂缝效果和生产率良好的生产率。完成设计,地质和生产性能需要挂钩。具体地,与大多数储存器中的情况一样,VACA MUERTA形成的地质,与水平方向相比,垂直方向上的垂直方向变化得多。由于不一定是直观的最佳解决方案,数值模拟是至关重要的,因为它能够分析大量变量,并且它们的个人影响理解和量化。本文的目的是介绍已经用于构建数值模型的四种不同方法,以代表Vaca Muerta中的垂直井。这些是:1。单层模型,平面骨折放置在改进的渗透性区域中,以表示受刺激的岩石体积(SRV),然后被未受干扰的基质包围。 2.具有多个平面骨折的多层模型,放置在未受干扰的基质中。 3.多层模型,具有多个平面骨折(每阶段一个),SRV围绕着裂缝和未受干扰的矩阵。 4.一个多层模型,其中SRV在双孔隙模型内建模。这项工作表明了如何构建这些模型,历史的测量值以及为未知参数假定的值的估计和理由。还讨论了不同方法对所得历史匹配和随后预测的时间和质量的影响。 YPF收集了一种广泛的数据集,包括PLTS,微震测量,井下压力表和压力构建,已被用于约束数值模型。建筑物和历史与这些模型的匹配一直在具有挑战性,但能够在否则无法获得的岩石,流体和完井相互作用的结论。更简单的型号在某些情况下,在某些情况下启用了欧元的快速估计,随后由更详细的建模方法的结果得到支持。

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