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Seismic attribute-based characterization of coalbed methane reservoirs: An example from the Fruitland Formation, San Juan basin, New Mexico

机译:基于地震属性的煤层气储层特征描述:以新墨西哥州圣胡安盆地弗鲁特兰地层为例

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摘要

The Fruitland Formation of the San Juan basin is the largest producer of coalbed methane in the world. Production patterns vary from one well to another throughout the basin, reflecting factors such as coal thickness and fracture and cleat density. In this study, we integrated conventional P-wave three-dimensional (3-D) seismic and well data to investigate geological controls on production from a thick, continuous coal seam in the lower part of the Fruitland Formation. Our objective was to show the potential of using 3-D seismic data to predict coal thickness, as well as the distribution and orientation of subtle structures that may be associated with enhanced permeability zones. To do this, we first derived a seismic attribute-based model that predicts coal thickness. We then used curvature attributes derived from seismic horizons to detect subtle structural features that might be associated with zones of enhanced permeability. Production data show that the best producing wells are associated with seismically definable structural features and thick coal. Although other factors (e.g., completion practices and coal type) affect coalbed methane production, our results suggest that conventional 3-D seismic data, integrated with wire-line logs and production data, are useful for characterizing coalbed methane reservoirs.
机译:圣胡安盆地的弗兰特兰组是世界上最大的煤层气生产商。整个盆地的生产模式 从一口井变化到另一口,反映了 因素,如煤层厚度,裂缝和割理密度。 在本研究中,我们结合常规P波三维(sup)(3-D)地震和井数据,研究下部下厚而连续的煤层开采的地质控制 一部分是Fruitland编队。我们的目的是证明使用3-D地震数据预测煤厚度的 潜力, 以及细微结构的分布和方向 可能与渗透率增强区有关。为此,我们首先导出基于地震属性的模型,该模型预测煤层厚度。然后,我们使用从地震层获得的曲率属性 来检测 可能与渗透率增强区域相关的细微结构特征。产量 数据表明,产量最高的井与 地震可定义的构造特征和厚煤有关。尽管 其他因素(例如完井实践和煤种)影响 煤层气产量,但我们的结果表明,常规的 3-D地震数据已经综合带有有线日志和生产 数据的数据对于表征煤层气储层很有用。

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  • 来源
    《AAPG Bulletin》 |2004年第11期|00001603-00001621|共19页
  • 作者单位

    Earth and Planetary Sciences, McGill University, 3450 University, Montreal, Quebec, Canada H3A 2A7;

    Earth and Planetary Sciences, McGill University, 3450 University, Montreal, Quebec, Canada H3A 2A7hart@eps.mcgill.ca;

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