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New Insight Into Eromanga Basin Oil Saturations

机译:新洞察埃洛蒙加盆地油饱和

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The Eromanga Basin is an established Australian producing region with oil and gas found in several different Formations. At the request of an Operator, a project was undertaken to construct saturation-height functions for all the Eromanga reservoir units with a secondary objective being to define residual hydrocarbon saturations. Initial investigations revealed many reservoirs with residual hydrocarbon columns, the significance of which had not been well understood. The residual hydrocarbons implied that imbibition, rather than drainage, capillary pressure curves were representative of water saturations in the reservoir. This insight suggested higher oil-in-place and reserves volumes than previously assumed since mobile hydrocarbons are present very close to the pressure derived Free-Water Level in imbibition systems. When individual hydrocarbon Fields were considered, there were insufficient special core analyses to derive meaningful residual hydrocarbon or saturation-height relationships. However, on the basin scale, a significant volume of measurements had been acquired over a period of 22 years, albeit using different laboratories and a variety of measurement techniques. With knowledge of the measurement techniques and Formations sampled, the data were combined in such a way that consistent datasets were obtained for endpoint relative permeabilities and drainage and imbibition capillary pressure curves. Interpretation of these datasets produced residual oil saturation and drainage and imbibition saturation height relationships. These relations were tested against those log-derived water saturations considered most reliable by the Operator, showing excellent matches. The model developed successfully described the water saturation distributions in the reservoirs tested in a manner not previously possible. Indeed, the use of the drainage and imbibition saturation-height functions together with residual hydrocarbon relationships provides a powerful tool to determine both static and dynamic fluid contacts, while checking the validity of wireline log-based water saturations.
机译:Eromanga盆地是一家建立的澳大利亚生产地区,其中包括几种不同的地层的石油和天然气。应操作员的要求,开展了一个项目,以构建所有Eromanga储层单元的饱和​​度函数,其中具有次要目标是定义残留的烃饱和。初步调查揭示了许多具有残留烃柱的储层,其意义尚未得到很好的理解。残留的烃暗示,吸收,而不是引流,毛细管压力曲线是储层中的水饱和度。这种洞察力建议比以前假设的更高的储量和储备体积,因为移动烃非常接近吸收系统中的压力衍生的自由水平。当考虑各个烃场时,存在不足的特殊核心分析以导出有意义的残余碳氢化合物或饱和度高度关系。然而,在盆地规模上,已经在22年的时间内获得了大量的测量,尽管使用不同的实验室和各种测量技术。凭借对取样的测量技术和地层的知识,数据以这样的方式组合,即获得一致的数据集以获得终点相对渗透率和排水和吸入毛细管压力曲线。解释这些数据集产生残留的油饱和度和排水和吸收饱和度高度关系。这些关系针对经营者认为最可靠的那些日志衍生的水饱和度进行了测试,显示出优秀的比赛。该模型成功地描述了以先前可能的方式测试的储存器中的水饱和度分布。实际上,使用排水和利用饱和度 - 高度功能与残余的碳氢化合物关系一起提供了一种强大的工具,用于确定静态和动态流体接触,同时检查基于有线对数的水饱和饱和度的有效性。

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