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首页> 外文期刊>Petroleum Geoscience >Appraisal of reservoir compartmentalization using fluid mixing time-scales: Horn Mountain Field, Gulf of Mexico
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Appraisal of reservoir compartmentalization using fluid mixing time-scales: Horn Mountain Field, Gulf of Mexico

机译:使用流体混合时间尺度评估储层划分:墨西哥湾的霍恩山田

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Reservoir compartmentalization can seriously compromise a project's economics if left undetected during appraisal. Its early identification is made more likely if maximum use is made of available fluid appraisal data. This involves making a critical comparison of time-scales for various fluid properties to equilibrate compared with the actual time since those properties were initially disturbed. Spatially varying fluid properties indicate compartmentalization if they have existed for longer than the time needed for them to equilibrate. Here we use data from appraisal wells and reservoir mixing time-scales to investigate vertical and horizontal compartmentalization in the Horn Mountain Field (Gulf of Mexico) and to quantify the properties of the baffles/barriers identified. We compare our results with earlier work using time-lapse geochemistry and mud gas isotope logging. Present fluid compositional variations in the field are shown not to be diagnostic of horizontal compartmentalization as the mixing time-scales by molecular diffusion are longer than the time since the reservoir filled. In contrast, pressure shifts and density differences are diagnostic. They indicate that faults within the Horn Mountain Field are relatively impermeable and would act as barriers during oil production. They also confirm that a shale-filled channel acts as a barrier to vertical flow.
机译:如果在评估过程中未发现储层分隔,则会严重损害项目的经济效益。如果充分利用现有的流体评估数据,则尽早识别它的可能性更大。这涉及对各种流体特性的时标进行严格的比较,以使之与实际时间相比达到平衡,因为这些特性最初受到干扰。如果流体存在的时间比它们平衡所需的时间长,则空间变化的流体属性表示划分。在这里,我们使用来自评估井和储层混合时间尺度的数据来调查Horn Mountain Field(墨西哥湾)中的垂直和水平隔层,并对量化的挡板/障碍物进行量化。我们将我们的结果与使用延时地球化学和泥浆气体同位素测井的早期工作进行了比较。由于通过分子扩散的混合时间尺度长于自储层充满以来的时间,因此该领域中目前的流体成分变化显示为不能诊断水平分区。相反,压力变化和密度差异是诊断性的。它们表明,霍恩山区的断层是相对不可渗透的,并且会在石油生产过程中充当屏障。他们还证实,充满页岩的通道是垂直流的屏障。

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