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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >Integrated Surveillance Enhancing Quality of Decisions and Reservoir Description in the Harding Field
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Integrated Surveillance Enhancing Quality of Decisions and Reservoir Description in the Harding Field

机译:Harding领域的综合监视提高决策质量和储层描述

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A key factor in managing mature fields is to establish adequate surveillance in each phase of their life. The complexity increases when the field is developed with horizontal wells. Differences in data quality and resolution should be taken into consideration when planning such surveillance. Current uncertainties in Harding field relate to unreliable well conformance data using conventional production logs (PL) and assumptions in the reservoir description, which are subseismic resolution. We describe the learning from a horizontal well in Harding, where appropriate surveillance enhanced reservoir understanding and quality of decision making.rnBased on the initial understanding from the reservoir model, an insert string well work option was proposed to reduce water cut. Historically in this field, conventional PLs provided unreliable well conformance data in horizontal multiphase flow. To improve the characterization at the well scale, an array PL was deployed for the first time on this field.rnThe flowing results revealed that the insert string solution was inappropriate and would result in lost oil production. The shut-in data identified crossflow between two zones separated by a shale section. In the initial model, this shale was mapped only at local level. Post surveillance, it was remapped on seismic as an extensive baffle having an impact on an area with more mobile oil to recover. There is a potential upside with a new infill target being identified toward the toe of this well.rnMost of the initial decisions about the insert string were based on seismic and modeling work. The new array PL data brought additional information into the model, increasing confidence in the results. Data resolution at the well level matters and this highlights the need to take more PL measurements to calibrate the seismic response and improve the reservoir model.
机译:管理成熟领域的关键因素是在其生活的各个阶段建立适当的监视。当用水平井开发油田时,复杂性增加。计划进行此类监视时,应考虑数据质量和分辨率的差异。 Harding油田目前的不确定性与使用常规生产测井(PL)和储层描述中的假设(即亚地震分辨率)的不可靠的井测井数据有关。我们描述了在哈丁的一口水平井中进行的学习,适当的监视可以提高对油藏的了解和决策质量。rn基于对油藏模型的初步了解,提出了一种插入管柱油井工作方案,以减少含水量。在该领域的历史上,常规的PL在水平多相流中提供了不可靠的井一致性数据。为了改善井规模的表征,在该领域首次部署了阵列PL。流动结果表明,插入管柱解决方案不合适,并且会导致石油产量下降。封闭数据确定了由页岩段分隔的两个区域之间的错流。在初始模型中,此页岩仅在局部级别上映射。监视后,将其重新映射为地震,因为它是一个巨大的挡板,对有更多可采油的地区造成了影响。有一个潜在的上行空间,那就是在该井的脚趾处确定一个新的填充目标。rn关于插入管柱的大多数最初决定都是基于地震和建模工作。新的阵列PL数据为模型带来了更多信息,从而提高了对结果的信心。井级的数据分辨率很重要,这突出表明需要进行更多的PL测量以校准地震响应并改善储层模型。

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