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Full-Field History-Match of Stacked Reservoirs across Fault Blocks to Investigate Cross-Fault Block Communiation

机译:堆叠储存器的全场历史匹配跨故障块来调查交叉故障块通信

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A stacked series of fault juxtaposed reservoirs across four fault blocks in an offshore field were being considered for further development, but communication across fault blocks remained an uncertainty even after 40 years of production from these reservoirs. Providing a reliable forecast associated with a development plan required understanding of the impact of these faults to the reservoirs’ historical production and how it may impact future development opportunities. A full field simulation model containing all the reservoirs in the field, which can capture the impact of the communication across the fault blocks was built but due to the large number and coarse scale of grid blocks as well as mulyiple reservoirs, it was decided to use the results from the pressure-match work done on the full-field model and work with smaller, but finer scale, full-field simulation models with less number of reservoirs which were more likely to be communicating to produce a model which could answer these questions and provide a reliable forecast associated with the development opportunities. This paper describes a full field, three-dimensional, three-phase, black-oil simulation model of several reservoirs in Bayelsa field (not real name) which was used to investigate across fault block communication and identify further development opportunities in these reservoirs.
机译:正在考虑一个堆叠的一系列故障并置水库,在海上地区的四个故障块进行进一步发展,但即使在这些水库生产40年后,跨故障块的通信也仍然存在不确定性。提供与发展计划相关的可靠预测,要求了解这些故障对库的历史生产的影响以及如何影响未来的发展机会。一个完整的现场仿真模型,其中包含了该字段中的所有储存器,可以构建跨越故障块的通信的影响,但由于网格块的数量和粗略尺度以及适用的水库,因此决定使用从上满场模型和工作与小,但更精细的规模,全油田模拟模型进行压力匹配工作成果较少,其更可能水库数量进行通信,以产生一个模型,能够回答这些问题并提供与发展机会相关的可靠预测。本文介绍了Bayelsa Field(不是真名)的多个水库的全场,三维,三相黑色油仿真模型,用于调查故障块通信并确定这些水库中的进一步发展机会。

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