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Optimization of Riser Design and Drill Centers With a Coupled Reservoir and Facility-Network Model for Deepwater Agbami

机译:深水阿巴米河储层和设施网络模型相结合的立管设计和钻井中心优化

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摘要

The use of multiple wells connected at a subsea manifold provides the opportunity to reduce the number of risers and capital expense. The problem is the proper modeling of the reservoir well flow coupled with the combined flow into the facility network (i.e., manifolds, flowlines, and risers), which is necessary to prevent underdesign, resulting in flow-rate bottlenecks, or overdesign, resulting in extra expenditures. This paper presents a tool and methodology for better modeling of the well-to-riser flow and the optimization of riser count and configuration. Although reservoir models coupled with facility networks is not new, software enhancements provided the capability of including operation logic that could duplicate operations in the field. The reservoir model coupled with the facility network provided more reasonable and accurate modeling of multiphase rates and pressures as wells were combined into a single riser. To optimize the riser count, operation logic was applied to maximize rate in the riser at all times against the erosional-velocity limit. This in turn prevented overdesigning by placing more risers than needed to obtain the field-facility capacities. The use of the coupled model and operation logic allowed the optimization of the riser count for any particular reservoir model. The optimum riser count was then determined for 3 earth (geologic) models.
机译:使用在海底歧管处连接的多个井提供了减少立管数量和资本支出的机会。问题在于对储层井流以及进入设施网络的综合流(即歧管,流水线和立管)进行正确的建模,这对于防止设计不足,导致流量瓶颈或设计过度而导致额外支出。本文提出了一种工具和方法,可以更好地模拟上升流和上升管数量和配置的优化。尽管与设施网络耦合的储层模型并不是新事物,但是软件增强功能提供了包含可以在现场进行重复操作的操作逻辑的功能。储层模型与设施网络相结合,为多相速率和压力提供了更合理,更准确的建模,并且将井合并为一个立管。为了优化立管数量,应用了操作逻辑以始终使立管中的速率最大化,以克服侵蚀速度极限。反过来,通过放置比获得现场设施容量所需的更多的立管,可以防止过度设计。耦合模型和操作逻辑的使用允许针对任何特定油藏模型优化立管数量。然后为3个地球(地质)模型确定了最佳立管数量。

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