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Optimized Field Development through Integrating Field Network with Dynamic Reservoir model

机译:通过将现场网络与动态储层模型相集成来优化现场开发

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摘要

The world's average oil recovery factor is estimated to be 35%. Increased oil and gas recovery will depend on the availability and utilization of appropriate technology as well as efficient reservoir management and economic strategies. This creates the need for efficiently scanning and evaluating various field architectures during the field development phase, with respect to installed cost, operability and hydrocarbon recovery. A major step towards achieving this improvement is to couple the reservoir performance with the production network. The objective of this paper is to describe an efficient methodology for coupling one or several dynamic reservoir models with the production network model. This enables effective comparison between different field development concepts including various applications of subsea processing. To investigate this integrated approach, a real case study has been performed on the Alta and Gotha discoveries operated by Lundin in the Barents Sea.
机译:世界平均采油率估计为35%。油气采收率的提高将取决于适当技术的可用性和利用以及有效的油藏管理和经济策略。这就需要在现场开发阶段就安装成本,可操作性和碳氢化合物回收方面有效地扫描和评估各种现场架构。实现这一改进的主要步骤是将油藏性能与生产网络相结合。本文的目的是描述一种将一个或多个动态油藏模型与生产网络模型耦合的有效方法。这使得可以在不同的油田开发概念之间进行有效的比较,包括海底处理的各种应用。为了研究这种综合方法,已经对伦丁在巴伦支海的Alta和Gotha发现进行了真实案例研究。

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