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Integrating 4D Seismic Data with Production Related Effects at Enfield, North West Shelf, Australia

机译:将4D地震数据与澳大利亚西北架子埃菲尔德的生产相关效果集成

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The Enfield field has a 160 m oil column located between a medium sized gas cap and a water/leg aquifer system. Enfield is undergoing an active water-flood utilizing both up-dip and down-dip water injection. The water-flood reservoir management of such a field requires timely information concerning reservoir pressures, water-flood sweep and movement of gas and water contacts. Conventional reservoir monitoring practice obtains this information by monitoring at the wellbore. Such approaches require significant time and water-cut development to determine how the reservoir and water-flood is performing and provide little spatial information as to how the water-flood is affected by faults, preferential pathways and structural variation. 4D seismic methods represent a powerful tool to assist reservoir management. This work describes the planning, implementation of an early 4D program for the Enfield water-flood and history matching process. Pre-development feasibility work indicated that Enfield had rock properties favourable for 4D monitoring as reservoir sands are acoustically soft and identifiable with seismic amplitudes. Post-production, early 4D monitoring has provided unique and timely insight into water movement both within the reservoir and through active fault networks that wellhead data alone would not provide. This work has shown the benefit of 4D in the following areas; tuning of injected water flows to a northern fault/aquifer system, locating new injector producer pairings, improved utilization of geologic and seismic barrier and baffle features into the history matching process and finally showing how the seismic response to up-dip water injection, around a key injector, was more subtle and supported the choice of imbibition relative permeability relationships and trapped gas saturations. Validation of insights was provided by the use of synthetic seismic modeling of simulation results.
机译:enField领域具有位于中型气盖和水/腿含水层系统之间的160米油柱。 enfield正在进行积极的水洪水,利用浸入浸渍水注射。这种领域的水洪水储层管理需要及时了解水库压力,水洪水扫描和气体和水触点的运动。传统的水库监测实践通过在井筒监测来获得这些信息。这些方法需要大量的时间和水切削开发,以确定储层和水洪如何表现,并提供几乎关于水洪如何受到故障影响的空间信息,优惠途径和结构变异。 4D地震方法代表了一种帮助水库管理的强大工具。这项工作描述了规划,实施了enField水洪和历史匹配过程的早期4D计划。开发前的可行性工作表明,由于水库砂与地震振幅和识别的岩石砂,enfield有利于4D监控的岩石属性。生产后,早期4D监控已经独特,及时地欣赏水库内的水平,并通过主动故障网络仅通过单独的井口数据不提供。这项工作表明以下区域中有4D的好处;注入水流流向北方故障/含水层系统,定位新的喷射器生产者配对,改善了地质和地震障碍物的利用,并挡板特征进入历史匹配过程,最后展示了如何对浸入浸入水注射的地震反应如何主要注射器,更加微妙,并支持选择性相对渗透性关系和捕获的气体饱和。通过使用仿真结果的合成地震建模提供了识别识别。

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