首页> 外文会议>Congreso y Exposición Internacional del Petróleo en México (Memorias Técnicas 2006) >Predicting Reservoir Compaction and Casing Deformation in Deepwater Turbidites Using a 3D Mechanical Earth Model
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Predicting Reservoir Compaction and Casing Deformation in Deepwater Turbidites Using a 3D Mechanical Earth Model

机译:使用3D机械地球模型预测深水浊积岩中的储层压实和套管变形

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Production from deepwater turbidites is made more challenging by geomechanical problems arising from overpressure, reservoir compaction, casing failure, etc. The impact of reservoir compaction on field development is best examined early in the life of the field, when there is an opportunity for proactive planning. The interaction between heterogeneous reservoir layers, well trajectories and stress changes due to depletion is a complex 3D problem; it is best solved using a 3D approach. This paper illustrates the use of a 3D MEM (Mechanical Earth Model) to quantify reservoir compaction, casing failure and surface subsidence for a deepwater Gulf of Mexico turbidite. Reservoir flow simulation data are used to evaluate stress changes, reservoir compaction, casing deformation and surface subsidence resulting from production. Geomechanical hot spots, where reservoir compaction is predicted to be greatest, are identified to allow production strategy to be optimized. Several possible modes of production-induced casing failure are examined. The likelihood of casing failure is then assessed to facilitate development of strategies for either avoiding such risks, or reducing their impact. This work shows the importance of developing a 3D MEM early in field development. In high-porosity, pressurecompartmentalized sandstones, quantification of reservoir compaction is essential for planning the casing and completion integrity through the life of the reservoir.
机译:由超压,储层压实,套管破裂等引起的地质力学问题使深水混浊物的生产更具挑战性。最好在油田生命周期的早期就检查储层压实对田间开发的影响,这是有可能进行积极规划的。 。非均质储层,井眼轨迹和由于枯竭引起的应力变化之间的相互作用是一个复杂的3D问题。最好使用3D方法解决。本文说明了使用3D MEM(机械地球模型)来量化深水墨西哥湾浊石的储层压实度,套管破坏和地表沉陷。油藏流动模拟数据用于评估应力变化,油藏密实度,套管变形和生产引起的地面沉降。确定了预测储层压实最大的地质力学热点,以优化生产策略。研究了由生产引起的套管故障的几种可能模式。然后评估套管失效的可能性,以促进制定避免此类风险或降低其影响的策略。这项工作表明了在现场开发早期开发3D MEM的重要性。在高孔隙度,压力分隔的砂岩中,量化储层压实度对于规划整个储层寿命期间的套管和完井完整性至关重要。

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