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Multi-scenario Geomechanical Modeling for Investigating Well Deformation in the Deep Overburden Over a Compacting Reservoir in the North Sea

机译:在北海压实水库中调查深度覆盖层井变形的多场景地质力学建模

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摘要

A multi-scenario geomechanical modeling approach is presented to investigate the potential mechanisms that lead to a series of well-deformation incidents in the deep overburden overlying a depleting and compacting chalk reservoir in the North Sea. Complementary to the commonly pursued approach of building a full-field geomechanical model presented in the companion paper of this special issue (Schutjens et al. in Compaction- and shear-induced well deformation in Tyra: geomechanics for impact on production, accepted by the ARMA 2018 special issue of Rock Mechanics and Rock Engineering, 2018), a suite of finite-element-based sector-scale ideal geomechanical models is developed based on data and evidence-driven scenarios that take into considerations fault population and juxtaposition, contrasting mechanical stratigraphy, intra-bedding contact conditions, and lateral persistence of thin stringer beds. The simulation results of extensive runs suggest that most of the geological faults in the overburden mudstones are stable under the pre-production stress state and remain largely inactive in the course of overburden deformation resulting from depletion of the underlying reservoir. Alternatively, the contrasting mechanical stratigraphy of the overburden, consisting of thick compliant mudstones and thin stiff carbonate stringers, facilitates "domino" or "bookshelf style intra-bedded shear slippage in response to the developing dominant shear zone right above and around the periphery of the active compacting region. This multi-scenario approach provides new and accelerated insights into the diagnosis of compaction-induced well failure in the deep overburden and allows mapping of competing mechanisms potentially responsible for the problem. These new insights help to steer further modeling efforts and guides future data acquisitions.
机译:提出了一种多场景地质力学建模方法,调查导致一系列覆盖在北海的耗尽和压实粉笔储层中的一系列井变形事件的潜在机制。互补的建设在本特刊的伴文文件中提出的全场地质力学模型(Schutjens等人)的常用方法(Schutjens等人。在Tyra的压实和剪切诱导的良好变形中:对生产影响的地质力学,由ARMA接受2018年摇滚力学和岩石工程特刊,2018),一套基于有限元的部门级理想的地质力学模型是基于数据和证据驱动的情景开发的,这些方案考虑了故障人口和并置,对比机械层面,床上用品的接触条件,薄型磨床床的侧向持久性。广泛奔跑的仿真结果表明,在预生产应力状态下,覆盖层泥岩中的大多数地质故障都是稳定的,并且在底层储层的耗尽导致的覆盖度变形过程中仍然很活跃。或者,由厚度柔性的泥岩和薄的碳酸纤维裤组成的覆盖层的对比机械层面,促进了“多米诺骨牌”或“书架型剪切滑动,以响应于上方和周围的开发优势剪切区域。主动压实区域。这种多场景方法在深载压实诱导的井路诊断中提供了新的和加速了解,并允许竞争机制映射可能对该问题负责。这些新见解有助于引导进一步的建模和指南未来的数据采集。

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