东巴格达油田Khasib组岩石力学特性的二维和三维建模

Hayder Steer, Farqad Hadi, Abdulaziz Ellafi
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引用次数: 0

摘要

对于许多油藏地质力学应用,包括井筒不稳定性分析、水力压裂、出砂、储层压实和沉降,了解岩石力学性质和远场应力的分布是一项重要的任务。确定岩石力学特性的一个主要挑战是,它们无法在井眼中直接测量。此外,用于测量的碳酸盐岩心样品是有限的,它们只能提供特定深度的离散数据。本研究的目的是建立东巴格达油田/中部地区Khasib储层的二维和三维地质力学模型。采用tech .2015.3软件建立三维mem模型,采用Petrel e&p 2018.2软件建立岩石力学特性三维分布。kasib组有9个单元(从K1到K9)。目前的研究结果支持了这样的证据,即在垂直情况下,所有层的水平应力都是相似的,但由于孔隙压力的变化,它们的水平分布有所不同。孔隙压力垂直增大,但由于不同井的产量,同一层内的孔隙压力分布不同。岩石的弹性和强度特性,包括杨氏模量、泊松比和无侧限抗压强度(UCS)具有相同的行为,这些参数的最大值出现在表层(K1)。该层比其他具有高孔隙度和高渗透性的层更坚硬。各地层的内摩擦角在38 ~ 40°之间,与灰岩的内摩擦角协调良好。由于其海相沉积环境和复杂的成岩作用,岩石力学性质的三维分布揭示了碳酸盐的非均质性。该研究结果可用于未来东巴格达油田的地质力学应用,包括井眼稳定性分析、断层再激活和二氧化碳封存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2D and 3D Modeling of Rock Mechanical Properties of Khasib Formation in East Baghdad Oil Field
Knowing the distribution of the mechanical rock properties and the far field stresses for the field of interest is an important task for many applications concerning reservoir geomechanics, including wellbore instability analysis, hydraulic fracturing, sand production, reservoir compaction, and subsidence. A major challenge with determining the rock's mechanical properties is that they cannot be directly measured at the borehole. Furthermore, the recovered carbonate core samples for performing measurements are limited and they provide discrete data for specific depths. The purpose of this study is to build 2D and 3D geomechanical models of the Khasib reservoir in the East Baghdad oil field/ Central area. TECHLOG.2015.3 software was used to build the 1D-MEM while Petrel E&P 2018.2 software was used to build the 3D distributions of rock mechanical properties. The Khasib formation has nine units (from K1 to K9). The current results support the evidence that the horizontal stresses are somewhat similar for all layers in the vertical case, but their distribution varies horizontally due to the changes in pore pressures. The pore pressure increases vertically, but its distribution within one layer is different due to the production from different wells. Elastic and strength characteristics of rock, including Young modulus, Poisson ratio, and unconfined compressive strength (UCS), have the same behavior, the highest value of the parameters appeared in the surface layer (K1). This layer is more stiff than other layers that have high porosities and high permeability. The internal friction angle for all formations ranges between 38o-40o, which gives a good harmonization with the limestone friction angle. The 3D distribution of the rock's mechanical properties revealed the carbonate heterogeneity because of its marine depositional environment and complex diagenetic processes. The findings of this study can be used for future geomechanical applications in the East Baghdad oil field including wellbore stability analysis, fault reactivation, and CO2 sequestration.
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