3D Geomechanical Modelling for Complex Geological Setting: A Case Study from XGS Field

Yu Luo, Long-xin Li, Yu Chao Zhao, Rong Wang, A. Younessi, Yongsheng Zhou, Chris Burns
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引用次数: 1

Abstract

A 3D geomechanical model is built for the XGS field, located in Sichuan province, onshore China. The field is in a faulted anticline consisting of three main reservoir layers. The main reservoirs are in the crest of an anticline structure bounded between major revers faults. The model captures all the structural complexities and the spatial variation of the geomechanical properties and parameters for the entire XGS field. The structural model is built using the interpreted horizons and faults form the surface seismic tied to the markers interpreted from the well data. The 3D grid is constructed for the entire field, extended to the ground level, to use as a framework for the 3D geomechanical model. The well-centric geomechanical models prepared for the 14 offset wells are used in combination to the surface seismic attributes to model the lithology and petrophysical properties for the entire grid. These data are then used to calculate and propagate the geomechanical properties and parameters. The 3D geomechanical model is designed to captures the spatial variation of pore pressure, in-situ stresses, the rock mechanical properties and parameters. The grid has higher resolution in the main target for the underground gas storage (UGS) operation and its immediate overburden caprock layer. This is done to capture and investigate the vertical and lateral variations in the vicinity of the UGS reservoir in more detail. The rock mechanical properties and parameters are dominantly governed by the lithology. This is while the pore pressure and the in-situ stresses are mainly governed by the geological structure. That has been said, a stress contrast is observed between the shale and carbonate layers. The model suggests that the field is in a strike-slip stress regime. The reservoir rock which consists of fractured dolomite is competent and stiff while the shale caprock is relatively weaker. A comprehensive approach is developed to capture the complexities of the structure and properties of the XGS field. A robust workflow is implemented to propagate the geomechanical properties and parameters to maintain their consistency for the entire studied area.
复杂地质环境的三维地质力学建模:以XGS油田为例
为位于中国四川省的XGS油田建立了三维地质力学模型。该油田位于一个由三个主要储层组成的断裂背斜中。主要储层位于主要逆断层之间的背斜构造的顶部。该模型捕捉了整个XGS油田的所有结构复杂性以及地质力学性质和参数的空间变化。构造模型是利用解释的层位和断层形成的地面地震与从井数据中解释的标记相结合而建立的。三维网格是为整个油田构建的,延伸到地面,用作三维地质力学模型的框架。为14口邻井准备的以井为中心的地质力学模型与地面地震属性相结合,用于模拟整个网格的岩性和岩石物理性质。然后使用这些数据来计算和传播地质力学特性和参数。三维地质力学模型旨在捕捉孔隙压力、地应力、岩石力学特性和参数的空间变化。网格在地下储气库运行的主要目标及其直接覆盖盖层上具有较高的分辨率。这样做是为了更详细地捕获和研究UGS储层附近的垂直和横向变化。岩石的力学性质和参数主要受岩性的控制。而孔隙压力和地应力主要受地质构造的控制。如上所述,在页岩层和碳酸盐层之间观察到应力对比。该模型表明该油田处于走滑应力区。裂缝性白云岩构成的储层坚硬有力,页岩盖层相对较弱。开发了一种全面的方法来捕捉XGS场的结构和性质的复杂性。实现了一个强大的工作流来传播地质力学特性和参数,以保持整个研究区域的一致性。
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