超深层碳酸盐岩储层质量评价方法及应用——以塔里木盆地富满油田X井区为例

Ke Xu , Hui Zhang , Penglin Zheng , Mingjin Cai , Ziwei Qian , Jianli Qiang , Lei Liu
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引用次数: 0

摘要

塔里木盆地奥陶系超深层碳酸盐岩储层具有丰富的油气资源。但受多期构造活动的影响,其分布表现出较强的非均质性。在以断控裂缝和溶洞为特征的地区,传统的基于物性参数的储层质量评价方法存在较大的不确定性。相比之下,结合地质力学参数的方法具有明显的优势。在这项研究中,地质力学参数(如当前地应力、弹性模量和天然裂缝密度)被定量表征。建立了碳酸盐岩缝洞系统地质模型,定义并计算了储层质量评价因子,实现了超深层碳酸盐岩储层质量的定量评价。结果表明:(1)断裂控制缝洞型超深碳酸盐岩储层地质力学参数空间分布具有较强的非均质性,受断裂构造影响显著;这种分布沿断层伸展方向呈分段分布。弹性模量和天然裂缝密度均表明断裂带附近的数值较高,而这些地区的现今地应力相对较低。(2)储层地质力学参数对断控缝洞型碳酸盐岩油气藏的构造地质特征响应强烈。所提出的评价方法对储层质量评价是有效的,为断控缝洞型超深层碳酸盐岩储层的高效勘探和有利开发提供了有价值的地质参考和支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method and application for ultra-deep carbonate reservoir quality evaluation: A case study of the Well X area in the Fuman Oilfield, Tarim Basin, China
The Ordovician ultra-deep carbonate reservoirs in the Tarim Basin are rich in oil and gas resources. However, due to the influence of multiple periods of tectonic activity, their distribution shows strong heterogeneity. In regions characterized by fault-controlled fractures and caves, traditional reservoir quality evaluation methods based on physical property parameters are subject to considerable uncertainty. In contrast, methods incorporating geomechanical parameters show notable advantages. In this study, geomechanical parameters—such as present-day in-situ stress, elastic modulus, and natural fracture density—were quantitatively characterized. A geological model of the carbonate fracture-cavity system was established, and a reservoir quality evaluation factor was defined and calculated to enable a quantitative evaluation of ultra-deep carbonate reservoir quality. The results indicate that: (1) In fault-controlled fracture-cavity ultra-deep carbonate reservoirs, the spatial distribution of geomechanical parameters has strong heterogeneity and significantly affected by fault structure. This distribution is segmented along the fault extension direction. Both the elastic modulus and natural fracture density indicate elevated values near fault zones, while present-day in-situ stresses are relatively lower in these areas. (2) Reservoir geomechanical parameters are strongly responsive to the structural and geological characteristics of fault-controlled fracture-cavity carbonate oil and gas reservoirs. The proposed evaluation methods are effective in evaluating reservoir quality and provide a valuable geological reference and support for the efficient exploration and profitable development of fault-controlled fracture-cavity ultra-deep carbonate reservoirs.
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