考虑天然裂缝影响的遵义地区油页岩储层裂缝扩展行为模式及敏感因素数值模拟研究

IF 1.2 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Geofluids Pub Date : 2025-08-28 DOI:10.1155/gfl/2762142
Feng Ao, Li Qingchao, Li Qiang, Wu Jingjuan, Wang Fuling, Yan Chuanliang
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引用次数: 0

摘要

页岩油气资源被认为是当今全球最重要的战略资源之一。但油页岩储层基质渗透率极低,需要通过水力压裂技术改造才能实现经济有效开发。在此背景下,以鄂尔多斯盆地旬义地区油页岩为研究对象,利用ABAQUS平台对裂缝发育型油页岩储层水力压裂裂缝扩展特征及主要影响因素进行模拟研究。研究结果表明:天然裂缝与水力裂缝夹角越大,水力裂缝越容易穿过天然裂缝;基质弹性模量越大,裂缝穿透地层的能力越强,裂缝形态也趋于狭长。裂缝扩展方向倾向于地应力差方向,且随着地应力差的增大,裂缝扩展方向与贯通方向的趋同程度越大。压裂液粘度越高,裂缝越宽越短,但对裂缝扩展方向的影响最小。增加压裂液排量可以增加裂缝宽度和长度,增强水力压裂改造效果。研究结果对油页岩储层压裂优化设计具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical Simulation Investigation of Fracture Propagation Behavior Patterns and Sensitivity Factors of Oil Shale Reservoirs in the Xunyi Region Considering the Influence of Natural Fracture

Numerical Simulation Investigation of Fracture Propagation Behavior Patterns and Sensitivity Factors of Oil Shale Reservoirs in the Xunyi Region Considering the Influence of Natural Fracture

Shale oil and gas resources are considered one of the most important strategic resources globally today. However, the matrix permeability of oil shale reservoirs is extremely low, it requires modification through hydraulic fracturing technology to realize their economic and effective development. Against this background, we focused on the oil shale in the Xunyi area of the Ordos Basin, employing the ABAQUS platform to simulate and investigate the characteristics of hydraulic fracturing fracture propagation in fracture-developed oil shale reservoirs and the principal influencing factors. The results of the study show that the larger the angle between the natural fracture and the hydraulic fracture, the easier it is for the hydraulic fracture to pass through the natural fracture; the larger the elastic modulus of the matrix, the stronger the ability of the fracture to penetrate through the stratum, and the fracture morphology tends to be more narrow and long. The direction of fracture propagation tends to be in the direction of the geostress difference, and with the increase of the geostress difference, the degree of convergence of the direction of fracture propagation and penetration is greater. The higher the viscosity of the fracturing fluid, the wider and shorter the fracture tends to be, but it has minimal impact on the direction of fracture propagation. Increasing the fracturing fluid displacement can increase the fracture width and length and enhance the effect of the hydraulic fracturing modification. The research results are significant for the optimized fracturing design in oil shale reservoirs.

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来源期刊
Geofluids
Geofluids 地学-地球化学与地球物理
CiteScore
2.80
自引率
17.60%
发文量
835
期刊介绍: Geofluids is a peer-reviewed, Open Access journal that provides a forum for original research and reviews relating to the role of fluids in mineralogical, chemical, and structural evolution of the Earth’s crust. Its explicit aim is to disseminate ideas across the range of sub-disciplines in which Geofluids research is carried out. To this end, authors are encouraged to stress the transdisciplinary relevance and international ramifications of their research. Authors are also encouraged to make their work as accessible as possible to readers from other sub-disciplines. Geofluids emphasizes chemical, microbial, and physical aspects of subsurface fluids throughout the Earth’s crust. Geofluids spans studies of groundwater, terrestrial or submarine geothermal fluids, basinal brines, petroleum, metamorphic waters or magmatic fluids.
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