首页> 外文OA文献 >Numerical study of multi-period palaeotectonic stress fields in Lower Cambrian shale reservoirs and the prediction of fractures distribution: a case study of the Niutitang formation in Feng'gang No. 3 block, South China
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Numerical study of multi-period palaeotectonic stress fields in Lower Cambrian shale reservoirs and the prediction of fractures distribution: a case study of the Niutitang formation in Feng'gang No. 3 block, South China

机译:下寒武统页岩储层多期古构造应力场数值研究及裂缝分布预测-以华南凤岗3号区块牛塘塘组为例

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摘要

Fractures not only control the distribution of oil and gas reservoirs, but also are key points in the research of oil and gas reservoir development programmes. The tectonic fractures in the Lower Cambrian shale reservoirs in the Feng'gang No. 3 block are effective reservoir spaces for hydrocarbon accumulation, and these fractures are controlled by palaeotectonic stress fields. Therefore, quantitatively predicting the development and distribution of tectonic fractures in the Lower Cambrian shale reservoir is important for the exploration and exploitation of shale gas in the Feng'gang No. 3 block. In the present study, a reasonable geological, mechanical and mathematical model of the study area was established based on the faults systems interpreted from seismic data, fracture characteristics from drilling data, uniaxial and triaxial compression tests and experiments on the acoustic emissions (AE) of rocks. Then, a three-dimensional (3-D) finite element method is applied to simulate the palaeotectonic stress field with the superposition of the Yanshan and Himalayan movements and used to predict the fracture distribution. The simulation results indicate that the maximum principal stress value within the study area ranged from 269.97 MPa to 281.18 MPa, the minimum principal stress ranged from 58.29 MPa to 79.64 MPa, and the shear stress value ranged from 91.05 MPa to 106.21 MPa. The palaeotectonic stress field is controlled by the fault zone locations. The fracture development zones are mainly controlled by the tectonic stress fields and are located around the faults, at the end of the fault zones, at the inflection point and at the intersection of the fault zones.
机译:裂缝不仅控制着油气藏的分布,而且是油气藏开发计划研究的重点。凤岗3号区块下寒武统页岩储层的构造裂缝是油气成藏的有效储集空间,这些裂缝受古构造应力场控制。因此,定量预测下寒武统页岩储层的构造裂缝的发育和分布,对丰冈3号区块页岩气的勘探开发具有重要意义。在本研究中,基于地震数据解释的断层系统,钻探数据的断裂特征,单轴和三轴压缩测试以及声波发射(AE)实验,建立了研究区域的合理地质,力学和数学模型。岩石。然后,采用三维(3-D)有限元方法模拟燕山和喜马拉雅运动叠加的古构造应力场,并预测裂缝的分布。模拟结果表明,研究区域内的最大主应力值在269.97 MPa至281.18 MPa之间,最小主应力在58.29 MPa至79.64 MPa之间,剪切应力值在91.05 MPa至106.21 MPa之间。古构造应力场由断层带位置控制。裂缝发育带主要受构造应力场控制,位于断层周围,断层末端,拐点和断层相交处。

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