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Application Study of Microseismic Monitoring Technology in Horizontal Well Fracturing of Complex Structural Reservoir

机译:微震监测技术在复杂结构储层水平井压裂中的应用研究

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In order to solve the problem of artificial fracture network imaging,especially in complex tectonic area,the fracture attribute is analysed based on attribute characteristics of microseismic events,the impact of faults and natural fracture zones on reservoir reconstruction is monitored in real time.At the same time,the combination of seismic and microseismic interpretation improves the recognition accuracy of complex structural reservoirs,and provides real-time guidance for the optimization and adjustment of fracturing schemes for reservoir reconstruction.Multi wave joint location technology is used to locate the microseismic monitoring events in borehole.The orientation of artificial fracture network is monitored to identify the correlation between the direction of artificial fracture network and the direction of regional stress.Aiming at the complex well area with complex geological conditions,the large-scale reservoir reconstruction is effectively evaluated,and the distribution of fracture network is carefully evaluated,especially the complex reservoirs with natural fracture zone and fault zone,which effectively solves the problem of artificial fracture network imaging and control of tight oil reservoir,and improves the development effect of tight oil.The microseismic monitoring technology in borehole is suitable for large-scale and large-capacity reservoir fracturing reconstruction,and can make fine evaluation of the distribution of fracture network,especially for the complex reservoirs with relatively developed natural fracture zones and fault zones,which can better evaluate the characteristics of complex fracture network.Combining the relationship between seismic attributes and microseismic event attributes,microseismic monitoring technology can guide well location deployment and optimize well pattern.At the same time,it is suggested that the section with the greatest contribution to productivity be analyzed by subsection testing.
机译:为了解决人工骨折网络成像的问题,特别是在复杂的构造区域中,基于微震事件的属性特征分析裂缝属性,实时监测故障和自然骨折区域对水库重建的影响。同时,地震和微震解释的组合提高了复杂结构储层的识别准确性,为水库重建的压裂方案提供了实时指导..利用波接头定位技术来定位微震监测事件在钻孔中。监测人工骨折网络的取向,以识别人工骨折网络方向与区域应力方向之间的相关性。在复杂的地质条件下,大规模的水库重建有效评价,以及f的分布仔细评估判断网络,尤其是具有自然骨折区和断层区域的复杂储存器,有效解决了人工骨折网络成像和控制紧的油藏的问题,提高了紧密油的发展效果。钻孔中的微震监测技术适用于大规模和大容量的储层压裂重建,可以对裂缝网络的分布进行微量评价,特别是对于具有相对开发的自然骨折区域和断层区的复杂储存器,可以更好地评估复杂骨折的特性“网络”阐述了地震属性和微震事件属性之间的关系,微震监测技术可以指导井位置部署并优化井模式。同时,建议通过第四节测试分析具有最大贡献的贡献最大贡献。

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