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    重庆相国寺储气库微地震监测系统构建与探测能力评价

    Construction and detection capability evaluation of the microseismic monitoring system for the Chongqing Xiangguosi underground gas storage

    • 摘要: 以重庆相国寺油气藏型储气库为研究对象,针对复杂构造区储气库地质安全监测的需求,提出并实施了“3阶段建网”方案,包括先导试验、优化调整及系统完善3个阶段,成功构建了由12口浅井与2口深井组成的深浅互补微地震监测网络。基于Brune震源谱理论及噪声功率谱密度(power spectral density,PSD)定量分析,系统评估了监测网络的性能。结果表明,浅井系统具备震级(ML)≈−0.5级事件的探测能力,定位精度<50 m;深井系统在构造核部区域实现了更高的灵敏度(ML≈−2.5)及定位精度(<15 m)。试运行阶段的监测数据表明,微地震活动与注采作业无显著相关性,断层活动及盖层响应未出现异常,初步验证了当前监测周期内储气库圈闭的密封性与稳定性。基于“深浅协同架构、定量化能力评估及统计实证分析”构建的技术体系,为同类储气库微地震监测系统的设计优化与工程应用提供了具有普适性的参考方案。

       

      Abstract: Focusing on the Chongqing Xiangguosi reservoir-type underground gas storage (UGS), this study addresses its geological safety monitoring in the complex structural environment. A three-stage network construction approach—pilot testing, optimization, and system refinement—is proposed and implemented. As a result, an integrated deep–shallow microseismic monitoring network consisting of 12 shallow wells and 2 deep wells is established. The performance of the monitoring network is systematically evaluated based on the Brune source spectrum theory and quantitative analysis of noise power spectral density (PSD). The shallow-well system is capable of detecting events of ML ≈ −0.5, with a location accuracy of less than 50 m, whereas the deep-well system achieves higher sensitivity (ML ≈ −2.5) and better location accuracy (<15 m) in the structural core area. Monitoring data from the trial operation indicate no significant correlation between microseismic activity and gas injection and production operations, nor any anomalies in fault activity or caprock response. These results preliminarily verify the sealing integrity and stability of the gas-storage trap during the current monitoring period. The technical framework—characterized by a deep–shallow collaborative architecture, quantitative capability assessment, and statistical empirical analysis—provides a generally applicable reference scheme for the design optimization and engineering application of microseismic monitoring systems for similar underground gas storage facilities.

       

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