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Stability analysis of underground oil storage caverns by an integrated numerical and microseismic monitoring approach

机译:数值和微震监测相结合的地下储油洞稳定性分析

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Underground storage in unlined caverns is of great significance for storing energy resources. Construction of underground storage caverns is an extremely complex process, involving extensive multi-bench excavation and strong unloading. Excavation-induced damage of surrounding rock masses may lead to instability of underground storage caverns. The aim of this paper is to put forward a method by integrating numerical simulation and microseismic monitoring for evaluation of cavern stability. A novel numerical method called Continuous-Discontinuous Element Method (CDEM) is applied to simulate micro-cracks under excavation-induced unloading conditions. Meanwhile, a microseismic (MS) monitoring system is employed to monitor real-time MS events during construction of storage caverns. Numerical results are validated using the monitoring data from the MS monitoring system. The integrated method is proved to be successful in capturing micro-cracks in underground storage caverns. Local instability, potential unstable zones and micro-crack evolution are analyzed, and cracking mechanisms are also discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:无衬砌洞穴中的地下存储对于存储能源具有重要意义。地下储藏室的建设是一个极其复杂的过程,涉及广泛的多台阶开挖和强力卸载。开挖引起的围岩破坏可能导致地下储藏洞室失稳。本文的目的是提出一种将数值模拟与微震监测相结合的方法来评价洞室的稳定性。一种新颖的数值方法被称为连续不连续单元法(CDEM),以模拟在开挖引起的卸载条件下的微裂纹。同时,微地震(MS)监视系统用于在存储洞穴的建造过程中实时监视MS事件。使用来自MS监视系统的监视数据验证了数值结果。事实证明,该综合方法成功地捕获了地下存储洞穴中的微裂纹。分析了局部失稳,潜在的不稳定区域和微裂纹演化,并讨论了裂纹形成机理。 (C)2016 Elsevier Ltd.保留所有权利。

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