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Failure Monitoring and Leakage Detection for Underground Storage of Compressed Air Energy in Lined Rock Caverns

机译:衬砌岩洞地下压缩空气能量地下存储的故障监测和泄漏检测

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Underground compressed air energy storage (CAES) in lined rock caverns (LRCs) provides a promising solution for storing energy on a large scale. One of the essential issues facing underground CAES implementation is the risk of air leakage from the storage caverns. Compressed air may leak through an initial defect in the inner containment liner, such as imperfect welds and construction joints, or through structurally damaged points of the liner during CAES operation for repeated compression and decompression cycles. Detection of the air leakage and identification of the leakage location around the underground storage cavern are required. In this study, we analyzed the displacement (or strain) monitoring method to detect the mechanical failure of liners that provides major pathways of air leakage using a previously developed numerical technique simulating the coupled thermodynamic and geomechanical behavior of underground CAES in LRCs. We analyzed the use of pressure monitoring to detect air leakage and characterize the leakage location. From the simulation results, we demonstrated that tangential strain monitoring at the inner face of sealing liners could enable one to detect failure. We also demonstrated that the use of the cross-correlation method between pressure history data measured at various sensors could identify the air leak location. These results may help in the overall design of a monitoring and alarm system for the successful implementation and operation of CAES in LRCs.
机译:衬砌岩洞(LRC)中的地下压缩空气储能(CAES)为大规模储能提供了有希望的解决方案。地下CAES实施面临的基本问题之一是从存储洞穴泄漏空气的风险。压缩空气可能会通过内部安全壳衬里的初始缺陷(例如不完善的焊缝和施工缝)泄漏,或者在CAES操作过程中通过衬里的结构损坏点泄漏,以进行重复的压缩和减压循环。需要对空气泄漏进行检测并确定地下存储洞穴周围的泄漏位置。在这项研究中,我们分析了位移(或应变)监测方法,以检测衬砌的机械故障,该衬砌使用了以前开发的数值技术,模拟了LRC中地下CAES的热力学和地质力学行为耦合,从而提供了漏气的主要途径。我们分析了使用压力监测来检测空气泄漏并确定泄漏位置的特征。从仿真结果可以看出,在密封衬套内表面进行切向应变监测可以使人们检测到故障。我们还证明了在各种传感器测得的压力历史数据之间使用互相关方法可以确定漏气的位置。这些结果可能有助于在LRC中成功实施和运行CAES的监视和警报系统的总体设计。

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