Experimental study of leakage characteristics and microscopic mechanisms in the sealing plug areas of underground compressed air energy storage caverns
Zizheng Dang , Bing Zhang , Hanpeng Wang , Qianzi Du , Jianguo Fan , Jiancai Sui , Zhongzhong Liu
{"title":"Experimental study of leakage characteristics and microscopic mechanisms in the sealing plug areas of underground compressed air energy storage caverns","authors":"Zizheng Dang , Bing Zhang , Hanpeng Wang , Qianzi Du , Jianguo Fan , Jiancai Sui , Zhongzhong Liu","doi":"10.1016/j.ijmst.2026.03.003","DOIUrl":null,"url":null,"abstract":"<div><div>To investigate the leakage mechanism of the sealing plug area in compressed air energy storage (CAES) caverns under various conditions, the leakage evolution characteristics of the simulated samples were systematically studied via a self-developed triaxial seepage testing system. Combined with CT scanning, the development and propagation mechanisms of internal defects were elucidated. The results indicate that the leakage index is significantly positively correlated with the peak air pressure and injection rate but negatively correlated with the confining pressure. Leakage behavior during the charging phase is governed primarily by the peak pressure and injection rate, whereas that during the storage phase is predominantly controlled by the pressure magnitude. A distinct time lag, dominated by peak pressure, was identified between the leakage index and pressure characteristic points. The average peak leakage rate exhibited a “decreasing-then-increasing” trend, transitioning from an initial value of 9.3289 to 7.3267 cm<sup>3</sup>/s and then rebounding to 8.8093 cm<sup>3</sup>/s. The cyclic process enhanced the connectivity of the pore-fracture network; fracture coalescence reduced the number of large pores (> 0.9 mm) but increased the total pore count. This research provides valuable insights for evaluating the sealing performance and rock‒concrete interface seepage of artificial CAES caverns.</div></div>","PeriodicalId":48625,"journal":{"name":"International Journal of Mining Science and Technology","volume":"36 5","pages":"Pages 997-1020"},"PeriodicalIF":15.9000,"publicationDate":"2026-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"International Journal of Mining Science and Technology","FirstCategoryId":"5","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S2095268626000376","RegionNum":1,"RegionCategory":"工程技术","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2026/3/17 0:00:00","PubModel":"Epub","JCR":"Q1","JCRName":"MINING & MINERAL PROCESSING","Score":null,"Total":0}
引用次数: 0
Abstract
To investigate the leakage mechanism of the sealing plug area in compressed air energy storage (CAES) caverns under various conditions, the leakage evolution characteristics of the simulated samples were systematically studied via a self-developed triaxial seepage testing system. Combined with CT scanning, the development and propagation mechanisms of internal defects were elucidated. The results indicate that the leakage index is significantly positively correlated with the peak air pressure and injection rate but negatively correlated with the confining pressure. Leakage behavior during the charging phase is governed primarily by the peak pressure and injection rate, whereas that during the storage phase is predominantly controlled by the pressure magnitude. A distinct time lag, dominated by peak pressure, was identified between the leakage index and pressure characteristic points. The average peak leakage rate exhibited a “decreasing-then-increasing” trend, transitioning from an initial value of 9.3289 to 7.3267 cm3/s and then rebounding to 8.8093 cm3/s. The cyclic process enhanced the connectivity of the pore-fracture network; fracture coalescence reduced the number of large pores (> 0.9 mm) but increased the total pore count. This research provides valuable insights for evaluating the sealing performance and rock‒concrete interface seepage of artificial CAES caverns.
期刊介绍:
The International Journal of Mining Science and Technology, founded in 1990 as the Journal of China University of Mining and Technology, is a monthly English-language journal. It publishes original research papers and high-quality reviews that explore the latest advancements in theories, methodologies, and applications within the realm of mining sciences and technologies. The journal serves as an international exchange forum for readers and authors worldwide involved in mining sciences and technologies. All papers undergo a peer-review process and meticulous editing by specialists and authorities, with the entire submission-to-publication process conducted electronically.