[2] Man YUAN, Hongyu GAO, Jingyi LU. Overview of leakage detection technology for oil and gas pipelines. Journal of Jilin University (Information Science Edition), 40, 159-173(2022).
[3] Jiakun LI, Weiqi JIN, Xia WANG. Review of gas leak infrared imaging detection technology. Infrared Technology, 36, 513-520(2014).
[4] Song LUO, Rui ZHUANG, Yongen ZHANG. New requirements for oil and gas leakage detection in subsea structures and application ideas of multi-technology integration. China Offshore Oil and Gas, 33, 201-207(2021).
[6] Linkun ZHAO, Zheng CAO, Jianqiang DENG. A review of leak detection methods based on pressure waves in gas pipelines. Measurement, 236, 115062(2024).
[7] Liang WANG, Ying CHENG, Cuiqin WU et al. Rapid on-site detection of underground petroleum pipeline leaks and risk assessment using portable gas chromatography-mass spectrometry and solid phase microextraction. Journal of Chromatography A, -463980(20231696).
[11] ZHONG Liang. Research on leakage detection method of tailings pipeline based on infrasound wave negative pressure wave[D]. Ganzhou: Jiangxi University of Science Technology, 2024. (in Chinese)
[13] X CHEN, X LI, B FU et al. FBG strain sensing technology-based gas pipeline leak monitoring and accurate location. Engineering Failure Analysis, 159, 108102(2024).
[15] JIN Yaliang. Research on gas moniting technology based on infrared hyperspectral imaging[D]. Harbin: Harbin Engineering University, 2018. (in Chinese)
[17] XIONG Shifu. Studies on key technology of infrared thermal imaging detection identification system f methane gas[D]. Changchun: Changchun University of Science Technology, 2018. (in Chinese)
[18] Huasong LIU, Lishuan WANG, Dandan LIU. Numerical analysis of cone angle effect of optical thin films characteristics. Acta Optica Sinica, 34, 317-321(2014).