Acta Photonica Sinica, Volume. 52, Issue 6, 0606002(2023)
Research on Soil Heat Transfer with Distributed Optical Fiber Sensing for Pipeline Monitoring
[1] ZHANG Wei. Discussion on the leakage monitoring and quasi-real-time detection of long-distance oil pipeline[J]. China Petroleum and Chemical Standards and Quality, 41, 63-65(2021).
[2] LI Zheng. Discussion on the operation monitoring and leakage detection technology of directly buried heating pipeline[J]. District Heating, 125-127+131(2016).
[3] SAKAKI T, TSUGAWA R. Effects of heat source conditions on the early temperature rise in heated fiber-optic cable emplaced in granulated bentonite mixture[J]. Geomechanics for Energy and the Environment, 28(2021).
[4] MA Jian, ZHENG Yu, YU Haihu. A temperature and glucose solution concentration sensor based on etched optical fiber[J]. Acta Photonica Sinica, 46, 0406003(2017).
[5] XING Haojian, QIAO Qiuxiao, JIN Zhongxie. Monitoring technology of nuclear power primary circuit leakage point based on distributed temperature sensor[J]. Acta Photonica Sinica, 48, 0506004(2019).
[6] ERSON R C, MULLER R S, TOBIAS C W. Investigations of porous silicon for vapor sensing[J]. Sensors and Actuators A: Physical, 23, 835-839(1990).
[7] HAN Xiaopeng, LIU Chunyu, ZHAO Chunlong et al. Optimized double cone structure based on Mach-Zendel interference principle for strain and temperature synchronous sensing[J]. Acta Photonica Sinica, 49, 0806004(2020).
[8] LIU Hongfei. Research on integrity evaluation method of oil and gas pipeline based on distributed optical fiber sensing[D](2018).
[9] HEDAYATTDEZFOOLI M, LEONG W H. An experimental study of coupled heat and moisture transfer in soils at high temperature conditions for a medium coarse soil[J]. International Journal of Heat and Mass Transfer, 137, 18(2019).
[10] ZHOU Zhaoming, ZHANG Jia, HUANG Xuesong et al. Experimental study on distributed optical-fiber cable for high-pressure buried natural gas pipeline leakage monitoring[J]. Optical Fiber Technology, 53, 102028(2019).
[11] WANG Jiangwei, WANG Hongyi. Effects of natural gas pipeline leaks on surrounding soil temperatures[J]. Petroleum Engineering Construction, 46, 5-8(2020).
[12] LIN Gang, SHANG Yongbin, YANG Lilei et al. Study on the distribution pattern of soil temperature field along buried liquid CO2 pipeline[J]. Petroleum Engineering Construction, 44, 13-18,24(2018).
[13] LU Sen, REN Tusheng, ROBERT H. Estimating the components of apparent thermal conductivity of soils at various water contents and temperatures[J]. Geoderma, 376, 114530(2020).
[14] YU Haihu, MA Yue, GAO Wenjing et al. Preparation of dense tapered fiber grating arrays and experimental study of their quasi-distributed temperature sensing[J]. Acta Photonica Sinica, 50, 0706001(2021).
[15] LI Shiyi, LI Hao, JI Wenbin et al. Optical fiber sensing structure for slope monitoring based on brillouin optical time domain reflectometer[J]. Acta Photonica Sinica, 50, 0906005(2021).
[16] SUO Liujia. Study on distributed fiber optical strain demodulation method based on OFDR[D](2019).
[17] SCHENATO L, PALMIERI L, CAMPORESE M et al. Distributed optical fibre sensing for early detection of shallow landslides triggering[J]. Scientific Reports, 7, 28(2017).
[18] CHEN Lin, ZHANG Anan, CAO Buliang et al. An experimental study on monitoring the phreatic line of an embankment dam based on temperature detection by OFDR[J]. Optical Fiber Technology, 63, 102510(2021).
[19] WANG Rong, YANG Chenlei, NI Long et al. Experimental study on heat transfer of soil with different moisture contents and seepage for ground source heat pump[J]. Indoor and Built Environment, 29, 1238-1248(2020).
[20] LIANG Changshuo, BAI Qing, YAN Min et al. A comprehensive study of optical frequency domain reflectometry[J]. IEEE Access, 9, 41647-41668(2021).
[21] LALAM N, LU Ping, LU Fei et al. Distributed carbon dioxide sensor based on sol-gel silica coated fiber and Optical Frequency Domain Reflectometry (OFDR)[J]. Industrial Optical Devices and Systems, 11500, 115000M(2020).
[22] WANG Zichao, LIU Zhiang, YANG Huadong. Optical frequency domain reflection and structural monitoring performance of ultra-weak fiber Bragg grating technology[J]. Advances in Laser and optoelectronics, 59, 105-111(2022).
[23] SOUAZA G, TARPANI J R. Distributed fiber optics sensing applied to laminated composites: embedding process, strain field monitoring with OBR and fracture mechanisms[J]. Journal of Nondestructive Evaluation, 39, 1-15(2020).
[24] LEAL J, ARNALDO G, MARQUES C et al. Viscoelastic features based compensation technique for polymer optical fiber curvature sensors[J]. Optics and Laser Technology, 105, 35-40(2018).
[25] MCKENZIE J M. Uncertainties in measuring soil moisture content with actively heated fiber-optic distributed temperature sensing[J]. Sensors, 21, 3723(2021).
[26] ZHOU Zhaoming, HUANG Jia, HUANG Xuesong et al. Trend of soil temperature during pipeline leakage of high-pressure natural gas: Experimental and numerical study[J]. Measurement, 153, 107440(2020).
[27] ZHU Chuanyong, HE Zhiyang, DU Mu et al. Predicting the effective thermal conductivity of unfrozen soils with various water contents based on artificial neural network[J]. Nanotechnology, 33, 11(2021).
[28] LU Sen, REN Tusheng. Model for predicting soil thermal conductivity at various temperatures[J]. Transactions of the Chinese Society of Agricultural Engineering, 25, 13-18(2009).
[29] LIU Xiuxiu. Theoretical and experimental study on the diffusion of gas pipeline leakage in comprehensive pipeline corridors[D](2018).
[30] ZHOU Yuanyuan, JIANG Haifeng, LI Hui et al. Experimental study on thermal conductivity of aqueous sandy soil[J]. Journal of Engineering Thermophysics, 36, 265-268(2015).
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Qiqi MA, Zhongyao FENG, Ruohui WANG, Xueguang QIAO. Research on Soil Heat Transfer with Distributed Optical Fiber Sensing for Pipeline Monitoring[J]. Acta Photonica Sinica, 2023, 52(6): 0606002
Category: Fiber Optics and Optical Communications
Received: Dec. 12, 2022
Accepted: Feb. 20, 2023
Published Online: Jul. 27, 2023
The Author Email: Zhongyao FENG (fengzhongyao@nwu.edu.cn)