Test Research of Seepage Monitoring Based on Distributed Optical Fiber

被引:0
|
作者
Zhao Xinming
Gao Yifei
Wang Qianwen
Gao Junqi
Zhou Yong
Wu Gang
Yao Jian
机构
[1] Department of Civil Engineering,Nanjing University of Aeronautics and Astronautics
[2] Taizhou Water Conservancy Bureau(Jiangsu)
关键词
theoretical model; seepage velocity; quantitative monitoring; compaction degree; soil type;
D O I
10.16356/j.1005-1120.2018.02.300
中图分类号
TV139.1 [渗流水力学];
学科分类号
0801 ; 080103 ; 080104 ; 081502 ;
摘要
In this paper,a theoretical model of temperature and velocity of a fiber is derived.A test model simulating seepage indoor is designed.The optical fiber heating temperatures under different compaction degree and seepage velocities are measured through applying AC voltage on the optical fiber.The analyzing results show that the optical fiber heating temperature and seepage velocity are related in quadratic function.The quantitative relations of optical fiber temperature and seepage velocity under different soil types and compaction degree are fitted.Analysis on how the compaction degree influences the relation of optical fiber temperature and seepage velocity shows that with the increase of compaction degree,optical fiber heating temperature will gradually decline.The influence of soil type on fiber heating temperature is very complex.In practice,according to the characteristics of the soil,determining quantitative relationship and implementing quantitative monitoring of the seepage velocity are needed.
引用
收藏
页码:300 / 308
页数:9
相关论文
共 50 条
  • [21] Distributed optical fiber hydrophone based on Φ-OTDR and its field test
    Lu, Bin
    Wu, Bingyan
    Gu, Jinfeng
    Yang, Junqi
    Gao, Kan
    Wang, Zhaoyong
    Ye, Lei
    Ye, Qing
    Qu, Ronghui
    Chen, Xiaobao
    Cai, Haiwen
    OPTICS EXPRESS, 2021, 29 (03): : 3147 - 3162
  • [22] Experimental verification research of pipeline deflection deformation monitoring method based on distributed optical fiber measured strain
    Cheng, Lin
    Mao, Haoran
    Pan, Pengsheng
    Zhang, Yuheng
    Yang, Jie
    Li, Yanlong
    MEASUREMENT, 2022, 199
  • [23] Research on distributed strain monitoring of a bridge based on a strained optical cable with weak fiber Bragg grating array
    Yue, Lina
    Wang, Qing
    Liu, Fang
    Nan, Qiuming
    He, Guanghui
    Li, Sheng
    OPTICS EXPRESS, 2024, 32 (07): : 11693 - 11714
  • [24] Research of Physiological Monitoring System Based on Optical Fiber Sensor
    Zhao Rongjian
    Tang Minfang
    Chen Xianxiang
    Du Lidong
    Zeng Hualin
    Zhao Zhan
    Fang Zhen
    JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY, 2018, 40 (09) : 2182 - 2189
  • [25] Experimental study on distributed optical fiber heated-based seepage behavior identification in hydraulic engineering
    Su, Huaizhi
    Cui, Shusheng
    Wen, Zhiping
    Xie, Wei
    HEAT AND MASS TRANSFER, 2019, 55 (02) : 421 - 432
  • [26] Experimental study on distributed optical fiber heated-based seepage behavior identification in hydraulic engineering
    Huaizhi Su
    Shusheng Cui
    Zhiping Wen
    Wei Xie
    Heat and Mass Transfer, 2019, 55 : 421 - 432
  • [27] Research on distributed optical-fiber monitoring of biaxial-bending structural deformations
    Chen, Zhuoyan
    Zheng, Dongjian
    Shen, Jingxin
    Qiu, Jianchun
    Liu, Yongtao
    MEASUREMENT, 2019, 140 : 462 - 471
  • [28] Experimental Research on Embankment Hidden Defects Monitoring Using Distributed Optical Fiber Sensor
    Zhou, Yang
    Zhu, Pingyu
    Li, Shuyu
    ADVANCES IN CIVIL STRUCTURES, PTS 1 AND 2, 2013, 351-352 : 1183 - 1188
  • [29] A Research on Low Modulus Distributed Fiber Optical Sensor for Pavement Material Strain Monitoring
    Meng, Lingjian
    Wang, Linbing
    Hou, Yue
    Yan, Guannan
    SENSORS, 2017, 17 (10)
  • [30] Application and research progress of distributed optical fiber acoustic sensing monitoring for hydraulic fracturing
    Sui W.
    Liu R.
    Cui K.
    1600, Chinese Academy of Sciences (51): : 371 - 387