291 / 2023-10-11 10:20:37
Application of Optical Fiber Sensing Technology in Similar Model Test of Shallow-buried and Thick Coal Seam Mining
shallow and thick seam; physical similarity model; optical fiber sensing; in-situ rock pressure monitoring
摘要录用
Wengang Du / Xi'an CCTEG Transparent Geology Technology Co. LTD
There are a large number of shallow and thick coal seam resources buried in western ore district of China, which occupies an important position in coal production in China. Compared with the general fully mechanized mining face, there are obvious differences between the movement law and mine pressure of overlying strata caused by shallow and thick coal seam mining. In order to study the deformation law and internal stress evolution characteristics of overlying strata after shallow and thick coal seam mining, a physical similarity model with geometric size of 1500×1300×600 mm is designed and constructed. Distributed optical fiber and fiber grating sensors are embedded in the model to monitor the deformation of overlying strata in the process of coal mining. The research shows that there are obvious “large and small periodic weighting phenomena” in shallow and thick seam mining process. Small periodic weighting phenomena occurs when the basic roof below the key stratum fractured, and large periodic weighting occurs when the key stratum is broken; The FBG measurement strains achieving its peak need to satisfy two conditions: the working face passes beneath it, and the cantilever beam structure above the working face collapses, and the grating is located at the end of the dangling clamped-clamped beam; After coal excavation, the stress of surrounding rock redistributes, the optical fiber is located in front of the working face and in the area affected by the leading abutment pressure. With the working face getting closer, the abutment pressure increases continuously, which leads to the step-by-step growth of the measured strain curve; The strain data have changed significantly when the working face underwent the large periodic weighting process, and the overall range and intensity of variation is much larger than the non-weighting and small periodic weighting mining process. The research results are of great significance for popularizing the application of optical fiber sensing technology in mining engineering field.

 
重要日期
  • 会议日期

    10月26日

    2023

    10月29日

    2023

  • 10月15日 2023

    摘要截稿日期

  • 10月15日 2023

    初稿截稿日期

  • 11月13日 2023

    注册截止日期

主办单位
国际矿山测量协会
中国煤炭学会
中国测绘学会
承办单位
中国矿业大学
中国煤炭科工集团有限公司
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