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Advances in fibre optic based geotechnical monitoring systems for underground excavations 被引量:4
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作者 Hongkui Gong Mehmet S.Kizil +3 位作者 Zhongwei Chen Moe Amanzadeh Ben Yang saiied m.aminossadati 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2019年第2期229-238,共10页
Geotechnical stability is a major concern for the long-term safety and integrity of underground infrastructures such as tunnels, railway stations, mine shafts and hydraulic power chambers. An effective geotechnical mo... Geotechnical stability is a major concern for the long-term safety and integrity of underground infrastructures such as tunnels, railway stations, mine shafts and hydraulic power chambers. An effective geotechnical monitoring system is able to provide adequate warning to underground personnel prior to any unexpected major geotechnical failure. This paper reviews the conventional geotechnical monitoring sensors and the emerging Fibre Optic Sensing(FOS) techniques, pointing out their unique features and major differences. Recent advances in various FOS based monitoring systems, including Brillouin time domain distributed optical sensors and fibre Bragg grating(FBG) sensors, are investigated through a critical review of the laboratory studies and field applications used for underground geotechnical monitoring. Particular emphasis is given to fibre packaging, temperature compensation, installation methods and instrumentation performance in the underground environment. A detailed discussion of the advantages and limitations of each FOS monitoring system is also presented in this paper. 展开更多
关键词 Underground GEOTECHNICAL monitoring Conventional GEOTECHNICAL instruments Distributed OPTICAL FIBRE sensors FIBRE BRAGG GRATING BRILLOUIN OPTICAL analysis
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Analysis on the multi-phase flow characterization in cross-measure borehole during coal hydraulic slotting 被引量:2
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作者 Chunshan Zheng Baiquan Lin +3 位作者 Mehmet S.Kizil saiied m.aminossadati He Li Zhongwei Chen 《International Journal of Mining Science and Technology》 EI CSCD 2018年第4期692-696,共5页
Hydraulic slotting in a gas drainage borehole is an effective method of enhancing gas drainage performance. However, it frequently occurs that a large amount of slotting products(mainly the coal slurry and gas) intens... Hydraulic slotting in a gas drainage borehole is an effective method of enhancing gas drainage performance. However, it frequently occurs that a large amount of slotting products(mainly the coal slurry and gas) intensely spurt out of the borehole during the slotting, which adversely affects the slotting efficiency. Despite extensive previous investigations on the mechanism and prevention-device design of the spurt during ordinary borehole drilling, a very few studies has focused on the spurt in the slotting process. The slotting spurt is mainly caused by two reasons: the coal and gas outburst in the borehole and the borehole deslagging blockage. This paper focuses on the second reason, and investigates the hydraulic deslagging flow patterns in the annular space between the drill pipe and borehole wall.Results show that there are six deslagging flow patterns when the drill pipe is still: pure slurry flow, pure gas flow, bubble flow, intermittent flow, layering flow and annular flow. When the drill pipe rotates, each of those six flow patterns changes due to the Taylor vortex effect. Outcomes of this study could help to better understand the slotting-spurt mechanism and provide guidance on the anti-spurt strategies through eliminating the borehole deslagging blockage. 展开更多
关键词 流动模式 地上 煤气 水力 多相 职业人员 煤泥浆 喷射
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