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Erschienen in: Geotechnical and Geological Engineering 3/2022

23.07.2021 | Original Paper

Study on Progressive Instability Characteristics of Coal-Rock Composite Structure with the Different Height Ratios

verfasst von: Tan Li, Guangbo Chen, Yanhui Li, Qinghai Li

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 3/2022

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Abstract

To ensure the safety of coal mining, lots of coal pillars were reserved in the coal mine. The stability of coal pillar and roof composite structures determines the safety of stope. Under the action of cyclic loading and unloading such as mining face, chamber blasting, and roadway excavation, the coal pillar, and roof composite structure will gradually instability, which will affect the safety production of the coal mine. Therefore, this paper takes the dynamic disaster of coal pillar and roof composite structure as the research background, carries on the cyclic loading and unloading test of the coal-rock composite structure with different coal-rock height ratios, and studies the influence of coal-rock height ratio on the progressive instability characteristics, mechanical properties and damage variables of the coal-rock composite structure. The crack initiation stress, crack propagation time and failure pattern of coal-rock composite structure are analyzed. The improved load-unload response ratio considering the damage variable is established, and the stability of the coal-rock composite structure under cyclic loading and unloading is quantitatively analyzed. It is concluded that the larger the coal-rock height ratio is, the greater the load-unload response ratio of the composite structure is, and the more unstable the composite structure is. This conclusion is consistent with the crack initiation stress and fracture propagation time, and can quantitatively reflect the progressive instability process of coal-rock composite structure, and provide a basis for revealing the dynamic disaster of coal pillar and roof composite structure.

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Literatur
Zurück zum Zitat Dou LM, Lu CP, Mu ZL, Zhang XT, Li ZH (2006) Rock burst tendency of coal-rock combinations sample. J Mining Safety Eng 23(1):43–46 Dou LM, Lu CP, Mu ZL, Zhang XT, Li ZH (2006) Rock burst tendency of coal-rock combinations sample. J Mining Safety Eng 23(1):43–46
Zurück zum Zitat Waclawik P, Kukutsch R, Konicek P, Kajzar V (2018) Monitoring of coal pillars yielding during room and pillar extraction at the great depth. Geomech Geodynamics Rock Masses 1(2):711–716 Waclawik P, Kukutsch R, Konicek P, Kajzar V (2018) Monitoring of coal pillars yielding during room and pillar extraction at the great depth. Geomech Geodynamics Rock Masses 1(2):711–716
Zurück zum Zitat Wang J, Qiu PQ, Ning JG, Zhuang L, Yang S (2020a) A numerical study of the mining-induced energy redistribution in a coal seam adjacent to an extracted coal panel during longwall face mining. A Case Study. Energy Sci Eng 8(3):817–835. https://doi.org/10.1002/ese3.553CrossRef Wang J, Qiu PQ, Ning JG, Zhuang L, Yang S (2020a) A numerical study of the mining-induced energy redistribution in a coal seam adjacent to an extracted coal panel during longwall face mining. A Case Study. Energy Sci Eng 8(3):817–835. https://​doi.​org/​10.​1002/​ese3.​553CrossRef
Zurück zum Zitat Zuo JP, Xie HP, Wu AM, Liu JF (2011) Investigation on Failure Mechanisms and Mechanical Behaviors of Deep Coal-Rock Single Body and Combined Body. Chin J Rock Mechan Eng 30(1):84–92 Zuo JP, Xie HP, Wu AM, Liu JF (2011) Investigation on Failure Mechanisms and Mechanical Behaviors of Deep Coal-Rock Single Body and Combined Body. Chin J Rock Mechan Eng 30(1):84–92
Metadaten
Titel
Study on Progressive Instability Characteristics of Coal-Rock Composite Structure with the Different Height Ratios
verfasst von
Tan Li
Guangbo Chen
Yanhui Li
Qinghai Li
Publikationsdatum
23.07.2021
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 3/2022
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-021-01947-0

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