Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area

The mining strata in the western mining area of China are mainly composed of Jurassic and Cretaceous strata. The strata are characterized by low strength, poor cementation and easy disintegration, which belong to weakly cemented rocks. The surrounding rock of the weakly cemented stratum project is q...

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Main Authors: JI Hongguang, SUN Lihui, SONG Zhaoyang, ZHANG Yuezheng, WANG Jiuhong, MENG Zhiqiang
Format: Article
Language:zho
Published: Editorial Department of Coal Science and Technology 2023-01-01
Series:Meitan kexue jishu
Subjects:
Online Access:http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2022-1784
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author JI Hongguang
SUN Lihui
SONG Zhaoyang
ZHANG Yuezheng
WANG Jiuhong
MENG Zhiqiang
author_facet JI Hongguang
SUN Lihui
SONG Zhaoyang
ZHANG Yuezheng
WANG Jiuhong
MENG Zhiqiang
author_sort JI Hongguang
collection DOAJ
description The mining strata in the western mining area of China are mainly composed of Jurassic and Cretaceous strata. The strata are characterized by low strength, poor cementation and easy disintegration, which belong to weakly cemented rocks. The surrounding rock of the weakly cemented stratum project is quite different from the stratum rock of the central and eastern mining areas. It is difficult to effectively guarantee the safety of the project by using traditional control technologies such as roof control of the working face and surrounding rock control of the roadway. Disasters such as large deformation and instability of the roadway, crushing of the working face, water inrush, sand inrush, rock burst and so on. Through a large number of investigations and laboratory experiments, the mechanical indexes such as tensile and compressive strength of weakly cemented rocks are much smaller than those of similar rocks in the central and eastern mining areas. The evaluation index system of the variation degree of weakly cemented rocks under the coupling of multiple factors is established, and the variation degree of weakly cemented rocks in typical mining areas is preliminarily obtained. Taking the weakly cemented rock in Hongqinghe Coal Mine as an example, it is found that the weakly cemented rock has the phenomenon of ‘phase transition’ under the action of force, water and other loads. The influence of cementation degree on the phase transition phenomenon is analyzed, and the ‘phase transition’ state characteristics and sensitivity parameters of weakly cemented coarse-grained sandstone are given. The dynamic development law of overburden caving zone and fracture zone and the large deformation law of roadway surrounding rock are studied and analyzed, which lead to the support crushing, water inrush and sand inrush disasters in the working face. The dynamic change expression of caving zone in different mining stages of large mining height working face in weakly cemented strata is deduced, and the support-surrounding rock interaction model is established. The working resistance of support during weighting and non-weighting of working face is given. Aiming at the loose and weak characteristics of weakly cemented strata, the double shell reinforcement technology of roadway surrounding rock is proposed, which can provide guarantee for safe mining of working face and control of roadway surrounding rock.
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spelling doaj.art-1f650d5b9adb4795a02ebe7e0a1b7e252023-05-30T08:53:39ZzhoEditorial Department of Coal Science and TechnologyMeitan kexue jishu0253-23362023-01-0151111712710.13199/j.cnki.cst.2022-17842022-1784Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining areaJI HongguangSUN LihuiSONG ZhaoyangZHANG YuezhengWANG Jiuhong0MENG Zhiqiang1Yankuang Energy(Ordos) Co., Ltd., Ordos 017010, ChinaCollege of Mining and Geomatics Engineering, Hebei University of Engineering, Handan 056038, ChinaThe mining strata in the western mining area of China are mainly composed of Jurassic and Cretaceous strata. The strata are characterized by low strength, poor cementation and easy disintegration, which belong to weakly cemented rocks. The surrounding rock of the weakly cemented stratum project is quite different from the stratum rock of the central and eastern mining areas. It is difficult to effectively guarantee the safety of the project by using traditional control technologies such as roof control of the working face and surrounding rock control of the roadway. Disasters such as large deformation and instability of the roadway, crushing of the working face, water inrush, sand inrush, rock burst and so on. Through a large number of investigations and laboratory experiments, the mechanical indexes such as tensile and compressive strength of weakly cemented rocks are much smaller than those of similar rocks in the central and eastern mining areas. The evaluation index system of the variation degree of weakly cemented rocks under the coupling of multiple factors is established, and the variation degree of weakly cemented rocks in typical mining areas is preliminarily obtained. Taking the weakly cemented rock in Hongqinghe Coal Mine as an example, it is found that the weakly cemented rock has the phenomenon of ‘phase transition’ under the action of force, water and other loads. The influence of cementation degree on the phase transition phenomenon is analyzed, and the ‘phase transition’ state characteristics and sensitivity parameters of weakly cemented coarse-grained sandstone are given. The dynamic development law of overburden caving zone and fracture zone and the large deformation law of roadway surrounding rock are studied and analyzed, which lead to the support crushing, water inrush and sand inrush disasters in the working face. The dynamic change expression of caving zone in different mining stages of large mining height working face in weakly cemented strata is deduced, and the support-surrounding rock interaction model is established. The working resistance of support during weighting and non-weighting of working face is given. Aiming at the loose and weak characteristics of weakly cemented strata, the double shell reinforcement technology of roadway surrounding rock is proposed, which can provide guarantee for safe mining of working face and control of roadway surrounding rock.http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2022-1784weakly cemented rockcontrol of surrounding rockstability of surrounding rockrock mechanicsdouble shell reinforcement
spellingShingle JI Hongguang
SUN Lihui
SONG Zhaoyang
ZHANG Yuezheng
WANG Jiuhong
MENG Zhiqiang
Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
Meitan kexue jishu
weakly cemented rock
control of surrounding rock
stability of surrounding rock
rock mechanics
double shell reinforcement
title Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
title_full Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
title_fullStr Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
title_full_unstemmed Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
title_short Research progress on stability control of surrounding rock in weakly cemented strata engineering in western China mining area
title_sort research progress on stability control of surrounding rock in weakly cemented strata engineering in western china mining area
topic weakly cemented rock
control of surrounding rock
stability of surrounding rock
rock mechanics
double shell reinforcement
url http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2022-1784
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AT songzhaoyang researchprogressonstabilitycontrolofsurroundingrockinweaklycementedstrataengineeringinwesternchinaminingarea
AT zhangyuezheng researchprogressonstabilitycontrolofsurroundingrockinweaklycementedstrataengineeringinwesternchinaminingarea
AT wangjiuhong researchprogressonstabilitycontrolofsurroundingrockinweaklycementedstrataengineeringinwesternchinaminingarea
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