Mechanics of rib spalling of high coal walls under fully-mechanized mining

被引:6
作者
Yuan YongabTu ShihaoabWu QiabMa XiaotaoabTu HongshengabSun Luluab a State Key Laboratory of Coal Resources and Safety Mining China University of Mining TechnologyXuzhou China b School of MinesChina University of Mining TechnologyXuzhou China [221008 ,221116 ]
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中图分类号
TD823.9 [];
学科分类号
081901 ;
摘要
<正>In order to solve the problem of rib spalling of high coal walls in fully-mechanized(HCWFM)mines,we used the principle of damage mechanics to analyze coal wall rib spalling.The results show that coal wall rib spalling is,to a certain degree,a macro-performance of the development of micro-cracks.We built a mechanical model to simulate the damage to the front of coal walls,carried out theoretical calculations of the damage parameters,analyzed the effect of mining height,original cracks,seam strength,horizontal stress,vertical displacement of the coal walls and other parameters on coal wall rib spalling, which conform well with the results of our field measurements and numerical simulation.The key to control coal wall rib spalling is to control the development of cracks in coal walls.Accelerating the speed of advancing the working face,improving the setting load of support and the horizontal force of the guard board,strengthening coal walls and other technical measures can effectively reduce the degree of damage to the coal walls and control coal wall rib spalling at HCWFM faces.
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页码:129 / 133
页数:5
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[1]   大采高综采技术的关键问题与对策探讨 [J].
袁永 ;
屠世浩 ;
王瑛 ;
马小涛 ;
吴其 .
煤炭科学技术, 2010, 38 (01) :4-8
[2]   软煤综放面煤壁片帮机理及防治研究 [J].
方新秋 ;
何杰 ;
李海潮 .
中国矿业大学学报, 2009, 38 (05) :640-644
[3]  
Technical parameters of drawing and coal-gangue field movements of a fully mechanized large mining height top coal caving working face[J] LIU Chang-you; HUANG Bing-xiang; WU Feng-feng School of Mines; State Key Laboratory for Coal Resources and Safe Mining; China University of Mining & Technology; Xuzhou; Jiangsu 221116; China Mining Science and Technology 2009, 05
[4]   Strength reduction method for slope based on a ubiquitous-joint criterion and its application [J].
JIANG Qing-qing School of Resources and Safety Engineering .
International Journal of Mining Science and Technology, 2009, 19 (04) :452-456
[5]   大采高综采煤壁片帮冒顶机理与控制技术 [J].
宁宇 .
煤炭学报, 2009, 34 (01) :50-52
[6]   极软厚煤层大采高台阶式综采端面煤岩稳定性控制研究 [J].
刘长友 ;
黄炳香 ;
常兴民 ;
王君 ;
魏民涛 .
中国矿业大学学报 , 2008, (06) :734-739
[7]   大采高综采工作面煤壁片帮机理及控制技术 [J].
华心祝 ;
谢广祥 .
煤炭科学技术, 2008, (09) :1-3+24
[8]   大采高综采面煤壁片帮特征分析与应用 [J].
尹希文 ;
闫少宏 ;
安宇 .
采矿与安全工程学报, 2008, (02) :222-225
[9]   极软厚煤层煤壁片帮与防治机理 [J].
王家臣 .
煤炭学报, 2007, (08) :785-788
[10]   煤体损伤与采动瓦斯抽放 [J].
张勇 ;
姜铁明 ;
艾俊友 ;
吴健 .
煤炭科学技术, 2004, (06) :61-64