村庄下膏体充填开采技术应用研究
本文关键词:岱庄煤矿承压水上膏体充填开采技术研究,由笔耕文化传播整理发布。
村庄下膏体充填开采技术应用研究
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摘要
朱村矿进入后期生产后,可采储量少,村庄建筑物下呆滞储量多,为进一步挖掘储量,延长矿井服务年限,采用膏体充填开采技术。理论分析了朱村矿充填开采后隔水层厚度和底板最大破坏深度,根据朱村矿的地质条件,选择了合适的充填材料及充填工艺,并在54采区进行工业性试验。实践表明:工作面采用膏体充填后,巷道顶底板变形量小,工作面直接底破坏深度小于5 m,能够有效防止底板L2灰岩强含水层突水,随着充填技术的成熟,地表沉陷量逐渐减小,地表建筑物的破坏控制在Ⅰ级范围内,充填效果良好。
During the advanced production stage of Zhucun Mine,the recoverable reserves lessens while the sluggish reserves under village buildings becomes more. Thus,the paste filling mining technology is adopted to achieve more reserves as well as extend the service life of the mine. The paper theoretically analyzed the aquifuge thickness and maximum floor failure depth of Zhucun Mine after filling mining. It selected the appropriate filling materials and filling process according to the geological conditions of Zhucun Mine,and carried out industrial test in No. 54 mining area. Practice shows that after using paste filling,the deformation of roadway roof and floor on working face is in a small amount,while the direct bottom damaging depth of working face is less than 5 m. Through this,the water inrush of roadway floor L2 limestone strong aquifer can be effectively prevented. As the filling technology develops,surface subsidence volume decreases gradually,the damage to the surface buildings is controlled within Grade I range. The above test results prove good filling effect.
引文
[1]许家林,轩大洋,朱卫兵.充填采煤技术现状与展望[J].采矿技术,2011(3):24-30.Xu Jialin,Xuan Dayang,Zhu Weibing.Filling mining technology present situation and prospect[J].Mining Technology,2011(3):24-30.
[2]郭振华.村庄下膏体充填采煤控制地表沉陷的研究[D].徐州:中国矿业大学,2008.
[3]赵才智.煤矿新型膏体充填材料性能及其应用研究[D].徐州:中国矿业大学,2008.
[4]常庆粮.膏体充填控制覆岩变形与地表沉陷的理论研究与实践[D].徐州:中国矿业大学,2009.
[5]李幸丽.膏体充填综采地表移动与覆岩破坏规律[J].煤矿安全,2014,45(8):60-63.Li Xingli.Law of Surface movement and overburden failure for paste filling fully-mechanized mining[J].Safety in Coal Mines,2014,45(8):60-63.
[6]吴宇浩.煤矿膏体充填开采上覆岩层变形移动规律及地表沉陷控制研究[D].邯郸:河北工程大学,2014.
[7]蒋昊良.岱庄煤矿承压水上膏体充填开采技术研究[D].徐州:中国矿业大学,2015.
[8]刘振伟.煤矿充填开采覆岩移动规律及地表沉降控制研究[D].邯郸:河北工程大学,2013.
[9]刘进晓,景继东,刘灿伟,等.矸石膏体充填采场覆岩空间结构演变规律[J].辽宁工程技术大学学报:自然科学版,2015,34(8):930-934Liu Jinxiao,Jing Jidong,Liu Canwei,et al.Overlying strata spatial structure and its movement law in gangue backfill paste stope[J].Journal of Liaoning Technical University:Natural Science,2015,34(8):930-934.
[10]常庆粮.膏体充填控制覆岩变形与地表沉陷的理论研究与实践[D].徐州:中国矿业大学,2009.
[11]牛雷.矸石膏体充填开采充填体物理力学性质研究[D].邯郸:河北工程大学,2014.
[12]郑保才,周华强,何荣军.煤矸石膏体充填材料的试验研究[J].采矿与安全工程学报,2006,23(4):460-463.Zheng Baocai,Zhou Huaqiang,He Rongjun.Experimental research on coal gangue paste filling material[J].Journal of Mining&Safety Engineering,2006,23(4):460-463.
[13]郭振华,周华强,武龙飞,等.膏体充填工作面顶板及地表沉陷过程数值模拟[J].采矿与安全工程学报,2008,25(2):172-175.Guo Zhenhua,Zhou Huaqiang,Wu Longfei,et al.Numerical simulation for roof and surface subsidence process caused by paste filling[J].Journal of Mining&Safety Engineering,2008,25(2):172-175.
[14]郭晓彦.充填膏体性能影响因素试验研究[D].太原:太原理工大学,2013.
[15]王志波.膏体充填开采数值模拟分析与应用研究[D].邯郸:河北工程大学,2014.
本文关键词:岱庄煤矿承压水上膏体充填开采技术研究,,由笔耕文化传播整理发布。
本文编号:220922
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