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Deformation mechanism and roof pre-splitting control technology of gob-side entry in thick hard main roof full-mechanized longwall caving panel
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作者 WANG Hao-sen HE Man-chao +6 位作者 WANG Jiong YANG Gang MAZi-min MING Can WANG Rui FENG Zeng-chao ZHANG Wen-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期3206-3224,共19页
This paper explores the deformation mechanism and control technology of roof pre-splitting for gob-side entries in hard roof full-mechanized longwall caving panel(LTCC).The investigation utilizes a comprehensive appro... This paper explores the deformation mechanism and control technology of roof pre-splitting for gob-side entries in hard roof full-mechanized longwall caving panel(LTCC).The investigation utilizes a comprehensive approach that integrates field monitoring,theoretical analysis,and numerical simulation.Theoretical analysis has illuminated the influence of the length of the lateral cantilever beam of the main roof(LCBM)above the roadway on the stability of the gob-side entry behind the panel.Numerical simulations have further revealed that the longer LCBM results in heightened vertical stress within the coal pillar,developed cracks around the roadway,and more pronounced damage to the roadway.Moreover,numerical simulations also demonstrate the potential of roof pre-splitting technology in optimizing the fracture position of the hard roof.This technology significantly reduces the length of the LCBM,thereby alleviating stress concentration in the coal pillars and integrated coal rib while minimizing the destruction of the gob-side entry.Therefore,this manuscript first proposes the use of roof pre-splitting technology to control roadway deformation,and automatically retain the entry within a hard roof LTCC panel.Field implementation has demonstrated that the proposed automatically retained entry by roof pre-splitting technology effectively reduces gob-side entry deformation and achieves automatically retained entry. 展开更多
关键词 deformation mechanism hard roof gob-side entry cantilever beam roof pre-spliting
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强矿压矿井定向长孔分段压裂技术研究及应用 被引量:8
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作者 罗文 杨俊彩 高振宇 《煤炭科学技术》 CAS 北大核心 2018年第11期43-49,共7页
为解决神东矿区布尔台矿4-2煤层顶板坚硬,完整性较好,回采过程中顶板悬顶面积大,强矿压显现明显等问题,以千米定向钻进为基础,结合双封单卡裸眼分段水力压裂成套装备,研发了定向长钻孔分段压裂技术装备。通过布尔台42107综采工作面的工... 为解决神东矿区布尔台矿4-2煤层顶板坚硬,完整性较好,回采过程中顶板悬顶面积大,强矿压显现明显等问题,以千米定向钻进为基础,结合双封单卡裸眼分段水力压裂成套装备,研发了定向长钻孔分段压裂技术装备。通过布尔台42107综采工作面的工业性试验,最高一次性实现了468m裸眼钻孔的9段压裂施工,压裂最高压力达到25.9 MPa,最低压力9.3 MPa,实现了3 MPa以上明显压降70余次。研究结果表明:通过定向钻孔、高压注水、分段压裂,可在指定层位、区段形成多点段三维立体裂隙网络,悬顶面积降为原来的1/7,周期来压步距由最高45 m降至25 m,来压强度明显降低,实现了顶板的有效弱化,为矿区安全高效生产提供了有效的技术和装备保障。 展开更多
关键词 坚硬顶板 顶板悬顶 分段水力压裂 强矿压显现 双封单卡拖动管柱
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