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深井大煤柱沿空掘进工作面侧煤爆机理与防治

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沿空掘进工作面煤岩稳定是确保深部煤矿安全高效开采的前提.为探究深井大煤柱沿空条件下掘进工作面侧煤爆发生机理及其防治方法,以五阳煤矿深部采区大煤柱沿空条件下05掘进工作面为研究背景,采用理论分析、数值模拟和工程实践等方法,探讨深井大煤柱沿空掘进工作面侧覆岩空间结构特征及其煤体煤爆预测力学模型,提出水力造穴防控工作面侧煤体煤爆的技术方法.研究表明:采场覆岩空间结构是形成工作面支承应力的重要载荷来源,依据不同采场尺度和岩层运动状态划分不同类型,得到考虑覆岩空间结构载荷转移的深井沿空工作面侧煤体支承应力估算模型;工作面侧煤体支承应力及其自身承载强度是影响煤爆发生的2个关键因素,通过分析二者之间的分布特点和大小关系可以定量预测煤爆可能性大小和相对位置;水力造穴能够促使工作面煤体形成"支承宽度增加、应力峰值降低"的效果,实施水力造穴卸压技术后,工作面侧煤体煤爆现象大幅度减少.煤爆预测模型与水力造穴卸压方法已应用于五阳煤矿深部采区多个工作面的采掘工程,成果可为相似条件矿井灾害防治提供一定参考.
Coal burst mechanism and prevention of large coal pillar gob-side heading face in deep mine
The stability of coal and rock in gob-side heading face is the premise to ensure the safe and efficient mining of deep coal mine.In order to explore the mechanism and prevention methods of side coal burst in heading face under the condition of large coal pillar along goaf in deep mine,theoretical analysis,numerical simulation and engineering practice were used to explore the spatial structure charac-teristics of overlying strata and the prediction mechanical model of coal body coal burst in heading face along goaf with large coal pillar in deep mine,and the technical method of preventing and controlling coal burst was put forward in heading face along goaf with large coal pillar in deep mine was put forward based upon 05 heading face under the condition of large coal pillar along goaf in deep mining area of Wuyang Coal Mine.The research shows that the spatial structure of overlying strata in the stope is an im-portant load source for the formation of the abutment stress of the working face.According to different stope scales and rock movement states,different types were divided,and the estimation model of the abutment stress of the side coal body of the gob-side working face in the deep mine was established con-sidering the load transfer of the spatial structure of the overlying strata.The abutment stress and its bea-ring strength of the coal body on the side of the working face are two key factors affecting the coal burst.By analyzing the distribution characteristics and size relationship between them,the possibility and rela-tive position of coal burst can be quantitatively predicted.Hydraulic cavitation can promote the effect of"bearing width increase and stress peak decrease"in the coal body of the working face.Implementing hydraulic cavitation and pressure relief technology was significantly mitigated the coal burst instances in the coal body on the side of the working face.The coal burst prediction model and the hydraulic cavitati-on pressure relief method have been applied to the mining engineering of multiple working faces in the deep mining area of Wuyang Coal Mine,providing some reference for the prevention and control of mine disasters under similar conditions.

mining engineeringdeep well large coal pillarheading facecoal burst mechanismhy-draulic cavitation

张明、杨世纪、涂敏、刘同达、年宾、杜岩、王德振、常春锋、吴晓军、李杰

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安徽理工大学深部煤矿采动响应与灾害防控国家重点实验室,安徽 淮南 232001

中勘资源勘探科技股份有限公司,安徽 淮北 235000

北京科技大学城市地下空间工程北京市重点实验室,北京 100083

山西潞安环保能源开发股份有限公司五阳煤矿,山西 长治 046200

国投哈密能源开发有限责任公司,新疆 哈密 839000

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采矿工程 深井大煤柱 掘进工作面 煤爆机理 水力造穴

国家自然科学基金项目深部煤矿采动响应与灾害防控国家重点实验室开放基金项目

52104114SKLMRDPC22KF13

2024

采矿与安全工程学报
中国矿业大学 中国煤炭工业劳动保护科学技术学会

采矿与安全工程学报

CSTPCD北大核心
影响因子:2.054
ISSN:1673-3363
年,卷(期):2024.41(4)
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