煤炭工程 ›› 2023, Vol. 55 ›› Issue (12): 102-107.doi: 10.11799/ce202312018

• 生产技术 • 上一篇    下一篇

坚硬顶板磨砂射流轴向切顶初次放顶应用研究

李红平,杜涛涛,孙秉成,杨 伟,常 博,赵志鹏,贾兵兵,刘 江   

  1. 1. 国能新疆宽沟矿业有限责任公司,新疆 昌吉 830000

    2. 中煤科工开采研究院有限公司,北京 100013

    3. 天地科技股份有限公司 开采设计事业部,北京 100013

    4. 国家能源集团新疆能源有限责任公司,新疆 乌鲁木齐 830000

  • 收稿日期:2023-02-27 修回日期:2023-07-05 出版日期:2023-12-20 发布日期:2024-03-11
  • 通讯作者: 孙如达 E-mail:756987810@qq.com

Study on forced roof caving to hard roof by axial fracture cutting and fracturing of abrasive jet in expanding face

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  • Received:2023-02-27 Revised:2023-07-05 Online:2023-12-20 Published:2024-03-11
  • Contact: da RuSUN E-mail:756987810@qq.com

摘要:

为了实现坚硬顶板的初次放顶,宽沟煤矿通过开展现场工业性试验确定磨砂射流割缝、压裂关键技术参数,设计并开展了扩面磨砂射流轴向切顶初次放顶工程,利用水压仪、钻孔窥视和出水现场观测等方法进行实施过程监控,利用微震监测、支架压力监测、煤体应力监测和顶板垮冒观测等方法进行回采过程的效果检验。研究结果表明,通过控制割缝压裂的作用压力、作用时间、用砂量等主要技术参数,完成了割缝半径200mm、割缝长度300mm的裂缝,压裂半径5m和10m的工业性试验;扩面初放实施结果验证了整个扩面顶板缝网导通,表明了该技术工程实施过程的有效性、可靠性;扩面后回采过程效果检验分析表明,采用磨砂射流轴向切顶进行顶板初次放顶同期垮冒情况基本达到了传统爆破初放切顶的效果,顶板对工作面煤壁的作用得到明显改善,工程实施过程使煤体发生2.9MPa的应力降,扩面回采期间,煤体应力集中程度得到显著改善,煤体应力未再形成应力集中,起到了良好的卸压效果。

关键词: 坚硬顶板, 冲击地压, 磨砂射流轴向割缝, 割缝半径, 压裂半径

Abstract:

In order to complete the initial roofing of the hard roof with expanded surface by adopting the new technology of abrasive jet axis roofing, the key technical parameters of axial roofing and fracturing of abrasive jet were determined through field industrial tests in Kuangou Coal Mine, and the initial roofing scheme and project of axial roofing of abrasive jet with expanded surface were designed and carried out. The implementation process is monitored by means of hydrometer, drilling peeping and on-site observation of water discharge, and the effect of mining process is tested by means of microseismic monitoring, support pressure monitoring, coal body stress monitoring and roof caving observation. The research results show that the industrial test of prefabrication of 300mm deep fractures and 300-500mm axial length fractures with fracture radius of 5m and 10m is completed by using the axial cutting top technology of matte jet. The key technical parameters of fracture cutting and fracturing process, such as pressure, time and sand amount, are determined. The results of two processes, the implementation of the initial roof caving project and the recovery process in the expanding area of the working face of I010206 were analyzed. The results of four sections of slit in the hole, fracturing curve, fracture morphology of the hole and fracturing water showed that the whole roof seam network of the expanding surface was open. The analysis results showed the effectiveness and reliability of the implementation process of the technology project. The test and analysis of the effect of stoping process after surface expansion show that the caving situation of the first roof caving with the axial cutting of the frosted jet basically achieves the effect of the traditional blasting at the same time, the effect of the roof on the coal wall of the working face is significantly improved, the stress drop of 2.9MPa occurs in the coal body during the engineering implementation process, and the stress concentration degree of the coal body is significantly improved during the surface expansion stoping. The stress of coal body does not form stress concentration, which plays a good pressure relief effect. Through engineering practice, a new treatment mode of hard roof with wide ditch is formed.

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