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A Case Study of Effective Support Working Resistance and Roof Support Technology in Thick Seam Fully-Mechanized Face Mining with Hard Roof Conditions

机译:坚硬顶板厚煤层综采工作面有效支护工作阻力与顶板支护技术案例研究

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This paper presents the engineering geological properties and roof control tecnology for a thick coal seam fully-mechanized face mining with hard roof conditions (THC) at the Jinhuagong Coal Mine (JCM), northwest China. The effective support working resistance and appropriate roof control technology are two critical factors for safe and productive mining in the THC. The load-estimate-method (LOEM) is the effective method to determine the support working resistance for normal working conditions (the mining height less than 3.5 m). In order to prevent support crushing accidents from happening and to ensure the safety and high-efficiency in the THC, the LOEM was modified based on the structure of the overlying strata in the THC. The strata which can form the voussoir beam structure in normal working conditions and will break in the form of cantilever beam in the THC is defined as the key strata in the immediate roof. Therefore, the hanging length of the key strata in the immediate roof was considered in the LOEM. Furthermore, a method for calculating the hanging length of the key strata in the immediate roof and its influencing factors were proposed using cantilever beam theory analysis of the structure of the overlying strata. Moreover, in order to fully fill the goaf area with caving roof to reduce the energy accumulation of main roof movement, it was decided to apply destress blasting technique (DEBT) at the JCM to control the large hanging length of the hard roof, so as to reduce the impact of the hard main roof movement on the working face. The key technique parameters of the roof caving borehole were also proposed. The obtained results demonstrated that the theoretical analysis is reasonable, and the chosen support type and the DEBT could meet the roof control requirements. The THC has achieved safety and high-efficiency mining.
机译:本文介绍了西北金华宫煤矿(JCM)硬顶条件(THC)下的厚煤层综采工作面的工程地质特性和顶板控制技术。有效的支撑工作阻力和适当的顶板控制技术是THC中安全和高效开采的两个关键因素。负荷估算方法(LOEM)是确定正常工作条件(采矿高度小于3.5 m)时支撑工作阻力的有效方法。为了防止发生支撑压碎事故,并确保THC的安全性和高效性,根据THC上覆岩层的结构对LOEM进行了修改。在正常工作条件下可形成大体积梁结构并在THC中以悬臂梁形式断裂的地层被定义为直接顶板中的关键层。因此,在LOEM中考虑了关键层在直接屋顶中的悬挂长度。此外,利用悬臂梁理论对上覆地层结构进行分析,提出了一种计算近屋面关键层悬挂长度的方法及其影响因素。此外,为了使采空区顶完全充满采空区,以减少主顶运动的能量积聚,决定在JCM上采用去应力爆破技术(DEBT)来控制硬顶的大悬挂长度,从而减少坚硬的主顶板运动对工作面的影响。提出了顶板冒顶钻孔的关键技术参数。所得结果表明,理论分析是合理的,所选择的支护类型和DEBT可以满足屋面控制要求。 THC已实现安全高效开采。

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