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Occurrence Mechanism of Roof-Fall Accidents in Large-Section Coal Seam Roadways and Related Support Design for Bayangaole Coal Mine, China

机译:中国大型煤层巷道屋顶事故的发生机制及八大扶余煤矿相关支持设计

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摘要

This study focused on large-scale roof-fall accidents occurred in large-section coal seam roadways of Bayangaole Coal Mine, Inner Mongolia, China, and investigated the occurrence mechanism of roof-fall and the related supporting control method in detail. Firstly, the fracture characteristics of the surrounding rocks on the roadway roof were measured using a stratum detector. The results showed that the roadway roof underwent the most severe failure with a maximum deformation of 3.53 m; the bedding separation and fracture zones were distributed at irregular intervals. Accordingly, the entire stratum was separated into several thin sublayers, significantly reducing the stability of roof. In addition, the roof medium grained sandstone of roadway is water-rich strata, and water aggravates the damage of roof. Next, the mechanism of the occurrence of roof-fall accidents in the roadway was elucidated in detail. The following three reasons are mainly attributed to the occurrence of roof-fall accidents: (i) effects of mining-induced stress and tectonic stress, (ii) existence of equipment cavern on the side of roadway, and (iii) unreasonable support parameters. On that basis, a new supporting design is proposed, including a more reasonable arrangement of anchor cables and bolts, bolts with full-length anchorage which are applicable in cracked and water-rich roadway, high-strength anchor cables, and crisscrossed steel bands. Moreover, high pretightening force was applied. Finally, a field test was performed, and the mining-induced roof displacement and stress on anchor cable (bolt) were monitored in the test section. The maximum roof displacements at the two monitoring sections were 143 mm and 204 mm, respectively, far smaller than the roadway’s allowable deformation. Moreover, the stress on roof anchor cables (bolts) was normal, and no anchorage-dragging and tensile failure phenomena were observed. The monitoring data indicated that the new supporting design was remarkable on the control of large-section coal seam roadway roof deformation.
机译:本研究重点是大型屋顶事故发生在大型煤层煤矿,内蒙古,中国的大型煤层道路,并详细研究了屋顶落下的发生机制和相关的支持控制方法。首先,使用层检测器测量巷道屋顶周围岩石的断裂特性。结果表明,道路屋顶经历了最严重的故障,最大变形为3.53米;床上用品分离和骨折区域以不规则的间隔分布。因此,将整个层分成几种薄子层,显着降低了屋顶的稳定性。此外,屋顶介质堆积的巷道砂岩是水丰富的地层,水加剧了屋顶的损坏。接下来,详细阐述了巷道中屋顶事故发生的机制。以下三个原因主要是归因于冒顶事故的发生:(ⅰ)采矿引起的应力和构造应力,(ⅱ)存在于道路的侧设备洞穴的,和(iii)不合理支持参数的影响。在此基础上,提出了一种新的支撑设计,包括更合理的锚固电缆和螺栓布置,具有全长锚固的螺栓,该螺栓适用于耐水性和富含水的道路,高强度锚固件和钢筋。此外,施加了高气体的力量。最后,在试验部分监测了野外测试,并在试验部分中监测采矿诱导的车顶位移和锚固缆线(螺栓)上的应力。两个监测部分的最大屋顶位移分别为143毫米和204毫米,远小于道路的允许变形。此外,屋顶锚固电缆(螺栓)上的应力是正常的,并且没有观察到锚固拖曳和拉伸衰竭现象。监控数据表明,新的配套设计对大截面煤层巷道屋顶变形的控制是显着的。

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