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Pillar design and coal burst experience in Utah Book Cliffs longwall operations

机译:犹他州悬崖悬崖长墙操作的柱子设计和煤爆发

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Longwall mining has existed in Utah for more than half a century.Much of this mining occurred at depths of cover that significantly exceed those encountered by most other US longwall operations.Deep cover causes high ground stress,which can combine with geology to create a coal burst hazard.Nearly every longwall mine operating within the Utah’s Book Cliffs coalfield has been affected by coal bursts.Pillar design has been a key component in the burst control strategies employed by mines in the Book Cliffs.Historically,most longwall mines employed double-use two-entry yield pillar gates.Double-use signifies that the gate system serves first as the headgate,and then later serves as the tailgate for the adjacent panel.After the 1996 burst fatality at the Aberdeen Mine,the inter-panel barrier design was introduced.In this layout,a wide barrier pillar protects each longwall panel from the previously mined panel,and each gate system is used just once.This paper documents the deep cover longwall mining conducted with each type of pillar design,together with the associated coal burst experience.Each of the six longwall mining complexes in the Book Cliffs having a coal burst history is described on a panel-by-panel basis.The analysis shows that where the mining depth exceeded 450 m,each design has been employed for about 38000 total m of longwall panel extraction.The double-use yield pillar design has been used primarily at depths less than 600 m,however,while the inter-panel barrier design has been used mainly at depths exceeding 600 m.Despite its greater depth of use,the inter-panel barrier gate design has been associated with about one-third as much face region burst activity as the double-use yield pillar design.
机译:Longwall采矿在犹他州存在了超过半个世纪的时间。此采矿的封面发生在覆盖深处,大多数其他美国长墙操作的深度显着超过了那些遇到的。Deep覆盖会导致高地应力,这可以与地质形成煤炭爆发危险。在犹他州的书悬崖上运行的每一个长壁矿都受到煤炭爆炸的影响。Pillar Design一直是书籍悬崖上矿山矿山爆炸控制策略的关键组成部分。世界上,大多数长墙矿业使用双重使用双进均屈服柱门。双用使用表示栅极系统首先用作元件,然后作为相邻面板的后挡板。在1996年的Aberdeen矿的爆发性致命,面板间屏障设计是介绍了这款布局,一个宽屏障柱子从先前开采的面板保护每个长墙板,每个栅极系统都是一次使用。本文纸张文档深盖Longwa使用每种类型的柱设计进行LL采矿,以及相关的煤突发经验。在面板的基础上描述了具有煤突发历史的书籍悬崖中的六个长壁采矿络合物。分析表明在哪里采矿深度超过450米,每种设计都采用了大约38000个长墙板提取的M。双用屈服柱设计主要以低于600米的深度使用,而是面板间屏障设计具有主要用于深度超过600米的深度使用,其使用寿命更深,面板间屏障栅极设计与大约三分之一的面部区域爆发活动相关联,因为双用屈服柱设计。

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