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首页> 外文期刊>Mining Engineering >Critical pillar concept in yield-pillar-based longwall gate-road design
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Critical pillar concept in yield-pillar-based longwall gate-road design

机译:基于产量支柱的长壁闸道设计中的关键支柱概念

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Yield-pillar-based gate-road designs often fail to provide mine operators with adequate ground control. This is because of the unknowing misemployment of "critically" sized pillars. A "critical" pillar is one that is too large to either yield nonviolently or to yield before the roof and floor sustain permanent damage and is too small to support full abutment loads. To demonstrate the critical pillar concept, afield study of a tapering gate road was conducted by the US Bureau of Mines at the Sunnyside Coal Mines, Sunnyside, UL Ex-treme pillar stresses and associated coal bumps characterize the response to first panel mining of a 16.8-m (55.1-ft) wide critical design. Significantly lower pillar stresses, early yielding of the pillar and adjacent panel rib, and an absence of coal bumps suggest that a narrower 12.2-m (40-ft) wide design more closely approaches proper yield pillar dimensions. A probe hole in several 10.6-m (34.8-ft) wide pillars revealed low stress levels and substantial pillar and panel rib yielding prior to abutment onset, indicating a properly functioning yield pillar design.
机译:基于屈服支柱的闸道设计通常无法为矿山经营者提供足够的地面控制。这是因为“临界”大小的支柱在不知不觉中被误用了。 “关键”支柱太大,无法在屋顶和地板遭受永久性破坏之前屈服,或者太小而无法支撑全部基台载荷。为了演示关键的支柱概念,美国矿务局在Sunnyside煤矿对Sunnyside矿山进行了一条锥形门道的野外研究,UL极端支柱应力和相关的煤块表征了对16.8的第一次面板开采的反应-m(55.1英尺)宽的关键设计。显着较低的支柱应力,支柱和相邻面板肋的早期屈服以及不存在煤块,这表明较窄的12.2米(40英尺)宽的设计更接近适当的屈服支柱尺寸。多个10.6米(34.8英尺)宽的柱子上的探孔显示出较低的应力水平,并且在抵接开始之前,柱子和面板肋的屈服强度很高,表明屈服柱设计正常运行。

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