首页> 外文会议>International conference on ground control in mining >A Causation Mechanism for Coal Bursts During Roadway Development Based on the Major Horizontal Stress in Coal, Very Specific Structural Geology Causing a Localised Loss of Effective Coal Confinement and Newtons' Second Law
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A Causation Mechanism for Coal Bursts During Roadway Development Based on the Major Horizontal Stress in Coal, Very Specific Structural Geology Causing a Localised Loss of Effective Coal Confinement and Newtons' Second Law

机译:基于煤炭大水平应力的巷道发展过程中煤爆发的因果机制,非常具体的结构地质,造成局部有效煤监禁局部损失及纽托尔森第二法

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In 2017, one of the international authorities on coal bursts. Dr. Chris Mark, published a paper entitled "Coal Bursts that Occur During Development: A Rock Mechanics Enigma." in which several relevant technical issues were identified, the most pertinent being: i. whilst development coal bursts are commonly associated with geological faults, understanding which specific faults result in burst-prone development mining conditions and why. remains undefined. ii. conventional wisdom in relation to strong roof and floor geology of the coal seam might be limiting, based on certain burst examples in Colorado. iii. development coal bursts can occur without the local ground stresses being substantially elevated from their in situ levels. This paper outlines what is considered to be a credible, first-principles, mechanistic explanation for these three current development coal burst conundrums by reference to early published coal testing work examining the significance of a lack of "constraint" to coal stability and an understanding of how very specific structural geology and other geological features can logically cause this to occur in situ, albeit on a statistically very rare basis. This basic model is examined by reference to published information pertaining to the development coal-burst that occurred at the Austar Coal Mine in New South Wales. Australia, in 2014 and from the Sunnyside District in Utah. USA. The '"cause and effect" model for development coal bursts presented also offers a meaningful explanation for the statistical improbability for what are nonetheless potentially highly-destructive events, being able to explain the statistical rarity being just as important to the credibility of the model as explaining the local conditions associated with burst events. The model could also form the basis for a robust, risk-based approach utilising a "hierarchy of controls" to the operational management of the development coal burst threat. Specifically, these include the use of pre-mining predictions for likely burst-prone and non-burst-prone areas, the use of the mine layout to avoid or at least minimise mining within burst-prone areas if appropriate, and finally the development of an operational Trigger Action Response Plan that reduces the likelihood of inadvertent roadway development into a burst-prone area without suitable safety controls already being in place.
机译:2017年,其中一名煤炭爆发的国际当局。 Chris Mark博士,发表了一份题为“在开发期间发生的煤突发的纸张:摇滚力学谜”。其中确定了几个相关的技术问题,最相关的是:我。虽然开发煤突发通常与地质断层有关,但了解哪些特定的故障导致突发的开发挖掘条件以及为什么。仍然是未定义的。 II。传统智慧与煤层的强大屋顶和地层地质的关系可能是限制性的,基于科罗拉多州的某些爆发例。 III。在没有局部地面应力的情况下,可以发生发展煤突发,从而从其原位水平升高。本文概述了这三个当前开发煤爆康复赛的可信,第一原则,机械解释,通过提及早期出版的煤炭检测工作,检查缺乏“限制”与煤炭稳定性和理解的意义。具体的结构地质和其他地质特征如何逻辑地导致这种原地发生,尽管在统计上非常罕见。通过参考新南威尔士州奥斯塔尔煤矿发生的开发煤爆发的公布信息来审查该基本模式。澳大利亚,2014年和犹他州的Sunnyside区。美国。发布的“原因和效果”模型为发展煤爆发提供了一个有意义的解释,对仍然是潜在的高度破坏性事件,能够解释统计稀有性对模型的可信度同样重要的统计不诚实解释与突发事件相关的当地条件。该模型还可以为具有“控制层次”的基于风险的方法的基础,利用“控制层​​次”到开发煤突发威胁的运营管理。具体地,这些包括使用预先开采预测,用于可能突破易于和不突破的区域,如果合适,使用矿井布局以避免或至少最小化挖出突发区域内的挖掘,并且最终开发操作触发动作响应计划,减少了无意的道路开发到突发地区的可能性,没有适当的安全控制已经到位。

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