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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:基于煤中的主要水平应力,非常特殊的结构地质导致有效煤约束的局部损失和牛顿第二定律的巷道开发过程中煤爆的成因机制

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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,国际上的一个煤炭管理部门发生了爆炸。克里斯·马克(Chris Mark)博士发表了一篇题为“开发过程中发生的煤爆:岩石力学之谜”的论文。在其中确定了几个相关的技术问题,最相关的是:i。虽然发育煤的爆炸通常与地质断裂有关,但要了解哪些特定断裂会导致爆炸易发的开采采矿条件及其原因。仍未定义。 ii。根据科罗拉多州的某些爆炸实例,与煤层顶板和底板强地质有关的传统观点可能会受到限制。 iii。在没有局部地应力从其原位水平显着升高的情况下,就可能发生发育性的煤爆。本文概述了这三个当前发展中的煤爆难题的可信的,第一性的,机理性的解释,方法是参考早期发表的煤炭测试工作,以检验缺乏“约束”对煤炭稳定性的重要性以及对煤炭稳定性的理解。逻辑上非常特殊的结构地质和其他地质特征如何在逻辑上导致这种情况发生,尽管在统计学上非常少见。通过参考与新南威尔士州Austar煤矿发生的发展中的煤爆有关的已发布信息,对该基本模型进行了研究。澳大利亚,2014年,来自犹他州森尼赛德区。美国。提出的“发展煤爆炸的“因果”模型”还为统计上不可能发生的潜在破坏性事件提供了有意义的解释,能够解释统计稀有性与该模型的可信度一样重要。解释与突发事件相关的本地条件。该模型还可以为基于稳健的,基于风险的方法的基础,该方法利用“控制层​​次结构”对发展中的燃煤爆炸威胁进行操作管理。具体而言,这些措施包括对可能发生爆裂和非爆裂区域进行预开采预测,在适当情况下使用矿山布局避免或至少尽量减少易爆区域内的采矿,最后发展防空洞。一个可操作的触发行动响应计划,可在没有适当的安全控制措施的情况下减少意外道路发展成易爆区域的可能性。

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