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Application of CFD Techniques to Assess Spontaneous Heating/Fire during Extraction of Thick Coal Seam Using Blasting Gallery (BG) Method

机译:CFD技术在利用爆破廊(BG)方法中厚煤层提取过程中的自发加热/火灾

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摘要

ABSTRACT Spontaneous combustion is one of the key issues in the blasting gallery (BG) method of coal mining. Earlier most of the BG panels have been sealed due to the occurrences of spontaneous heating during the extraction of the panel. This research paper describes a study on spontaneous heating/fire mechanism in depillaring panels of thick seam mining using laboratory experiments, calculating goaf ignition temperature, field investigation and computational fluid dynamics (CFD) techniques. The laboratory study, i.e. Proximate analysis, ultimate analysis, Sulphur analysis, CPT study, DSC study indicated that coal is prone to spontaneous heating. The CFD simulation study reveals that spontaneous heating of leftover coal in goaf areas alone cannot be responsible for the fire in the BG panel. It indicates that an increase in temperature of the goaf is proportional to the amount of coal left in the goaf region. CFD study for roof fall in leftover coal in the goaf region along with spontaneous heating establishes that temperature rise in goaf is proportional to roof fall area of the panel. The laboratory, field and CFD simulation study clearly verify that spontaneous heating/fire in BG panel is due to the combination of spontaneous heating in leftover coal, and frictional heat generated due to roof fall.
机译:摘要自发燃烧是爆破画廊(BG)煤矿方法的关键问题之一。早期的大部分BG面板由于在面板提取期间的自发加热而被密封。本研究论文描述了使用实验室实验,计算GOF点火温度,现场调查和计算流体动力学(CFD)技术的厚缝采矿中自发加热/消防机制研究。实验室研究,即近期分析,最终分析,硫酸分析,CPT研究,DSC研究表明,煤炭易于发热。 CFD仿真研究表明,剩余煤的自发加热仅在脱毛区内不能负责BG面板中的火灾。它表明,GOF的温度的增加与GoF区域留在剩余的煤量成比例。屋顶屋顶的CFD研究在剩余的煤层中的剩余煤中以及自发加热建立了GOF的温度升高与面板的屋顶区域成比例。实验室,领域和CFD仿真研究清楚地证明了BG面板中的自发加热/火灾是由于剩余煤中自发加热的组合,以及由于屋顶落下产生的摩擦热量。

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