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An Analysis of Chamber Filling Effects on the Remediation of Flooded Gypsum and Anhydrite Mines

机译:充填石膏和硬石膏矿山的舱室填充效果分析

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Abandoned gypsum and anhydrite mines can be filled by underground water that progressively dissolves pillar rock. The long term stability of the mine under the weight of the overburden is therefore jeopardised. A common remedial measure consists in filling the flooded chambers with granular materials. The aim of the paper is that of investigating the effect of the mechanical characteristics of the filler on the time of mine collapse, induced subsidence and pore water pressure generation. By means of Sharp Front theory the saturation front advance and the loss of pillar bearing capacity with time is determinated first. Subsequently one dimensional consolidation theory is used for the determination of the proportion of overburden weight carried by the solid skeleton of the filler and by water pressure. A parametric analysis is eventually performed for the case of an abandoned gypsum and anhydrite mine in order to determine the most appropriate mechanical characteristics of the filler material.
机译:废弃的石膏矿和无水石膏矿可以被逐渐溶解柱岩的地下水填充。因此,在覆盖层重量的作用下,矿山的长期稳定性受到损害。常见的补救措施是用粒状材料填充淹没室。本文的目的是研究填料的机械特性对矿山坍塌时间,诱发沉降和孔隙水压力产生的影响。借助夏普锋理论,首先确定饱和锋的提前量以及随着时间的推移支柱承载力的损失。随后,使用一维固结理论来确定填料的固体骨架和水压所承载的上覆层重量的比例。最终针对废弃的石膏和硬石膏矿进行参数分析,以确定填充材料的最合适的机械特性。

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