首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >A coupled flow-stress-damage model for groundwater outbursts from an underlying aquifer into mining excavations
【24h】

A coupled flow-stress-damage model for groundwater outbursts from an underlying aquifer into mining excavations

机译:从地下蓄水层到采矿开挖的地下水突出的流-应力-损伤耦合模型

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Uncontrolled groundwater outbursts from underlying limestone aquifers into mining excavations present a significant safety challenge for underground coal mining in China. Although these mining hazards have been known for decades, the mechanism for groundwater outbursts remains elusive. A fully coupled flow-stress-damage model is presented to simulate the progressive development of fractures and the associated groundwater flow under incremental loading conditions resulting from mining processes. The model is based on classical theories of porous media flow and damage mechanics and importantly links changes in permeability with the accumulation of damage in following the complete stress-strain process. This coupled flow-stress-damage model is applied to examine the influence of mining advance on the initiation, extension, and evolution of an outburst conduit as it develops adjacent to the mine panel. Fractures are shown to initiate both from the wings of the excavation in shear, and from the center of the floor span, in extension. The growth of the extensile fractures is stunted by the presence of a high stress abutment, but the wing fractures extend, with one fracture becoming dominant. As the dominant fracture develops into the underlying over-pressured zone, water pressures transmitted along the now-open conduit reduce effective stresses and develop rapid heave displacements within the floor. The result is a groundwater outburst. The modeling is tuned to the results of laboratory experiments and follows the evolution of a viable outburst path. Observations corroborate with field measurements of permeability pre- and post-mining and are strong indicators of the veracity of the approach.
机译:从下面的石灰岩含水层到采矿开挖的不受控制的地下水爆发对中国的地下煤矿开采提出了重大的安全挑战。尽管这些采矿隐患已经知道了数十年,但地下水突泻的机制仍然难以捉摸。提出了一个完全耦合的流-应力-破坏模型,以模拟在开采过程导致的负荷增加条件下裂缝的逐步发展及相关的地下水流。该模型基于多孔介质流动和损伤力学的经典理论,并且在遵循完整的应力应变过程后,重要地将渗透率的变化与损伤的累积联系起来。该耦合的流-应力-破坏模型用于检查采矿进度对邻近矿壁面板发展的突出导管的形成,扩展和演化的影响。所示的裂缝既从开挖的机翼在剪切中开始,又从楼板的中心开始扩展。高应力基台的存在阻碍了延伸性骨折的生长,但机翼骨折扩展了,其中一个骨折占主导。当主要裂缝发展到下伏的超压区域时,沿着现在打开的管道传输的水压会降低有效应力,并在底板内产生快速的升沉位移。结果是地下水暴发。该模型已根据实验室实验的结果进行了调整,并遵循了可行的爆发路径的演变。观测结果与开采前和开采后渗透率的现场测量结果相符,是该方法准确性的有力指标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号