基于岩体流变理论的煤矿动态沉降盆地

Yang Yu, Gong Zhiqiang, Liang Bing
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引用次数: 7

摘要

为了研究煤矿开采引起的地表变形,减少对环境的破坏,需要更准确的煤矿开采引起的动态沉陷盆地信息。基于流变学理论,在顶板和煤层均为粘弹性介质的假设下,探讨了动态沉陷的地表变形机理,提出地表变形原理与顶板相似,只是参数不同。因此,根据h| M流变模型推导出的顶板变形方程,可以得到地表变形方程。最后,将地表变形方程应用于某煤矿的实际沉降预测。考虑到岩体的流变特性,动态沉降盆地的研究结果可以预测地表变形随时间的发展,这比最终沉降本身更重要。结果表明,利用流变学理论计算动态沉降盆地的变形是合适的,为动态沉降盆地的地表变形提供了一定的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic subsidence basins in coal mines based on rock mass rheological theory

In order to investigate the surface deformation caused by coal mining and to reduce environmental damage, more accurate information of dynamic subsidence basins, caused by coal mining, is needed. Based on rheological theory, we discuss surface deformation mechanism of dynamic subsidence on the assumption that both the roof and the coal seam are visco-elastic media, put forward the idea that the principle of surface deformation is similar to that of roofs, except for their parameters. Therefore, a surface deformation equation can be obtained, given the equation of the roof deformation derived from using a H|M rheological model. In the end, we apply the equation of surface deformation as a practical subsidence prediction in a coal mine. Given the rheologic properties of a rock mass, the results of our research of a dynamic subsidence basin can predict the development of surface deformation as a function of time, which is more important than the ultimate subsidence itself. The results indicate that using rheological theory to calculate the deformation of a dynamic subsidence basin is suitable and provides some reference for surface deformation of dynamic subsidence basins.

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