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Sinkhole Hazard Caused by Inactive Mining Shafts as Illustrated by a Selected Example

机译:如选定的示例所示,由非活动开采轴引起的陷阱危险

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Loss of stability of shafts liquidated in the past is a frequent cause of sinkhole creation on the surface. This manuscript presents such a case study. The sinkhole was created shortly after intense rainfall, so it can be assumed that displacement of the rock material in the shaft took place, i.e. the phenomenon of suffusion. One of the research aims was to confirm the assumption about the displacement of rock material filling the shaft on the basis of selected methods of sinking forecasting. Ex post forecast sinkhole creation was conducted using two methods (Bell and finite element method). It was assumed that the material filling the shaft lowered itself to a height determined on the basis of the sinkhole and shaft dimensions. Both methods gave the same results, consistent with the literature . The manuscript also presents a short overview of technologies used for decommissioning shafts and assesses their effectiveness in terms of preventing sinkhole creation. These methods have been used since the nineteenth century until present times. Considering the suffusion phenomenon, the paper proposes a way to drain rainwater from the shaft area, which was another purpose of the work. The necessity to find and verify the ways to secure decommissioned shafts from water is indicated as an important future direction of research.
机译:过去清理过的竖井失去稳定性,是地表产生天坑的常见原因。这篇手稿展示了这样一个案例研究。该天坑是在强降雨后不久形成的,因此可以假设竖井中的岩石材料发生了位移,即发生了溢流现象。其中一个研究目的是,根据选定的下沉预测方法,确认关于填充竖井的岩石材料位移的假设。使用两种方法(Bell法和有限元法)进行事后预测。假设填充竖井的材料将其自身降低至根据天坑和竖井尺寸确定的高度。两种方法得出的结果相同,与文献一致。该手稿还简要概述了用于井道退役的技术,并评估了它们在防止天坑形成方面的有效性。这些方法从19世纪一直被使用到现在。考虑到矿井积水现象,本文提出了一种从矿井区域排水的方法,这是本工程的另一个目的。有必要找到并验证将退役竖井从水中保护起来的方法,这是未来研究的一个重要方向。

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