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The Future of Underground Spatial Planning and the Resulting Potential Risks from the Point of View of Mining Subsidence Engineering

机译:地下空间规划的未来与矿业沉降工程观点来看的导致潜在风险

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The topic of ground movements in Germany has been studied extensively in the past, especially in the field of active mines. The active hard coal mines were finally shut down in 2018 in Germany and lignite mining is expected to take place only until 2038. The so-called long-term liabilities of the mine operators in Germany include, among other things, the long-term guarantee of stability and thus the monitoring of ground motion. So far. the economic use of underground mining in Germany was mainly the supply of raw materials. In the future, the underground storage of compressed air. methane, or hydrogen will play an important role in renewable energy supply and climate change. Therefore, underground storage space will become more important and spatial planning is essential to ensure availability of safe underground openings for the various options of environmentally friendly energy storage. However, this renewed usage of underground openings may also bring new and sometimes unknown challenges of geomechanical influence. On the one hand, the aftermath of hard coal and lignite mining will be an increasing challenge in mining subsidence engineering. On the other hand, new possibilities due to underground spatial planning may lead to subsidence and/or heaving of the upper surface.
机译:德国的地面运动主题已经广泛研究了过去,特别是在积极矿山领域。积极的硬煤矿终于在德国的2018年关闭,预计褐煤采矿只会直到2038年。德国矿山运营商的所谓长期负债包括长期保证稳定性,从而监测地面运动。迄今为止。德国地下采矿的经济利用主要是原材料供应。在未来,压缩空气的地下储存。甲烷或氢气将在可再生能源供应和气候变化中发挥重要作用。因此,地下储存空间将变得更加重要,空间规划对于确保适用于环保能源存储的各种选择的安全地下开口的可用性至关重要。然而,这一重新使用地下开口的使用也可能带来新的,有时是未知的地质力学影响。一方面,硬煤和褐煤采矿的后果将是矿业沉降工程中越来越大的挑战。另一方面,由于地下空间规划导致的新可能性可能导致上表面的沉降和/或起伏。

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