Abstract
This article presents the characteristics of the heaps resulting from coal exploitation in terms of the possibility of their development for industrial facilities. The chances of soil improvement and the existing threats were indicated, emphasising the risk of self-ignition. The most effective technologies are dynamic or impulse compaction, which allows deep soil improvement and the obtaining of an appropriately rigid and load-bearing subsoil. The homogeneity of the soil’s mechanical properties that form the subsoil is also essential, which guarantees compliance with the serviceability limit state. A very important aspect of the investment process in the post-mining waste dumps is the risk of auto-ignition of the accumulated material. Considerations and analyses are presented on the example of the implementation of Panatonni service, warehouse, and production halls in Ruda Śląska. The performance of impulse compaction allowed for the safe construction of industrial halls. In particular, the tests carried out on the thermal state of the dumps confirmed the lack of an unacceptable risk of endogenous fire in the dump mass.
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference51 articles.
1. Utilization of ground subsidence caused by underground mining to produce a map of possible land-use areas for urban planning purposes
2. Limit states of transport embankments on the soils of low bearing capacity and mining area subsoil;Stilger-Szydło;Studia Geotech. Mech.,2006
3. Environmental impact of mining activity in the Upper Silesian Coal Basin (Poland);Cabala;Geol. Belg.,2004
4. Conversion of the lands devastated by mining activity;Michalski,2013
5. The analysis of the existing terminology related to a post-mining land use: a proposal for new classification
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