Li Baiyi, Zhang Jixiong, Yan Hao, Liu Hengfeng, Zhu Cunli
State Key Laboratory for Geomechanics & Deep Underground Engineering, China University of Mining and Technology, Xuzhou, 221116, China.
School of Mines, China University of Mining and Technology, Xuzhou, 221116, China.
Environ Sci Pollut Res Int. 2022 Jul;29(32):49050-49058. doi: 10.1007/s11356-022-19305-9. Epub 2022 Feb 25.
Thermal conductivity of mine backfill is vital for understanding the geothermal energy extraction potential in deep underground mines. Geothermal energy extraction efficiency could be improved with higher thermal conductivity of backfill. Thermal conductivities of gangue-cemented paste backfill enhanced with graphite and silica sand were investigated through laboratory tests in this article. The thermal conductivity measurement was conducted using the Hot Disk Thermal Constants Analyzer. Effects of graphite and silica sand on the thermal conductivity, slump, and compressive strength of gangue-cemented paste backfill were analyzed. The results highlighted the favorable influence of graphite on the thermal performance of backfilling materials, with adverse effect on the mechanical behavior and negative impact on the flowability. Thermal conductivity of gangue-cemented paste backfill markedly increased with graphite ratio, while more water is consumed for the workable slurry with the increased graphite ratio, which also leads to the degradation of compressive strength. The reasonable graphite content should be determined with the expected thermal enhancement and acceptable compressive strength. The addition of silica sand can effectively enhance the thermal conductivity of GCPB without degrading the compressive performance and flow performance. This study would provide a new insight into the design of backfill considering the thermal conductivity and lay a foundation for the efficient geothermal energy in deep mines.
矿山充填体的热导率对于理解深部地下矿山的地热能提取潜力至关重要。回填材料的热导率越高,地热能提取效率越高。本文通过实验室试验研究了添加石墨和硅砂的煤矸石胶结膏体充填体的热导率。热导率测量采用热盘热常数分析仪进行。分析了石墨和硅砂对煤矸石胶结膏体充填体热导率、坍落度和抗压强度的影响。结果表明,石墨对回填材料的热性能有有利影响,但对力学性能有不利影响,对流动性有负面影响。煤矸石胶结膏体充填体的热导率随石墨掺量的增加而显著提高,而随着石墨掺量的增加,可工作浆体消耗的水量增加,这也导致抗压强度下降。应根据预期的热增强效果和可接受的抗压强度来确定合理的石墨含量。硅砂的添加可以有效提高煤矸石胶结膏体充填体的热导率,而不会降低其抗压性能和流动性能。该研究将为考虑热导率的充填体设计提供新的思路,为深部矿井地热能的高效利用奠定基础。