Prediction Method of Residual Subsidence of Strip Goaf Located in Suburb for Safely Constructing Viaduct

Chao Tang, Huaizhan Li, G. Guo, Yaqiang Gong, Xuewei Zhang, Cheng Huang, Huaan Zhou, Yafei Yuan, Wenqi Huo, Guangli Dai, Chao Liu
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Abstract

Resource-based cities often face land scarcity during their developmental and expansionary phases. However, repurposing the goaf sites of suburban coal mines has been recognized as an effective strategy for alleviating this issue, particularly pertinent for suburban coal mines using strip mining techniques to protect ground-level structures. Old strip mining goaf is easily influenced by disturbance and leads to secondary surface deformation, which will threaten the construction above old strip mining goaf. Therefore, it is essential to provide a basis and reference for decision-makers regarding surface residual subsidence for strip mining. In the paper, based on the morphology and structure of the old strip mining goaf before the surface residual subsidence, the reason and mechanism of the residual subsidence of old strip mining goaf are studied. The results show that the main reasons for the “activation” of old strip mining goaf are the re-compaction of the under-compacted part of the fractured rock mass in the caving zone, the stripping and yielding of coal pillar under the action of groundwater erosion, weathering, and the collapse of residual voids. Based on the above analysis, a prediction model of the surface residual subsidence of the old strip mining goaf is proposed, which takes into account the compaction of the under-compacted area, the collapse of the residual voids, and the stripping and yielding of the coal pillar. The proposed method is implemented to evaluate the stability of a city viaduct goaf. Our research outcomes bear valuable theoretical and practical implications for site stability assessments of old strip mining goafs and the sustainable repurposing of land resources in suburban resource-based cities.
城郊带状采空区高架桥安全施工残余沉降预测方法
资源型城市在发展和扩张阶段往往面临土地稀缺问题。然而,改变郊区煤矿采空区的用途已被认为是缓解这一问题的有效策略,特别是与使用露天开采技术保护地面结构的郊区煤矿有关。老条带采空区易受扰动影响,导致地表二次变形,对老条带采空区上部的施工构成威胁。因此,为露天开采地表残余沉陷问题的决策者提供依据和参考是十分必要的。本文从地表残余沉陷前老条带采空区的形态结构出发,研究了老条带采空区残余沉陷的原因和机理。结果表明:老条带开采采空区“活化”的主要原因是崩落区裂隙岩体欠压实部分的再压实、地下水侵蚀、风化作用下煤柱的剥落屈服以及残余空隙的塌陷。在此基础上,提出了考虑欠压实区压实、残余空隙塌陷和煤柱剥落屈服的老条带采空区地表残余沉降预测模型。将该方法应用于某城市高架桥采空区的稳定性评价。本文的研究成果对城郊资源型城市老露天采空区场地稳定性评价和土地资源可持续再利用具有重要的理论和实践意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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