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An Innovative Approach for Gob-Side Entry Retaining With Thick and Hard Roof: A Case Study

机译:厚硬顶板采空区入口保持的创新方法:案例研究

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An innovative roadway layout in a Chinese colliery based on gob-side entry retaining (GER) with thick and hard roof (THR) was introduced. Suspended roof is left with a large area in GER with THR, which leads to large area roof weighting (LARW). LARW for GER with THR and mechanism of shallow-hole blasting to force roof caving in GER were expounded. Key parameters of shallow-hole blasting to force roof caving are proposed. LS-DYNA3D was used to validate the rationality of those key parameters, and UDEC was used to discuss and validate shallow-hole blasting to force roof-caving effect by contrast to the model without blasting and the model with shallow-hole blasting. Moreover, shallow-hole blasting technology to force roof caving for GER with THR was carried out in the Chinese colliery as a case study. Field test indicates that shallow-hole blasting technology effectively controls ground deformation of GER with THR and prevents LARW.
机译:在中国煤矿中,采用了带有厚硬顶板(THR)的采空区入口挡土墙(GER)的创新巷道布局。带有THR的GER中的悬空屋顶留有较大面积,这导致大面积屋顶重量(LARW)。阐述了带热阻的GER的LARW以及GER中的浅孔爆破迫使顶板塌落的机理。提出了浅孔爆破强制顶板冒顶的关键参数。 LS-DYNA3D用来验证这些关键参数的合理性,而UDEC则用来讨论和验证浅孔爆破,以与没有爆破的模型和带有浅孔爆破的模型形成对比,以施加顶棚效应。此外,在中国的煤矿进行了浅孔爆破技术,以利用THR强制GER冒顶。现场试验表明,浅孔爆破技术通过THR有效控制了GER的地面变形,防止了LARW。

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