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Discontinuous Modelling of Stratum Cave-in in a Longwall Coal Mine in the Arctic Area

机译:北极地区长壁煤矿地层塌陷的不连续模拟

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This paper presents a discontinuous numerical approach for studying roof cave-in mechanisms and obtaining the required support capacity of longwall shields in a case study site, the Svea Nord coal mine in Svalbard. The block size in the roof strata and the mechanical parameters of the discontinuities for the numerical model were obtained through back-calculations. The back-calculations were conducted with a statistical method of design of experiment. Numerical simulations revealed that voussoir jointed beams are formed before the first cave-in occurs. The maximum deflection of a roof stratum in the study site prior to the first cave-in is about 70 % of the stratum thickness. The maximum span of the roof strata prior to the first cave-in depends upon the in situ horizontal stress state. The roof beams have a large stable span when they are subjected to high horizontal stress; but horizontal stress would increase the possibility of rock crushing in deflected roof beams. The simulations and field measurements show no periodic weighting on the longwall shields in the study site. Stiff and strong roof beams would result in large first and periodic cave-in distances. As a consequence of having large cave-in distances, the longwall shields must have high load capacity, which can be calculated by the presented numerical approach.
机译:本文提出了一种不连续的数值方法,用于研究屋顶塌陷机制并获得案例研究现场(斯瓦尔巴德群岛的Svea Nord煤矿)所需的长壁盾构的支撑能力。通过反算获得了屋顶地层的块体尺寸和不连续性的力学参数。用实验设计的统计方法进行反算。数值模拟表明,在首次塌陷发生之前就形成了voussoir节理梁。在第一次塌陷之前,研究场地中屋顶地层的最大挠度约为地层厚度的70%。第一次塌陷之前屋顶地层的最大跨度取决于现场水平应力状态。顶梁在承受高水平应力时具有较大的稳定跨度。但是水平应力会增加在倾斜的顶梁中碎石的可能性。仿真和现场测量结果表明,研究场地的长壁盾构没有定期加权。刚性强的顶梁会导致较大的首次和周期性塌陷距离。由于塌陷距离较大,长壁屏蔽必须具有较高的承载能力,这可以通过提出的数值方法进行计算。

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