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A boundary model of terrain reconstruction in a coal-mining subsidence waterlogged area

机译:煤矿沉积地区地形重建边界模型涝渍地区

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摘要

Mining of coal resources in an area with a high groundwater level causes large-scale water accumulation on the surface, which brings great difficulties to land reclamation. To improve the reclamation efficiency, a boundary mathematical model of terrain reconstruction in the subsidence waterlogged area was established based on the Probability Integral Method (PIM) and the principle of equal amounts of digging and filling. The terrain reconstruction curve of deep-digging and shallow-filling was calculated through the linear combination of the surface's predicted subsidence curve and the designed elevation line. The dividing boundary, inner boundary, and outer boundary of deep-digging and shallow-filling were defined. Finally, the whole subsidence area was divided into four different regions according to inflection points of the terrain reconstruction curve, and the ecological reconstruction schemes of agriculture, forestry, and fishery were put forward. The engineering practice of the 1013 panel in Wugou Coal Mine showed that 54.69%, 31.55%, and 13.76% of the subsided land were reclaimed for cultivated land, slope cultivated land, and aquaculture area, respectively, and all the subsided land was reasonably utilized. This method provides a new technology for eco-environment treatment in the subsidence area with a high groundwater level.
机译:在地下水位高的地区煤炭资源开采导致表面上的大规模水积累,这为土地填海造成了巨大的困难。为了提高填海效率,基于概率积分法(PIM)和等量的挖掘和填充原理建立了沉降落水区域的地形重建的边界数学模型。通过表面预测沉降曲线和设计的高度线的线性组合计算了深挖和浅填充的地形重建曲线。定义了深挖和浅填充的分割边界,内边界和外边界。最后,根据地形重建曲线的拐点,整个沉降区分为四个不同的区域,提出了农业,林业和渔业的生态重建方案。武汇煤矿1013面板的工程实践表明,为耕地,坡地耕地和水产养殖区分别接受了54.69%,31​​.55%和13.76%的趋势地区,所有贫民地都合理地利用了。该方法为沉降区提供了一种新技术,具有高地区水平。

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