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Enhanced subsurface subsidence prediction model that considers overburden stratification

机译:考虑覆盖层分层的增强型地下沉降预测模型

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摘要

Subsurface strata movements and deformations caused by longwall mining operations in underground coal mines could affect many important coal mining activities, such as gob well degasification, ground water protection and multiple seam mining. The stratifications in the overburden have significant influence on the subsurface and surface movements and deformations in the ground subsidence process. An enhanced subsurface subsidence prediction model considering overburden stratifications has been introduced in this paper. In this method. the entire overburden strata are equally divided into a finite number of layers and the percent of the hard rocks in each layer is an additional input. The proven influence function method is applied to predict the subsidence on each of the predefined layers progressively upward using the predicted subsidence on the previous layer as the subsidence cause for the current layer. A computer program is developed to facilitate the calculations. A case demonstration is used to show the applicability of the proposed subsurface subsidence prediction model.
机译:地下煤矿中长壁开采作业引起的地下地层运动和变形可能影响许多重要的煤矿开采活动,例如采空区脱气,地下水保护和多煤层开采。覆盖层中的分层对地面沉降过程中的地下和地面运动以及变形有重大影响。本文介绍了一种考虑覆盖层分层的增强型地下沉降预测模型。用这种方法。整个覆土层均等地划分为有限的层数,每一层中的硬岩百分比是额外的输入。已证明的影响函数方法适用于使用先前层的预测沉降作为当前层的沉降原因,逐步向上预测每个预定义层的沉降。开发了计算机程序以促进计算。通过案例演示来说明所提出的地下沉降预测模型的适用性。

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