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Research on prediction of residual deformation in goaf of steeply inclined extra–thick coal seam

机译:陡峭倾斜超厚煤层净剩余变形预测研究

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摘要

The residual deformation of a goaf is studied to improve the foundation stability assessment for metro lines passing through the subsidence area of steeply inclined extra-thick coal seams. The variable mining influence propagation angle is introduced to describe the special form of the rock movement. Based on the modified parameters in the traditional probability integral model, a subsidence prediction model is established. Then, based on the idea of an equivalent mining thickness, Kelvin model is introduced to analyze the creep characteristics of the old goaf, and the dynamic prediction function of the residual subsidence is constructed to realize the dynamic analysis of the residual deformation. Moreover, a case study is used to evaluate the predictive effectiveness of the prediction model, and the results are compared with the monitoring data and numerical simulation results. The results show that the values with a relative error between the predicted value and measured value are in the range of ±7%, indicating that the prediction model based on the mining influence propagation angle is feasible. Thus, the residual deformation prediction model based on the mining influence propagation angle is considered to be suitable for predicting the subsidence of engineering projects crossing a goaf.
机译:研究了GOF的残余变形,以改善通过陡峭倾斜的超厚煤层沉降区域的地铁线的基础稳定性评估。引入可变挖掘影响传播角度来描述岩石运动的特殊形式。基于传统概率积分模型中的修改参数,建立了沉降预测模型。然后,基于等效采矿厚度的思想,引入了开尔文模型以分析旧GOF的蠕变特性,并且构建残余沉降的动态预测功能以实现残余变形的动态分析。此外,使用案例研究来评估预测模型的预测效果,并将结果与​​监测数据和数值模拟结果进行比较。结果表明,预测值和测量值之间的相对误差的值在±7%的范围内,表明基于挖掘影响传播角度的预测模型是可行的。因此,基于挖掘影响传播角度的残余变形预测模型被认为是适用于预测交叉流浪的工程项目的沉降。

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