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首页|期刊导航|煤炭与化工|基于采空区刚度动态演化的不同充填方式工作面围岩稳定性研究

基于采空区刚度动态演化的不同充填方式工作面围岩稳定性研究

冀宇鑫 宋高峰 李燕

煤炭与化工2025,Vol.48Issue(7):31-36,6.
煤炭与化工2025,Vol.48Issue(7):31-36,6.DOI:10.19286/j.cnki.cci.2025.07.007

基于采空区刚度动态演化的不同充填方式工作面围岩稳定性研究

Study on surrounding rock stability of working face with different filling methods based on the dynamic evolution of goaf stiffness

冀宇鑫 1宋高峰 2李燕1

作者信息

  • 1. 鄂尔多斯应用技术学院土木工程学院,内蒙古鄂尔多斯 017010
  • 2. 北方工业大学土木工程学院,北京 100144
  • 折叠

摘要

Abstract

In order to study the overlying strata movement law and strata control effect of partial filling coal mining technology,the dynamic evolution of filling body strength in goaf was considered,and the numerical model of full filling and partial filling was established.Under the influence of different filling methods,the development law of surrounding rock pressure,the development degree of coal plastic zone in front of working face,the displacement and deformation of coal body,the evolution law of roof and floor displacement,the displacement of overlying strata and the law of surface subsidence were studied and compared.The results showed that compared with the full filling mining technology,the peak value of the abutment pressure increase coefficient in front of the working face of the partial filling model increased from 3.3 to 3.8;the displacement of the coal wall in the working face increased by about 10 mm;the width of plastic zone increased by about 0.72 m.The maximum subsidence of the immediate roof was increased by about 9.3 mm,and the maximum subsidence of the overlying rock was increased by about 12.7 mm.It was concluded that the surrounding rock control effect of partial filling coal mining technology was slightly worse than that of full filling coal mining technology,but it was generally within the acceptable range.

关键词

全部充填/部分充填/动态演化/支承压力/覆岩移动

Key words

all filling/partial filling/dynamic evolution/abutment pressure/overburden rock movement

分类

矿业与冶金

引用本文复制引用

冀宇鑫,宋高峰,李燕..基于采空区刚度动态演化的不同充填方式工作面围岩稳定性研究[J].煤炭与化工,2025,48(7):31-36,6.

基金项目

鄂尔多斯应用技术技术学院自然科学类一般项目(KYYB2023010) (KYYB2023010)

煤炭与化工

2095-5979

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