煤炭工程 ›› 2022, Vol. 54 ›› Issue (1): 112-116.doi: 10.11799/ce202201020

• 研究探讨 • 上一篇    下一篇

“双软”顶底板薄煤层沿空留巷底鼓机理分析

张帅1,徐金海2,李冲3   

  1. 1. 中国矿业大学矿业工程学院
    2. 中国矿业大学煤炭资源与安全国家重点实验室矿业工程学院
    3. 中国矿业大学
  • 收稿日期:2021-06-29 修回日期:2021-07-26 出版日期:2022-01-14 发布日期:2022-07-07
  • 通讯作者: 张帅 E-mail:TS18020064A31@cumt.edu.cn

Floor Heave Mechanics Analysis of Retaining Roadway along the Empty in "Double-Soft" Thin Coal Seam with Roof and Floor

  • Received:2021-06-29 Revised:2021-07-26 Online:2022-01-14 Published:2022-07-07

摘要: 综放沿空巷道底鼓不仅造成巷道的破坏,对窄煤柱、巷旁充填体乃至整个巷道的稳定性也有重要影响,强烈的底鼓带来大量的维护和翻修工作,严重影响矿井正常的生产,大大增加了巷道的支护和维修费用。采用Winker弹性地基理论模型,建立了沿空留巷底鼓力学模型,结合工程案例,对巷道底鼓力学模型进行了验证,研究结果表明:实体煤与巷旁支护体侧底板变形接近零,巷道区域底板变形呈现为“抛物线”特征,具有非正对称现象,底鼓最大变形处位于靠近巷旁支护体侧,最大值为628mm|实测变形监测100d后底鼓量最大值为645mm,理论模型最大值与实测最大值误差为2.6%。

关键词: 薄煤层, 弹性地基理论, 沿空留巷, 巷道底鼓, 现场监测

Abstract: The floor heave of the fully mechanized caving roadway not only causes damage to the roadway, but also has an important impact on the stability of the narrow coal pillars, the filling body beside the roadway and the entire roadway. The strong floor heave brings a lot of maintenance and renovation work, which seriously affects the normal operation of the mine. Production greatly increases the support and maintenance costs of the roadway. In this paper, the Winker elastic foundation theory model is used to establish a mechanical model of the floor heave of the roadway along the goaf. Combined with engineering cases, the mechanical model of the floor heave of the roadway is verified. The research results show that the deformation of the solid coal and the side floor of the roadside support is close to zero. The floor deformation of the roadway area presents a "parabolic" characteristic, with non-positive symmetry. The maximum deformation of the floor heave is located near the side of the roadway support body, with a maximum value of 628 mm; the maximum value of the floor heave after 100 days of actual deformation monitoring is 645 mm, the theoretical model The error between the maximum value and the measured maximum value is 2.6%.

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