采矿与安全工程学报 ›› 2016, Vol. 33 ›› Issue (1): 185-190.

• 论文 • 上一篇    

弧形顶板垮落对上隅角瓦斯扰动的研究

  

  1. 北京科技大学土木与环境工程学院,金属矿山高效开采与安全教育部重点实验室,北京 100083
  • 收稿日期:2014-07-11 出版日期:2016-01-15 发布日期:2016-03-01
  • 作者简介:付明明(1985—),男,山东省肥城市人,博士研究生,从事采矿工程及矿山安全方面的研究。
  • 基金资助:

    国家自然科学基金项目(51174109)

Research of the disturbance of curved roof caving for gas in upper corner

  • Received:2014-07-11 Online:2016-01-15 Published:2016-03-01

摘要: 通过对弧形顶板平衡状态下的受力分析,确定了影响其平衡的 4 个主要因素,且将 4 个关键因素简化在不规则三角体模型中,推导出弧形顶板垮落前后空间体积变化量的计算公式。这一体积变化量与工作面内部及下隅角在来压时的体积变化量的三者之和,再减去向采空区的漏风风量,即为来压期间从上隅角位置涌出气体的增大值。分析4个矿井工作面上隅角 CH4体积分数监测记录,得出来压期间上隅角瓦斯体积分数的变化规律。上隅角瓦斯的涌出受其正上方弧形顶板的影响最为严重,伴随弧形顶板周期垮落,上隅角处气体涌出量周期明显增大。根据康城矿和云驾岭煤矿来压期间上隅角附近风量监测数据,得出来压期间上隅角风量的增大值。将实测增大值与理论值比较分析,两者误差小于 5%。

关键词: 弧形破坏, 周期性断裂, 回转扰动, 上隅角

Abstract: By the means of force equilibrium analysis of the arc roof, four major factors affecting its balance have been identified. The four key factors have been used in the simplification of irregular triangular body model. And the formula for calculating volume change during the roof caving has been derived, which has indicated that if the sum of the volume change during roof caving, volume change of work surface interior and the lower corner during weighting process substracts the air leakage into goaf, the incremental value of emission gas from the upper corner position during the weighting process can be calculated. By analyzing the upper corner CH4 volume fraction monitoring records of four mine working face, the change rule of upper corner gas volume fraction during the weighting process has been concluded, which has shown that the upper corner gas emission is influenced by the upper arc roof. With periodic roof caving, emission of upper corner gas has significantly increased periodically. According to the air monitoring data near upper corner of Kangcheng and Yunjialing coal mine, the increased air volume of upper corner during the weighting process has been conducted. Based on the comparison between the measured data and theory calculation, the error is less than 5%.

Key words: curved failure, periodic fracture, rotary disturbance, upper corner