煤炭工程 ›› 2025, Vol. 57 ›› Issue (4): 93-100.doi: 10. 11799/ ce202504014

• 生产技术 • 上一篇    下一篇

特厚煤层下分层沿空留巷综放工作面漏风规律研究

宋治红,李学军,郭军,等   

  1. 1. 陈家沟煤电有限公司陈家沟煤矿
    2. 甘肃华亭煤电股份有限公司,陈家沟煤矿
    3. 西安科技大学
  • 收稿日期:2024-06-05 修回日期:2024-08-21 出版日期:2025-04-10 发布日期:2025-05-28
  • 通讯作者: 王磊 E-mail:2322088318@qq.com

Air leakage law of fully mechanized caving face of gob-side entry retaining in lower sub-level of extra-thick coal seam

  • Received:2024-06-05 Revised:2024-08-21 Online:2025-04-10 Published:2025-05-28

摘要:

随着开采深度及成本不断增加,沿空留巷技术被广泛应用于煤矿厚煤层开采,降低开采成本的同时提高了煤炭资源回采率。但由于顶板来压作用,使得沿空留巷侧煤柱易产生裂隙,造成采空区漏风隐患严重。为此,以陈家沟煤矿8521工作面为研究对象,采用理论分析、现场漏风测试与数值模拟相结合的方法,分析了W型通风方式下沿空留巷采空区漏风通道的分布特征,掌握了关键漏风区域的演化规律。结果表明:沿空留巷综放工作面推进至54m时主要漏风通道为1#—3#柔模墙,漏风流场范围在5.57~71.46m/min;工作面推进至126m时主要漏风通道为3#—18#柔模墙,漏风流场范围在4.11~52.90m/min。采空区深处沿走向方向0~80m范围内漏风速率逐渐减小;在采空区浅部20m范围内,整体漏风速率与距工作面的距离呈指数相关。

关键词:

煤自燃 , 特厚煤层 , 沿空留巷 , 漏风测定 , 漏风规律

Abstract:

With the increase of mining depth and cost, gob-side entry retaining technology is widely used in thick coal seam mining, which reduces the mining cost and improves the recovery rate of coal resources. However, due to the pressure of the roof, the coal pillars on the side of the gob-side entry retaining are prone to cracks, resulting in serious hidden dangers of air leakage in the goaf. Therefore, this paper takes the 8521 working face of Chenjiagou Coal Mine as the research object, and uses the method of theoretical analysis, field air leakage test and numerical simulation to analyze the distribution characteristics of air leakage channels in goaf of gob-side entry retaining under W-type ventilation mode, and grasps the evolution law of key air leakage areas. The results show that the main air leakage channel is 1 ~ 3 # flexible formwork wall when the fully mechanized caving face of gob-side entry retaining is advanced to 54 m, and the range of air leakage flow field is 5.57 m / min-71.46 m / min. When the working face advances to 126 m, the main air leakage channel is 3 ~ 18 # flexible formwork wall, and the range of air leakage flow field is 4.11 m / min-52.90 m / min. The air leakage rate decreases gradually in the range of 0 ~ 80 m along the strike direction in the deep part of the goaf. In the range of 20 m in the shallow part of the goaf, the overall air leakage rate is exponentially related to the distance from the working face. The research results can provide theoretical guidance for the prevention and control of coal spontaneous combustion in gob-side entry retaining.

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