土工基础 ›› 2022, Vol. 36 ›› Issue (6): 952-955.

• 专题论述 • 上一篇    下一篇

高速公路下伏自燃采空区路基煤火热传递数值分析

王彩波1,李德增2   

  1. (1.中交四航局第一工程有限公司,广州 510310;2.中交二公局东萌工程有限公司,西安 710119)
  • 收稿日期:2022-09-20 修回日期:2022-09-27 出版日期:2022-12-31 发布日期:2022-12-28
  • 作者简介:王彩波(1984-),女,工程师,研究方向为工程项目管理。

Numerical Analysis of Thermal Transfer of Coal Fire Distribution in Unfilled Abandon Mine Underlying an Expressway

WANG Caibo1, LI Dezeng2   

  1. (1.The First Engineering Co., CCCC Four Harbor Engineering Co. Ltd., Guangzhou 510310;
    2.Dongmeng Engineering Co., Ltd., CCCC Second Highway Engineering Co. Ltd., Xi'an 710119)
  • Received:2022-09-20 Revised:2022-09-27 Online:2022-12-31 Published:2022-12-28

摘要: 以高填方公路路基下伏煤层自燃病害治理为背景,利用钻孔测温探测法对路线两侧的煤层自燃情况和地层岩性变化情况进行勘察。基于在路基两侧的钻孔探测,获得了地层温度监测数据和岩层变化情况。经统计分析,确定路基下部煤层燃烧区域、燃烧深度、燃烧烈度。采空区煤层燃烧热源位于地下约50 m深度处,沿竖向钻孔的温度分布呈抛物线形。温度从地表向下分为四个区:地表路基常温区、一般岩层温度异常区、煤质岩层温度异常区、深部常温区。对石灰黄土混合料在煤田火区填筑路基中隔热密封性进行了验证,探测结果表明在路基内并未出现200 ℃以上的异常高温,证明石灰黄土混合料路基对地表有很好的密封及隔热作用。


关键词: 道路工程, 地下煤火监测, 钻孔法, 数值分析

Abstract: In this study, the spontaneous combustion of a coal seam under the subgrade of the high fill highway embankment is taken as the background.  The coal seam spontaneous combustion and stratum lithology changes on both sides of the roadway embankment are investigated by the method of borehole temperature measurement. Based on borehole investigation on both sides of the roadbed, the monitoring data of formation temperature and the rock formation variations were obtained. After the statistical analysis, the burning area, the burning depth and the burning intensity of the coal seam at the lower part of the roadbed are determined. The coal seam combustion heat source in the unfilled abandoned mine gallery is located at a depth of approximately 50 meters below the ground. The temperature distribution along the vertical borehole is parabolic. The temperature can be divided into four areas from the surface downward: the normal temperature area of the surface subgrade; the abnormal temperature area of the general rock formation; the abnormal temperature area of the coal rock formation; and the deep normal temperature area. The thermal insulation and sealing performance of lime-loess mixture in the subgrade filling in the coal field fire area was verified. The detection results showed that there was no abnormally high temperature above 200 ℃ in the subgrade, which proved that the lime-loess mixture subgrade has a good sealing effect on the surface and thermal insulation.

Key words: Roadway Engineering, Underground Coal Fire Monitoring, Drilling Method, Numerical Analysis

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