中国地质灾害与防治学报
中國地質災害與防治學報
중국지질재해여방치학보
THE CHINESE JOURNAL OF GEOLOGICAL HAZARD AND CONTROL
2012年
1期
83-87
,共5页
束管%采空区%氧浓度%数值模拟
束管%採空區%氧濃度%數值模擬
속관%채공구%양농도%수치모의
beam tube%goaf%oxygen concentration%numerical simulation
本文针对古山矿065-2大倾角易自燃综放工作面上部有小煤窑火区和上分层火区、且自然发火期仅为15d、工作面火灾防治极其困难的问题,采用在采空区埋设束管、取样化验采空区气体成分的方法,得出采空区气体浓度场分布,划分工作面采空区的自燃"三带",计算出工作面日最小推进度为2.54m。运用Comsol软件,通过对采空区氧浓度进行数值模拟,并与实测采空区氧浓度进行对比验证,结果证明基于Comsol模拟采空区氧浓度分布是可行的,为易自燃煤层综放工作面采空区自然发火防治提供了可靠的理论指导。
本文針對古山礦065-2大傾角易自燃綜放工作麵上部有小煤窯火區和上分層火區、且自然髮火期僅為15d、工作麵火災防治極其睏難的問題,採用在採空區埋設束管、取樣化驗採空區氣體成分的方法,得齣採空區氣體濃度場分佈,劃分工作麵採空區的自燃"三帶",計算齣工作麵日最小推進度為2.54m。運用Comsol軟件,通過對採空區氧濃度進行數值模擬,併與實測採空區氧濃度進行對比驗證,結果證明基于Comsol模擬採空區氧濃度分佈是可行的,為易自燃煤層綜放工作麵採空區自然髮火防治提供瞭可靠的理論指導。
본문침대고산광065-2대경각역자연종방공작면상부유소매요화구화상분층화구、차자연발화기부위15d、공작면화재방치겁기곤난적문제,채용재채공구매설속관、취양화험채공구기체성분적방법,득출채공구기체농도장분포,화분공작면채공구적자연"삼대",계산출공작면일최소추진도위2.54m。운용Comsol연건,통과대채공구양농도진행수치모의,병여실측채공구양농도진행대비험증,결과증명기우Comsol모의채공구양농도분포시가행적,위역자연매층종방공작면채공구자연발화방치제공료가고적이론지도。
In Gushan coalmine,the fire areas of small coal mine and upper coal seam exist in the top of 065-2 fully-mechanized caving face with large inclination and easy self-ignition coal.Moreover,spontaneous combustion period is only 15 days,so both of them contribute to especial difficulty of fire prevention in working place.Gob gas composition is ascertained by the way of sampling tests after laying beam tubes under the gob area in this study.Then according to the distribution of gob gas concentration,spontaneous ignition "three bands" are divided and the smallest value of advancing of working face is calculated as 2.54 meters.Because of this heavy workload and long testing period,and gob ponding easily lead laying equipments to inaccurate or even damaged.In view of this,by numerical simulation,using Comsol software to simulate the distribution of oxygen concentration in goaf,verifying the simulated oxygen concentration with measured oxygen concentration in the goaf.The result turns out to be feasible for the simulatin of oxygen concentration distribution in goaf based on Comsol.It provides reliable theoretical guidance for easy self-ignition of fully mechanized coal face the goaf spontaneous combustion control in the future.