矿业安全与环保
礦業安全與環保
광업안전여배보
MINING SAFETY & ENVIRONMENTAL PROTECTION
2015年
3期
5-11,16
,共8页
蒋仲安%蒋江林%王洪胜%杜翠凤%罗俊峰
蔣仲安%蔣江林%王洪勝%杜翠鳳%囉俊峰
장중안%장강림%왕홍성%두취봉%라준봉
综放工作面%采空区%相似准则%瓦斯运移规律
綜放工作麵%採空區%相似準則%瓦斯運移規律
종방공작면%채공구%상사준칙%와사운이규률
fully mechanized caving face%gob area%similar criterion%gas migration law
利用相似原理,结合多孔介质渗流达西定律,导出模拟矿井综放工作面采空区瓦斯运移规律的相似准则数。以樟村矿2306工作面采空区为原型,建立综放工作面采空区相似模型,对不同风速条件下U、U+L及U+I型通风工作面采空区的气流流动、瓦斯运移及上隅角瓦斯浓度变化进行了实验研究。研究结果表明:通风方式决定了采空区内气流流动及瓦斯运移的空间变化规律;风速决定了采空区内气流流动及瓦斯运移的波动程度和影响范围;上隅角瓦斯浓度变化受工作面通风方式及风速影响,U+I型通风方式最有利于降低上隅角瓦斯浓度,工作面风速过低易出现瓦斯积聚,风速过高则瓦斯浓度波动明显,风速在1.5~2.5 m/s时上隅角瓦斯浓度控制效果较好。
利用相似原理,結閤多孔介質滲流達西定律,導齣模擬礦井綜放工作麵採空區瓦斯運移規律的相似準則數。以樟村礦2306工作麵採空區為原型,建立綜放工作麵採空區相似模型,對不同風速條件下U、U+L及U+I型通風工作麵採空區的氣流流動、瓦斯運移及上隅角瓦斯濃度變化進行瞭實驗研究。研究結果錶明:通風方式決定瞭採空區內氣流流動及瓦斯運移的空間變化規律;風速決定瞭採空區內氣流流動及瓦斯運移的波動程度和影響範圍;上隅角瓦斯濃度變化受工作麵通風方式及風速影響,U+I型通風方式最有利于降低上隅角瓦斯濃度,工作麵風速過低易齣現瓦斯積聚,風速過高則瓦斯濃度波動明顯,風速在1.5~2.5 m/s時上隅角瓦斯濃度控製效果較好。
이용상사원리,결합다공개질삼류체서정률,도출모의광정종방공작면채공구와사운이규률적상사준칙수。이장촌광2306공작면채공구위원형,건립종방공작면채공구상사모형,대불동풍속조건하U、U+L급U+I형통풍공작면채공구적기류류동、와사운이급상우각와사농도변화진행료실험연구。연구결과표명:통풍방식결정료채공구내기류류동급와사운이적공간변화규률;풍속결정료채공구내기류류동급와사운이적파동정도화영향범위;상우각와사농도변화수공작면통풍방식급풍속영향,U+I형통풍방식최유리우강저상우각와사농도,공작면풍속과저역출현와사적취,풍속과고칙와사농도파동명현,풍속재1.5~2.5 m/s시상우각와사농도공제효과교호。
In this paper the similar criterion numbers for simulating the gas migration law in the gob area of the fully mechanized caving face were derived by using the similarity criterion and the Darcy’s Law of porous media seepage. By taking the gob area of 2306 working face in Zhangcun Coal Mine as the background, a similar model for the gob area in the fully mechanized caving face was established, and with this model, the experimental study was carried out on the laws of air flow and gas migration in the gob area and the change of the gas concentration at the upper corner angle of the working face with U, U+L or U+I ventilation pattern at different air speed. Results showed that the ventilation patterns would determine the space variation law of the air flow and gas migration in the gob area;the air speed would determine their fluctuation degree and influence scope;the change of gas concentration at the upper corner angle of the working face was subject to the influence of the ventilation pattern and air speed, U+I ventilation pattern was most conducive to lower the gas concentration at the upper corner angle, the lower air speed in the working face would cause gas accumulation, the higher gas concentration fluctuated significantly, and when the air speed was in the range of 1. 5-2. 5 m/s, the gas concentration at the upper corner angle can be under better control.