中国安全生产科学技术
中國安全生產科學技術
중국안전생산과학기술
Journal of Safety Science and Technology
2015年
9期
76-82
,共7页
周西华%门金龙%王鹏辉%白刚
週西華%門金龍%王鵬輝%白剛
주서화%문금룡%왕붕휘%백강
瓦斯抽采%增透%液态CO2爆破%TNT当量%有效影响半径
瓦斯抽採%增透%液態CO2爆破%TNT噹量%有效影響半徑
와사추채%증투%액태CO2폭파%TNT당량%유효영향반경
gas extraction%improving permeability%liquid CO2 blasting%TNT equivalent%effective influencing ra-dius
为了增加煤层透气性、提高瓦斯抽采效率,选取七台河矿区进行液态CO2爆破煤层增透工业试验。研究液态CO2爆破过程中主管内高压气体P-T曲线,考察不同地应力下的液态CO2爆破有效影响半径和煤层透气性系数,监测爆破前后瓦斯抽采参数。试验结果表明:采用压缩气体与水蒸气容器爆破方法计算液态CO2爆破的当量为180 gTNT;爆破后瓦斯抽采浓度提高3.16倍,瓦斯抽采混合流量提高1.71倍;煤层液态CO2爆破有效影响半径随地应力的增加近线性减小,随爆破压力的增加非线性增加,确定液态CO2爆破时最佳爆破压力范围160~280 MPa;爆破前后对比,煤层透气性系数提升17.49~22.76倍。井下煤层液态CO2爆破技术的实施,有助于降低爆破成本、提高增透效果和瓦斯抽采利用率。
為瞭增加煤層透氣性、提高瓦斯抽採效率,選取七檯河礦區進行液態CO2爆破煤層增透工業試驗。研究液態CO2爆破過程中主管內高壓氣體P-T麯線,攷察不同地應力下的液態CO2爆破有效影響半徑和煤層透氣性繫數,鑑測爆破前後瓦斯抽採參數。試驗結果錶明:採用壓縮氣體與水蒸氣容器爆破方法計算液態CO2爆破的噹量為180 gTNT;爆破後瓦斯抽採濃度提高3.16倍,瓦斯抽採混閤流量提高1.71倍;煤層液態CO2爆破有效影響半徑隨地應力的增加近線性減小,隨爆破壓力的增加非線性增加,確定液態CO2爆破時最佳爆破壓力範圍160~280 MPa;爆破前後對比,煤層透氣性繫數提升17.49~22.76倍。井下煤層液態CO2爆破技術的實施,有助于降低爆破成本、提高增透效果和瓦斯抽採利用率。
위료증가매층투기성、제고와사추채효솔,선취칠태하광구진행액태CO2폭파매층증투공업시험。연구액태CO2폭파과정중주관내고압기체P-T곡선,고찰불동지응력하적액태CO2폭파유효영향반경화매층투기성계수,감측폭파전후와사추채삼수。시험결과표명:채용압축기체여수증기용기폭파방법계산액태CO2폭파적당량위180 gTNT;폭파후와사추채농도제고3.16배,와사추채혼합류량제고1.71배;매층액태CO2폭파유효영향반경수지응력적증가근선성감소,수폭파압력적증가비선성증가,학정액태CO2폭파시최가폭파압력범위160~280 MPa;폭파전후대비,매층투기성계수제승17.49~22.76배。정하매층액태CO2폭파기술적실시,유조우강저폭파성본、제고증투효과화와사추채이용솔。
In order to improve coal seam permeability and gas extraction efficiency, the industry experiments on im-proving coal seam permeability by liquid CO2 blasting were conducted in Qitaihe mine area.The P-T curves of high-pressure gas in the main pipe during the liquid CO2 blasting process were studied, then the effective influen-cing radius of blasting and the gas permeability coefficient of coal seam under different ground stresses were investi-gated, and the gas extraction parameters before and after the blasting were monitored.The results showed that the TNT equivalent of liquid CO2 blasting was 180 g calculated by the computational model of compressed air and steam vessel explosion.The gas extraction concentration increased by 3.16 times and extraction mixed flow rate increased by 1.71 times after blasting.The effective influencing radius of liquid CO2 blasting in coal seam decreased linearly with the increase of ground stress, and increased nonlinearly with the increase of blasting pressure.The best range of blasting pressure was determined as 160-280MPa.The gas permeability coefficient of coal seam increased by 17.49-22.76 times after blasting.The implementation of underground liquid CO2 blasting in coal seam helps to re-duce blasting cost and increase the improving permeability effect and gas utilization ratio.