地层条件下煤层顶、底板声波速度与反射特征
详细信息 本馆镜像全文    |  推荐本文 | | 获取馆网全文
摘要
采取淮南矿区主采煤层13-1煤及其顶、底板典型泥岩与砂质泥岩样品,通过改变温度与压力来模拟地层条件,测试获得煤岩层声波速度随深度(400~1 200 m)的变化,并分析不同深度下煤层顶、底板反射系数与入射角的变化关系.结果表明:煤岩层声波速度随深度增加而增大,且具有较好的对数相关性;煤层顶、底板反射系数不仅随入射角变化而变化,而且受煤层埋深和顶、底板岩性变化的影响,随着煤层埋深增加,其顶、底板反射系数绝对值均减小,煤层顶、底板岩石波阻抗差异越大,反射系数越大,因此,在进行煤田或矿井地震勘探设计与资料处理时,应综合考虑勘探区内煤层顶、底板岩性分布与赋存深度变化,以便有效地利用顶、底板反射P-P波和P-S波AVO信息来解决诸多矿井地质条件精细探测问题.
Typical roof and floor mudstone and sandy mudstone were sampled from the No.13-1 coal seam in Huainan mining area and acoustic velocity were tested under the formation conditions by changing temperature and pressure with the depth(400~1 200 m).Also,the relationship between reflection coefficients and the changes of incident angles in coal roof and floor with different depths were analyzed.The results show that acoustic velocity of coal and rock strata increases with depths and have good logarithm correlation.The reflection coefficients of roof and floor are not only changed with the incident angles,but also are effected by the depths and the lithology of coal roof and floor.With increasing buried depths of coal seam,the absolute values of reflection coefficients all decrease.When wave impedance difference of coal roof and floor is bigger,its reflection coefficients are bigger.Therefore,lithologic distribution and depth of coal roof and floor should be comprehensively considered in order to use AVO information of reflective P-P wave and P-S wave to solve the detailed detection problems under lots of geological conditions of coal mine in exploration areas when the design of coal seismic prospecting and data processing are made.
引文
[1]史謌,沈联蒂,王建新.岩石声波压实效应的实验研究[J].北京大学学报(自然科学版),2004,40(2):177-183.Shi Ge,Shen Liandi,Wang Jianxin.Study on compaction effect of rock sonic wave[J].Acta Scientiarum Naturalium Univer-sitatis Pekinensis,2004,40(2):177-183.
    [2]史謌,杨东全.上覆压力变化时孔隙岩层弹性波速度的确定及其普遍意义[J].中国科学(D辑),2001,31(11):896-901.Shi Ge,Yang Dongquan.Determination of elastic wave velocities in pore rock and universal significance when overburden pres-sure change[J].Science in China(Series D),2001,31(11):896-901.
    [3]孟召平,张吉昌,Joachim Tiedemann.煤系岩石物理力学参数与声波速度之间的关系[J].地球物理学报,2006,49(5):1 505-1 510.Meng Zhaoping,Zhang Jichang,Joachim Tiedemann.Relationship between physical and mechanical parameters and acousticwave velocity of coal measures rocks[J].Chinese Journal of Geophysics,2006,49(5):1 505-1 510.
    [4]孟召平,李明生,陆鹏庆,等.深部温度、压力条件及其对砂岩岩石力学性质的影响[J].岩石力学与工程学报,2006,25(6):1 177-1 181.Meng Zhaoping,Li Mingsheng,Lu Pengqing,et al.Temperature and pressure under deep conditions and their influences onmechanical properties of sandstone[J].Chinese Journal of Rock Mechanics and Engineering,2006,25(6):1 177-1 181.
    [5]张慎河.采动岩体声波速度特征实验研究[D].北京:中国矿业大学(北京),2004.Zhang Shenhe.Experimental study on characteristics of acoustic velocity in mining rock mass[D].Beijing:China Universityof Mining and Technology(Beijing),2004.
    [6]彭苏萍,高云峰,彭晓波.淮南煤田含煤地层岩石物性参数研究[J].煤炭学报,2004,29(4):177-181.Peng Suping,Gao Yunfeng,Peng Xiaobo.Study on the rock physic parameters of coal bearing strata in Huainan coalfield[J].Journal of China Coal Society,2004,29(4):177-181.
    [7]董守华.地震资料煤层横向预测与评价方法[M].徐州:中国矿业大学出版社,2004.Dong Shouhua.Lateral prediction and evaluation method by seismic data in coal field[M].Xuzhou:China University ofMining and Technology Press,2004.
    [8]刘钦甫,刘衡秋,彭苏萍,等.淮南煤田13-1煤层顶板地质特征与稳定性研究[J].煤炭学报,2004,29(3):318-322.Liu Qinfu,Liu Hengqiu,Peng Suping,et al.The roof geological features and stability of coal-bed No.13-1 in Huainan coal-field[J].Journal of China Coal Society,2004,29(3):318-322.
    [9]刘衡秋,刘钦甫,张景飞.淮南煤田开采条件及其综采适应性评价研究[J].煤炭科学技术,2004,32(4):50-54.Liu Hengqiu,Liu Qinfu,Zhang Jingfei.Evaluation study on coal mining conditions and fully mechanized mining suitability ofHuainan coal field[J].Coal Science and Technology,2004,32(4):50-54.
    [10]苏永荣,张启国.淮南煤田潘谢矿区地温状况初步分析[J].安徽地质,2000,10(2):124-129.Su Yongrong,Zhang Qiguo.Preliminary analysis of the geotemperature situation of the Panxie Mine in Huainan coalfield[J].Geology of Anhui,2000,10(2):124-129.

版权所有:© 2023 中国地质图书馆 中国地质调查局地学文献中心