Tang Xinjian, Sun Tao, Tang Zhijie, Zhou Zenghui, Wei Baoming
State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China.
School of Electric Information, Wuhan University, Wuhan 430072, China.
J Environ Sci (China). 2011 Jun;23 Suppl:S78-83. doi: 10.1016/S1001-0742(11)61083-8.
Tonglushan old mine site located in Huangshi City, China, is very famous in the world. However, some of the ruins had suffered from geological disasters such as local deformation, surface cracking, in recent years. Structural abnormalities of rock-mass in deep underground were surveyed with borehole ground penetrating radar (GPR) to find out whether there were any mined galleries or mined-out areas below the ruins. With both the multiresolution analysis and sub-band directional of Curvelet transform, the feature information of targets' GPR signals were studied on Curvelet transform domain. Heterogeneity of geotechnical media and clutter jamming of complicated background of GPR signals could be conquered well, and the singularity characteristic information of typical rock mass signals could be extracted. Random noise had be removed by thresholding combined with Curvelet and the statistical characteristics of wanted signals and the noise, then direct wave suppression and the spatial distribution feature extraction could obtain a better result by making use of Curvelet transform directional. GprMax numerical modeling and analyzing of the sample data have verified the feasibility and effectiveness of our method. It is important and applicable for the analyzing of the geological structure and the disaster development about the Tonglushan old mine site.
铜绿山古铜矿遗址位于中国黄石市,在世界上非常有名。然而,近年来部分遗址遭受了诸如局部变形、地表开裂等地质灾害。利用钻孔探地雷达(GPR)对深部地下岩体的结构异常进行探测,以查明遗址下方是否存在采空巷道或采空区。通过曲波变换的多分辨率分析和子带方向性,在曲波变换域研究目标GPR信号的特征信息。能很好地克服岩土介质的非均匀性和GPR信号复杂背景的杂波干扰,提取典型岩体信号的奇异性特征信息。结合曲波变换和信号与噪声的统计特性进行阈值处理去除随机噪声,利用曲波变换方向性进行直达波压制和空间分布特征提取能取得较好效果。对样本数据进行GprMax数值建模与分析,验证了该方法的可行性和有效性。这对于分析铜绿山古铜矿遗址的地质结构和灾害发展具有重要意义且具有实用性。