基于同步和异步环境背景噪声成像研究广州地下三维速度结构OA
Three-dimensional Velocity Structure Beneath Guangzhou,China,Derived from Synchronous and Asynchronous Ambient Noise Tomography
广州地处多活动断裂交汇的珠江三角洲北缘,地下结构复杂,地质灾害风险高.为获得高分辨率的地壳剪切波速度结构,本文结合两期临时地震台网与地方永久台站数据,联合同步(C1)与异步(C2)环境噪声互相关方法进行层析成像.C1 方法提取局部台站间射线路径,C2 方法构建跨子阵远距离射线路径,在 1~8 s周期范围内显著提高了路径覆盖与交叉密度.通过多重滤波分析提取频散曲线,采用基于小波稀疏约束的直接反演算法,构建了0~7 km深度内的三维S波速度模型.结果表明,广州-从化断裂(GCF)、瘦狗岭断裂(SF)、广州-三水断裂(SSF)、珠江口断裂(ZJF)等主要断裂与低速异常具有良好的空间对应性,反映出断裂控制下的沉积盆地结构;同时,GCF深部低速异常揭示出其存在构造反转过程.本研究表明,融合 C1 与 C2 的环境噪声成像技术可有效提升城市区域地壳结构成像质量,其结果为广州地区地质灾害防控与资源探测提供关键地球物理依据.
Located at the northern margin of the Pearl River Delta,Guangzhou is characterized by complex subsurface structures resulting from the intersection of multiple active faults,leading to elevated geohazard risks.This study derives a high-resolution crustal shear-wave velocity structure by integrating data from two temporary seismic networks and local permanent stations using a joint ambient noise tomography approach that combines synchronous(C1)and asynchronous(C2)cross-correlation techniques.The C1 method extracts short-range ray paths between local stations,whereas the C2 method constructs long-range paths across sub-arrays,significantly improving both path coverage and crossing density within the 1-8 s period band.Using multiple-filter analysis to extract Rayleigh wave dispersion curves,we employ a wavelet-based,sparsity-constrained direct inversion algorithm to construct a three-dimensional shear-wave velocity model down to 7 km depth.The results reveal pronounced spatial correlations between major faults—including the Guangzhou-Conghua(GCF),Shougouling(SF),Guangzhou-Sanshui(SSF),and Zhujiangkou(ZJF)faults—and distinct low-velocity anomalies,that reflect sedimentary basin structures controlled by fault activity.Furthermore,a prominent deep low-velocity anomaly beneath the GCF suggests an ongoing or past tectonic inversion process.This study demonstrates that the combined application of C1 and C2 ambient-noise tomography significantly enhances the imaging resolution of crustal structures in urban environments,providing crucial geophysical constraints for geohazard assessment and resource exploration in the Guangzhou region.
何家新;孙新蕾;宗健业;祝玉;沈玉松
成都理工大学行星科学国际研究中心,成都 610059||成都理工大学地球物理学院,成都 610059成都理工大学行星科学国际研究中心,成都 610059||成都理工大学地球物理学院,成都 610059||成都理工大学地球勘探与信息技术教育部重点实验室,成都 610059成都理工大学行星科学国际研究中心,成都 610059||成都理工大学地球物理学院,成都 610059成都理工大学行星科学国际研究中心,成都 610059||成都理工大学地球物理学院,成都 610059广东省地震局,广州 510070
天文与地球科学
环境噪声层析成像横波速度同步与异步互相关
ambient noise tomographyshear-wave velocitysynchronous and asynchronous cross-correlation
《CT理论与应用研究》 2026 (4)
663-676,14
国家自然科学基金(地球内核顶部结构的"半球"变化分界面性质(42074059))中国科学院战略性先导B项目(印太交汇区地幔蛇纹石分布与水循环(XDB42020304)).
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