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Ambient seismic noise tomography and structure of eastern North America

机译:北美东部的环境地震噪声层析成像和结构

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The time derivative of cross-correlation functions (CCF) of ambient noise fields recorded by two stations can be approximated as the Green's Function (GF) between the stations. The CCFs are thus used as Peudo-GFs (dominated by surface waves) to invert for group velocity structure in eastern North America. Stations from two regional networks deployed to monitor the New Madrid Seismic Zone and eastern Tennessee seismic zone, together with stations of the US National Seismic Network, greatly improve tomographic ray coverage. The short period (T = 5 s) group velocity map shows strong correlations with the depth to Precambrian basement. Many subtle local structures can be clearly identified from the velocity map, including the Ozark uplift, Cincinnati Arch, Nashville Dome and the Blue Ridge province of the Appalachians showing relatively high group velocity. The long period (T = 15 s) group velocity map shows strong correlations with regional geology. Ancient rift basins, such as the Mid-Continent Rift (MCR) system, the Reelfoot rift, the Oklahoma Aulacogen and the Eastern Continent Rift, are associated with low velocity belts along their rift axes. We also find that all major seismic zones in eastern North America, such as the New Madrid seismic zone, Eastern Tennessee seismic zone as well as Ouachita Orogen seismic zone, are approximately located at transition zones separating velocity highs and lows. This observation suggests that those seismic zones may reflect the reactivation of ancient faults associated with continental rift and collision zones.
机译:两个站点记录的环境噪声场的互相关函数(CCF)的时间导数可以近似为站点之间的格林函数(GF)。因此,CCF用作Peudo-GF(以表面波为主)来反演北美东部的群速度结构。来自两个用于监测新马德里地震带和田纳西州东部地震带的区域网络的站,以及美国国家地震网络的站,极大地改善了层析射线的覆盖范围。短期(T = 5 s)群速度图显示了与前寒武纪基底深度的强烈相关性。从速度图中可以清楚地识别出许多细微的局部结构,包括Ozark隆起,辛辛那提拱门,纳什维尔圆顶和阿巴拉契亚山脉的蓝岭省,它们表现出较高的群速度。长期(T = 15 s)的群速度图显示出与区域地质的强相关性。古老的裂谷盆地,例如中陆裂谷(MCR)系统,Reelfoot裂谷,俄克拉荷马州尤拉根根和东部大陆裂谷,均沿其裂谷轴系有低速带。我们还发现,北美东部的所有主要地震带,例如新马德里地震带,田纳西东部地震带以及瓦希托造山带地震带,都大致位于将速度高低分开的过渡带。这一发现表明,这些地震带可能反映了与大陆裂谷和碰撞带有关的古代断层的重新活化。

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