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High-resolution Shallow Structure Revealed with Ambient Noise Tomography on a Dense Array

机译:高分辨率浅结构,在密集的阵列上透露了环境噪声断层扫描

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In March 2016, the PoroTomo Team deployed a dense seismic array to image the structure of the Brady Hot Springs geothermal reservoir in Nevada. At this site, a 4 km by 1.5 km elliptical subsidence area was observed by analyzing InSAR images (Ali et al., 2016). The array was composed of 244 short-period, three-component geophones and ~8,600 m of distributed acoustic sensing (DAS) fiber-optic cable installed in surface trenches plus ~350 m installed in a borehole. The geophone array provided about 60 m spatial sampling whereas sampling of the surface DAS was nominally 1 m. The acquisition system provided 15 days of continuous records that were used to calculate noise cross-correlation functions (NCFs). NCF cans be treated as empirical Green's functions and used in ambient noise tomography. The surface wave dispersion curves were obtained from the NCFs between geophones pairs and pairs of DAS channels. The dispersion curves were inverted for shear wave velocity profiles in different locations of the array. A low velocity zone is associated with the area of subsidence obtained from InSAR.
机译:2016年3月,Porotomo团队部署了一种密集的地震阵列,以在内华达州的布拉迪温泉地热水库的结构。在这个网站上,通过分析Insar图像(Ali等,2016),观察到4公里的椭圆局部区段。该阵列由244个短时间,三组分地震孔和〜8,600米的分布式声学传感(DAS)光缆组成,安装在表面沟槽中加〜350米,安装在钻孔中。地震阵列提供约60米的空间采样,而表面DAS的采样标称为1米。采集系统提供了15天的连续记录,用于计算噪声互联功能(NCF)。 NCF罐被视为经验绿色的功能,并用于环境噪声层析术。从地理位音对与DAS通道对之间的NCF获得表面波分散曲线。将分散曲线反转以用于阵列的不同位置处的剪切波速度分布。低速区与从insar获得的沉降区域相关联。

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