Local station correlation: large N-arrays and DAS

Brian Kennett, Chengxin Jiang, Krystyna Smolinski
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Abstract

The use of cross-correlation between seismic stations has had widespread applications particularly in the exploitation of ambient seismic noise. We here show how the effects of a non-ideal noise distribution can be understood by looking directly at correlation properties and show how the behaviour can be readily visualised for both seismometer and DAS configurations, taking into account directivity effects. For sources lying in a relatively narrow cone around the extension of the inter-station path, the dispersion properties of the correlation relate directly to the zone between the stations. We illustrate the successful use of correlation analysis for both a large-N array perpendicular to a major highway and DAS cable along a busy road. For correlation work, the co-array consisting of the ensemble of inter-station vectors provides an effective means of assessing the behaviour of array layouts, supplementing the standard plane-wave array response. When combined with knowledge of the suitable correlation zones for noise sources, the co-array concept provides a useful way to design array configurations for both seismometer arrays and DAS.
本地站相关性:大n阵列和DAS
地震台站间相互关的应用已经得到了广泛的应用,特别是在环境地震噪声的开发中。我们在这里展示了如何通过直接观察相关特性来理解非理想噪声分布的影响,并展示了考虑到指向性效应,地震仪和DAS配置的行为如何容易地可视化。对于位于站间路径延伸附近相对狭窄的锥内的源,相关的色散特性与站间的区域直接相关。我们举例说明了对垂直于主要高速公路的大n阵列和沿繁忙道路的DAS电缆成功使用相关分析。对于相关工作,由站间矢量集合组成的共阵提供了评估阵列布局行为的有效手段,补充了标准平面波阵列响应。当与噪声源的适当相关区域的知识相结合时,共阵概念为地震仪阵列和DAS的阵列配置设计提供了一种有用的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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