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Characteristics of surface wave Green's function for anisotropic ambient seismic noise field — a case study in Limburg, The Netherlands

机译:各向异性环境地震噪声场表面波绿色功能特征 - 以荷兰林堡的案例研究

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摘要

The Advanced LIGO and the Advanced Virgo gravitational wave (GW) detectors are built on the surface of the earth. Seismic noise being most dominant on the surface limits the low frequency sensitivity of the detectors below 10 Hz. The Einstein Telescope (ET), a European project for constructing a third generation GW detector aims to improve current detector sensitivity by an order of magnitude at frequencies below 10 Hz. One way of reducing the contribution from seismic noise is by building the detector underground. Currently seismic studies are being conducted in Sardinia, Italy and Limburg, The Netherlands, for selecting an appropriate site for constructing the ET. A dense array of 146 wireless vertical component geophones was deployed at Limburg in The Netherlands with the aim of performing passive seismic tomography using the seismic noise in the frequency band 2.5-8.0 Hz. Theoretically for accurate extraction of surface wave Green's function, an isotropic distribution of noise sources surrounding a station pair is desired. However, in reality the distribution of noise sources manifest azimuthal anisotropy and also vary in source magnitude. In this article, we discuss the results of the accuracy of the extracted surface wave Green's function when illuminated by an anisotropic distribution of noise sources. We make use of the method of cross-correlation beamforming to extract station pairs that yield accurate surface waves Green's function and consequently compute the surface wave group velocities for the region.
机译:先进的Ligo和先进的处女座重力波(GW)探测器建在地球表面上。地震噪声在表面上最占主导地位限制了探测器低于10 Hz的低频灵敏度。 Einstein望远镜(ET),一种用于构建第三代GW探测器的欧洲项目旨在通过低于10Hz的频率提高电流检测器灵敏度。通过在地下构建探测器来减少地震噪声贡献的一种方法。目前正在撒丁岛,意大利和荷兰林堡进行地震研究,用于选择适当的部位来构建ET。在荷兰的林堡部署了146个无线垂直分量地震阵的阵列,目的是使用频带2.5-8.0Hz中的地震噪声进行被动地震层析术。理论上,为了精确提取表面波绿色的功能,需要一种围绕驻地对围绕的噪声源的各向同性分布。然而,实际上,噪声源的分布表现出方位角各向异性,并且在源极幅度也各不变化。在本文中,我们在通过噪声源的各向异性分布照射时讨论提取的表面波绿色功能的准确性的结果。我们利用互相关波束成形方法来提取站对,从而产生精确表面波的绿色功能,从而计算该区域的表面波群速度。

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