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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Empirical Green's Function Retrieval Using Ambient Noise Source-Receiver Interferometry
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Empirical Green's Function Retrieval Using Ambient Noise Source-Receiver Interferometry

机译:经验绿色的功能检索使用环境噪声源 - 接收器干涉测量

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Empirical Green's function (EGF) retrieval commonly relies on cross-correlating the long-term ambient seismic wavefield that is simultaneously recorded at multiple stations. Recent studies have demonstrated observationally that cross-correlating the coda of ambient noise cross-correlation functions enables reconstruction of the EGFs, regardless of the operating time of the stations. In this study, we examine the feasibility of using the nondiffuse energy (i.e., surface waves) of the ambient noise cross-correlation functions to retrieve EGFs between asynchronous stations. We show that source-receiver interferometry (SRI), which is conventionally applied to reconstruct virtual seismograms between earthquake-station pairs, provides an effective framework to retrieve EGFs between asynchronous stations. Our implementation of SRI exploits the nondiffuse wavefield rather than the scattered coda waves that may be contaminated by incoherent energy under nonideal (e.g., sparse, noisy, and short-duration) network configurations. We demonstrate the robustness of SRI by retrieving asynchronous EGFs and performing seismic tomography between (1) nearby stations and (2) distant temporary arrays from southern Australia. The additional raypaths from asynchronous EGFs provide better illumination of small-scale crustal structures beneath the regional network. In the larger-scale example, involving two asynchronous arrays, SRI offers new constraints to the sparsely sampled region along the continental margin of southern Australia. The resulting velocity model agrees well with the independent structural constraints from each seismic array study and sedimentary thickness measurements. This study demonstrates that SRI is a promising tool for integrating seismic arrays operated at different times and can greatly benefit the efforts of improving data coverage and resolution in seismic imaging.
机译:经验绿色的功能(EGF)检索通常依赖于交叉相关的长期环境地震波场,其同时在多个站点记录。最近的研究已经显着地证明了环境噪声互相关函数的CODA可以实现EGF的重建,而不管站的操作时间。在这项研究中,我们研究了使用环境噪声互相关功能的Nondiffuse能量(即,表面波)来检索异步站之间的EGF的可行性。我们示出了源 - 接收器干涉测量(SRI),其传统上应用于在地震站对之间重构虚拟地震图,提供了一种有效的框架来检索异步站之间的EGF。我们的SRI实施利用了Nondiffuse波场而不是散射的CoDa波,该波浪可能因非缺陷(例如,稀疏,嘈杂和短期和短期)网络配置而受到不连贯的能量污染的。我们通过检索异步EGFS和在附近的站点和(2)南部南部的遥远临时阵列之间的异步EGF和执行地震断层扫描来展示SRI的稳健性。异步EGFS的额外射线路径可提供区域网络下方的小型地壳结构的更好照明。在涉及两个异步阵列的较大规模示例中,SRI沿着澳大利亚南部的大陆边缘对稀疏的采样区域提供了新的限制。由此产生的速度模型与来自每个地震阵列研究和沉积厚度测量的独立结构约束吻合。本研究表明,SRI是用于整合在不同时间运行的地震阵列的有希望的工具,并且可以大大利益改善地震成像中数据覆盖和分辨率的努力。

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