Ambient noise tomography of a linear seismic array based on an improved Voronoi tessellation

IF 1.2 4区 地球科学 Q3 Earth and Planetary Sciences Earthquake Science Pub Date : 2023-12-01 DOI:10.1016/j.eqs.2023.10.004
Kun Wang , Weitao Wang , Libo Han , Tingzi Li , Yuan Ling , Jianchao Zhou , Huaiyu Yuan
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Abstract

Ambient noise tomography, when applied to a dense linear seismic array, has the capability to provide detailed insights into the fine velocity structures across diverse tectonic settings. The linear station arrangement naturally generates parallel and concentrated ray paths along the array trend. This unique geometry requires specific optimization of the inversion methodology and model parameterization. The Bayesian-based transdimensional inversion method, characterized by its fully non-linear nature and high degree of freedom in parameter settings, offers a powerful tool for ambient noise inversion. To effectively adapt this method to a linear array layout, we propose a modification to the Voronoi cell tessellation built in the transdimensional method. By introducing spatial priority to the Voronoi kernels, we strategically increased the density of Voronoi cells along the direction of the array. We then applied the modified approach to a linear seismic array in the North China Craton and validated its robustness through phase velocity images and resolution tests. Our improved non-uniform sampling technique in the 2-D model space accelerates convergence while simultaneously enhancing model accuracy. Compared with the conventional damped least-squares method, the proposed algorithm revealed a shear-wave velocity map with notable low-velocity anomalies situated in the middle and lower crust beneath the borders of the Ordos block and its surrounding orogenic belt. Aligned with the crustal structures revealed by receiver function and electrical imaging, our findings indicated that the western and eastern margins of the Ordos block had experienced intensive crustal wedge deformation and re-melting, respectively.

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基于改进Voronoi镶嵌的线性地震阵的环境噪声层析成像
当应用于密集线性地震阵列时,环境噪声层析成像能够提供不同构造背景下精细速度结构的详细信息。线性的站位排列自然地沿着阵列走向产生平行和集中的射线路径。这种独特的几何形状需要对反演方法和模型参数化进行特定的优化。基于贝叶斯的跨维反演方法具有完全非线性和参数设置自由度高的特点,为环境噪声反演提供了有力的工具。为了使该方法有效地适应线性阵列布局,我们提出了对跨维方法中内置的Voronoi细胞镶嵌的修改。通过在Voronoi核中引入空间优先级,我们战略性地增加了Voronoi细胞沿阵列方向的密度。然后,我们将改进的方法应用于华北克拉通的线性地震阵,并通过相速度图像和分辨率测试验证了其鲁棒性。我们改进的二维模型空间非均匀采样技术在提高模型精度的同时加快了收敛速度。与传统的阻尼最小二乘方法相比,该算法得到了位于鄂尔多斯地块及其周围造山带边界下中下地壳低速异常明显的横波速度图。结合接收函数和电成像显示的地壳结构,我们的研究结果表明,鄂尔多斯地块西缘和东缘分别经历了强烈的地壳楔体变形和再融化。
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来源期刊
Earthquake Science
Earthquake Science GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.10
自引率
8.30%
发文量
42
审稿时长
3 months
期刊介绍: Earthquake Science (EQS) aims to publish high-quality, original, peer-reviewed articles on earthquake-related research subjects. It is an English international journal sponsored by the Seismological Society of China and the Institute of Geophysics, China Earthquake Administration. The topics include, but not limited to, the following ● Seismic sources of all kinds. ● Earth structure at all scales. ● Seismotectonics. ● New methods and theoretical seismology. ● Strong ground motion. ● Seismic phenomena of all kinds. ● Seismic hazards, earthquake forecasting and prediction. ● Seismic instrumentation. ● Significant recent or past seismic events. ● Documentation of recent seismic events or important observations. ● Descriptions of field deployments, new methods, and available software tools. The types of manuscripts include the following. There is no length requirement, except for the Short Notes. 【Articles】 Original contributions that have not been published elsewhere. 【Short Notes】 Short papers of recent events or topics that warrant rapid peer reviews and publications. Limited to 4 publication pages. 【Rapid Communications】 Significant contributions that warrant rapid peer reviews and publications. 【Review Articles】Review articles are by invitation only. Please contact the editorial office and editors for possible proposals. 【Toolboxes】 Descriptions of novel numerical methods and associated computer codes. 【Data Products】 Documentation of datasets of various kinds that are interested to the community and available for open access (field data, processed data, synthetic data, or models). 【Opinions】Views on important topics and future directions in earthquake science. 【Comments and Replies】Commentaries on a recently published EQS paper is welcome. The authors of the paper commented will be invited to reply. Both the Comment and the Reply are subject to peer review.
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