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基于跨尺度背景噪声层析成像的雅加达盆地三维浅层剪切波速度结构

3-D shallow shear velocity structure of the Jakarta Basin from transdimensional ambient noise tomography.

作者信息

Ry Rexha Verdhora, Cummins Phil R, Hejrani Babak, Widiyantoro Sri

机构信息

Research School of Earth Sciences, The Australian National University, Canberra ACT 2601, Australia.

Global Geophysics Research Group, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung, Bandung 40132, Indonesia.

出版信息

Geophys J Int. 2023 May 3;234(3):1916-1932. doi: 10.1093/gji/ggad176. eCollection 2023 Sep.

Abstract

Situated on the northern coast of the Indonesian island of Java, Jakarta and its metropolitan area (Greater Jakarta) are subject to significant earthquake hazards from a subduction zone south of Java and nearby active crustal faults. The seismic risk may be even higher because Greater Jakarta resides on a sedimentary basin filled with thick Pliocene-Pleistocene sediments. A comprehensive study of Jakarta Basin's properties and geometry is important for creating robust seismic hazard and risk assessments. The main objective of this study is to develop a 3-D model of Jakarta Basin's shallow shear-wave velocity ( ) structure and improve on previous models that did not cover the basin edge due to the extent of data coverage. Between April and October 2018, we deployed a new temporary seismic network to extend the spatial coverage beyond that of a previous deployment in 2013, and sampled 143 locations through sequential deployments of 30 broad-band sensors covering Jakarta and its adjacent areas. We conducted a 2-stage transdimensional Bayesian inversion of Rayleigh wave phase velocity dispersion curves derived from seismic noise. To begin, we applied tomography and constructed 2-D phase velocity maps for periods 1-5 s. Then, at each point in a regular grid defined on these maps, we invert each dispersion curve into 1-D depth profiles of . Finally, these profiles at gridpoints with ∼2 km spacing are interpolated to form a pseudo-3-D model. Our results reveal the edge of the Pliocene-Pleistocene sediments along the south. Also, we resolve a basement offset across south Jakarta that we suggest may be related to the western extension of the Baribis Fault (alternatively, the West Java Backarc Thrust). We recommend using this 3-D model of the Jakarta Basin for scenario earthquake ground motion simulations. Such simulations would help establish how important it might be to re-assess seismic hazard and risk in Greater Jakarta so that basin resonance and amplification are considered.

摘要

雅加达及其大都市区(大雅加达)位于印度尼西亚爪哇岛的北部海岸,因爪哇岛南部的俯冲带和附近活跃的地壳断层而面临重大地震危险。由于大雅加达位于一个充满上新世 - 更新世厚沉积物的沉积盆地之上,地震风险可能更高。对雅加达盆地的性质和几何形状进行全面研究对于进行可靠的地震危险和风险评估至关重要。本研究的主要目标是建立雅加达盆地浅层剪切波速度( )结构的三维模型,并改进先前因数据覆盖范围而未涵盖盆地边缘的模型。2018年4月至10月期间,我们部署了一个新的临时地震台网,以扩大空间覆盖范围,超出2013年之前的部署范围,并通过依次部署30个覆盖雅加达及其周边地区的宽带传感器,在143个地点进行了采样。我们对从地震噪声中导出的瑞利波相速度频散曲线进行了两阶段的跨维贝叶斯反演。首先,我们应用层析成像技术,构建了1 - 5秒周期的二维相速度图。然后,在这些图上定义的规则网格中的每个点,我们将每条频散曲线反演为 的一维深度剖面。最后,将间距约为2公里的网格点处的这些剖面进行插值,以形成一个伪三维 模型。我们的结果揭示了上新世 - 更新世沉积物在南部的边缘。此外,我们解析出雅加达南部的基底偏移,我们认为这可能与巴里比斯断层(或者西爪哇弧后逆冲断层)的西部延伸有关。我们建议将这个雅加达盆地的三维模型用于情景地震地面运动模拟。这样的模拟将有助于确定重新评估大雅加达的地震危险和风险有多重要,以便考虑盆地共振和放大效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b2c/10173864/ba4717dd0555/ggad176fig1.jpg

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