Imaging the 3D basin structure of the Santa Clara Valley by ambient noise tomography

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초록

The seismic velocity structure of sedimentary basins in urban areas is important for seismic hazard assessment. Ambient noise tomography (ANT) was applied to generate a velocity model of the Santa Clara Valley (SCV), one of the major urban sedimentary basins in the USA. A three-dimensional shear-wave velocity model was constructed, including depths of up to 4 km using 5-month and 1-year short-period data recorded by temporary and permanent arrays. Despite the difficulty in using ANT to analyze short-period data, our results allowed us to distinguish two small basins located in the southwestern and northeastern parts of the SCV, which correspond to the Cupertino and Evergreen basins, respectively. The basins cover approximately 25-100 km2 area and have 2.5-3 km of basement depth by assuming shear wave velocity at the basement as 2.5 km/s based on rapid velocity changes of the model. This implies that although only short-term short-period data are available, the ANT can be an appropriate option for constructing velocity models of regional areas with complex structures. Thus, we expect that our data will support the active use of ANT in conjunction with other imaging methods for seismic hazard assessment of urban sedimentary basin areas.

키워드

Ambient noise tomography; Santa Clara Valley; Sedimentary basins; Velocity models; Seismic hazard assessment; FRANCISCO BAY-REGION; SEISMIC VELOCITY STRUCTURE; SEDIMENT-FILLED VALLEYS; 3-DIMENSIONAL V-P; RAYLEIGH-WAVES; HAYWARD FAULT; LOMA-PRIETA; BROAD-BAND; CALIFORNIA; GEOLOGY
제목
Imaging the 3D basin structure of the Santa Clara Valley by ambient noise tomography
저자
Cho, Hyejeong; Lee, Sang-Jun; Kim, Seongryong; Rhie, Junkee; Kang, Tae-Seob
DOI
10.1007/s12303-025-00005-8
발행일
2025-02
유형
Article
저널명
Geosciences Journal
권
29
호
1
페이지
87 ~ 101