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利用三维地球模型改进台风的地震遥感。

Improving seismic remote sensing of typhoon with a three-dimensional Earth model.

作者信息

Fang Sunke, Lin Jianmin, Ni Sidao, Li Xiaofeng, Xu Xiaoqing, Zheng Hong, Xu Wen

机构信息

Marine Acoustics and Remote Sensing Laboratory, Zhejiang Ocean University, Zhoushan, Zhejiang Province, 316021, People's Republic of China.

Key Laboratory of Ocean Observation-Imaging Testbed of Zhejiang Province, Zhejiang University, Zhoushan, Zhejiang Province, 316021, People's Republic of China.

出版信息

J Acoust Soc Am. 2020 Aug;148(2):478. doi: 10.1121/10.0001624.

Abstract

Typhoon-induced P-wave microseisms can be observed using seismological arrays and analyzed for the seismic monitoring of ocean storms. This paper presents a frequency-domain beamforming (FB) method that integrates a three-dimensional (3-D) Earth model to better capture the heterogeneities in the subsurface structure, and therefore yield more accurate ray-tracing and travel-time predictions. This method is applied to the Super Typhoon Lupit (2009) using seismological array observations from the Northeast China Extended Seismic Array (NECESSArray) and high-sensitivity seismograph network in Japan (Hi-net). The results show that the localized P-wave microseism source regions based on the 3-D model are in better agreement with the theoretical source regions and typhoon centers than those based on a conventional one-dimensional (1-D) model. The significance of using a 3-D model instead of a 1-D model in the FB method is further investigated by comparing the consistency of the localization results for the two different arrays, with the localized source regions being more mutually concordant when using the 3-D model. The results demonstrate that integrating the 3-D model into the FB method improves the accuracy of locating the typhoon-induced P-wave microseism source regions.

摘要

利用地震台阵可以观测到台风引发的P波微震,并对其进行分析以用于海洋风暴的地震监测。本文提出了一种频域波束形成(FB)方法,该方法整合了三维(3-D)地球模型,以更好地捕捉地下结构的不均匀性,从而产生更准确的射线追踪和走时预测。该方法应用于2009年超级台风卢碧,使用了来自中国东北地震台阵(NECESSArray)的地震台阵观测数据和日本高灵敏度地震仪网络(Hi-net)的数据。结果表明,基于三维模型的局部P波微震源区与理论源区和台风中心的一致性比基于传统一维(1-D)模型的更好。通过比较两种不同台阵定位结果的一致性,进一步研究了在FB方法中使用三维模型而非一维模型的意义,使用三维模型时局部源区的相互一致性更高。结果表明,将三维模型整合到FB方法中提高了台风引发的P波微震源区定位的准确性。

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