Tonegawa Takashi, Fukao Yoshio, Takahashi Tsutomu, Obana Koichiro, Kodaira Shuichi, Kaneda Yoshiyuki
Research and Development Center for Earthquake and Tsunami, Japan Agency for Marine-Earth Science and Technology, 3173-25, Showa-machi, Kanazawa-ku, Yokohama 236-0001, Japan.
Disaster Mitigation Research Center, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8601, Japan.
Nat Commun. 2015 Jan 30;6:6132. doi: 10.1038/ncomms7132.
Excitations of seismic background noises are mostly related to fluid disturbances in the atmosphere, ocean and the solid Earth. Earthquakes have not been considered as a stationary excitation source because they occur intermittently. Here we report that acoustic-coupled Rayleigh waves (at 0.7-2.0 Hz) travelling in the ocean and marine sediments, retrieved by correlating ambient noise on a hydrophone array deployed through a shallow to deep seafloor (100-4,800 m) across the Nankai Trough, Japan, are incessantly excited by nearby small earthquakes. The observed cross-correlation functions and 2D numerical simulations for wave propagation through a laterally heterogeneous ocean-crust system show that, in a subduction zone, energetic wave sources are located primarily under the seafloor in directions consistent with nearby seismicity, and secondarily in the ocean. Short-period background noise in the ocean-crust system in the Nankai subduction zone is mainly attributed to ocean-acoustic Rayleigh waves of earthquake origin.
地震背景噪声的激发大多与大气、海洋和固体地球中的流体扰动有关。由于地震是间歇性发生的,因此一直未被视为稳定的激发源。在此我们报告,通过对部署在日本南海海槽浅海至深海海底(100 - 4800米)的水听器阵列上的环境噪声进行互相关分析,获取到在海洋和海洋沉积物中传播的声学耦合瑞利波(0.7 - 2.0赫兹),受到附近小地震的持续激发。通过对穿过横向非均匀洋壳系统的波传播进行观测互相关函数和二维数值模拟表明,在俯冲带中,高能波源主要位于海底下方,方向与附近地震活动一致,其次位于海洋中。南海俯冲带洋壳系统中的短周期背景噪声主要归因于地震源产生的海洋声学瑞利波。