Chen Chieh-Hung, Sun Yang-Yi, Zhang Xuemin, Gao Yongxin, Wang Fei, Lin Kai, Tang Chi-Chia, Huang Rong, Xu Rui, Liu Jing, Wang Yali, Chen Cong
Institute of Geophysics and Geomatics, China University of Geosciences, Wuhan, 430074, China.
Institute of Earthquake Forecasting, China Earthquake Administration, Beijing, 100036, China.
Sci Rep. 2022 Aug 26;12(1):14587. doi: 10.1038/s41598-022-18887-1.
A study in the lithosphere, atmosphere and ionosphere (LAI) coupling often troubles scientists due to a certain distance between distinct instruments, which monitor geophysical parameters in different spheres. An instrumental system was established in southwest China (Leshan; LESH) for monitoring vibrations and perturbations in LAI (MVP-LAI). A ground-based Global Navigation Satellite System (GNSS) receiver at the YADU station locates ~ 260 km away that continuously receives electromagnetic signals transmitted from the BeiDou navigation System (BDS) geostationary satellites to monitor the total electron content (TEC) at the ionospheric pierce point right over the MVP-LAI system. The employment of YADU TEC benefits in elimination of possible shaking effects happening on multiple instruments at the LESH station and mitigation the troubles due to the discrepancy in observation places. Through a stacking process on the retrieved data for increase of signal to noise ratios, a novel phenomenon of the resonant LAI coupling at a fundamental mode of ~ 3.4 mHz and its multiples persists in ground vibrations, atmospheric pressure and TEC retrieved from the MVP-LAI system and the YADU station. The retrieved data share frequencies during the operational period of 1.5 months that is irrelevant to obvious events in the lithosphere, atmosphere and ionosphere. The persistence of the resonant LAI coupling is essential in the Earth's system.
由于监测不同圈层地球物理参数的不同仪器之间存在一定距离,岩石圈、大气圈和电离层(LAI)耦合方面的研究常常困扰着科学家们。在中国西南部(乐山;LESH)建立了一个用于监测LAI中的振动和扰动(MVP-LAI)的仪器系统。位于约260公里外的雅都站的一台地基全球导航卫星系统(GNSS)接收机持续接收北斗导航系统(BDS)地球静止卫星发射的电磁信号,以监测MVP-LAI系统正上方电离层穿刺点处的总电子含量(TEC)。使用雅都站的TEC有助于消除LESH站多台仪器可能出现的抖动效应,并减轻观测地点差异带来的麻烦。通过对检索数据进行叠加处理以提高信噪比,在从MVP-LAI系统和雅都站检索到的地面振动、大气压力和TEC中,持续存在一种约3.4毫赫兹基模及其倍数的共振LAI耦合新现象。检索到的数据在1.5个月的运行期内共享频率,这与岩石圈、大气圈和电离层中的明显事件无关。共振LAI耦合的持续存在在地球系统中至关重要。