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Magnetic Pulsations Triggered by Microseismic Ground Motion

机译:通过微震磨光运动引发的磁性脉动

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Geomagnetic pulsations with an enhanced amplitude of 0.1-1 nT in a frequency band of 0.1-0.2 Hz were observed by three three-component magnetometers. The geomagnetic pulsations exhibit slight time difference that is unusually observed within a limited area of similar to 5 x 5 km(2) at the northern end of Taiwan. The time difference suggests the geomagnetic pulsations are not dominated by global effects but local ones. We compare the seismic signals recorded by the cosited broadband seismometers for investigating potential mechanisms of these geomagnetic pulsations. Results from analysis of both seismic and geomagnetic data exhibit consistent source azimuths from the Pacific Ocean to the northeast of the observation sites with a wave propagation speed of similar to 2.9 km/s estimated based on P-SV-type microseisms. Polarization and particle motion analyses demonstrate that the geomagnetic pulsations move with an elliptical rotation form, showing a close association with the P-SV-type microseisms. The 90 degrees phase difference between the horizontal and vertical components of the geomagnetic signals suggests that the time-lagged geomagnetic pulsations are possibly caused by the motional induction effect after the arrivals of P-SV-type microseisms.
机译:用三个三分量磁强计观测到在0.1-0.2hz频带内振幅增强为0.1-1nt的地磁脉动。地磁脉动表现出轻微的时差,这在台湾北端类似5×5公里(2)的有限区域内是罕见的。时差表明地磁脉动不是由全球效应控制的,而是由局部效应控制的。我们比较了余弦宽带地震仪记录的地震信号,以研究这些地磁脉动的潜在机制。地震和地磁数据的分析结果显示,从太平洋到观测点东北部的震源方位角一致,根据P-SV型微震估计,波传播速度接近2.9 km/s。极化和粒子运动分析表明,地磁脉动以椭圆旋转形式运动,与P-SV型微震密切相关。地磁信号的水平分量和垂直分量之间的90度相位差表明,滞后的地磁脉动可能是由P-SV型微震到达后的运动感应效应引起的。

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