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Development of an Earthquake Early Warning System Using Real-Time Strong Motion Signals

机译:利用实时强运动信号开发地震预警系统

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As urbanization progresses worldwide, earthquakes pose serious threat to lives and properties for urban areas near major active faults on land or subduction zones offshore. Earthquake Early Warning (EEW) can be a useful tool for reducing earthquake hazards, if the spatial relation between cities and earthquake sources is favorable for such warning and their citizens are properly trained to respond to earthquake warning messages. An EEW system forewarns an urban area of forthcoming strong shaking, normally with a few sec to a few tens of sec of warning time, i.e., before the arrival of the destructive S-wave part of the strong ground motion. Even a few second of advanced warning time will be useful for pre-programmed emergency measures for various critical facilities, such as rapid-transit vehicles and high-speed trains to avoid potential derailment; it will be also useful for orderly shutoff of gas pipelines to minimize fire hazards, controlled shutdown of high-technological manufacturing operations to reduce potential losses, and safe-guarding of computer facilities to avoid loss of vital databases. We explored a practical approach to EEW with the use of a ground-motion period parameter τc and a high-pass filtered vertical displacement amplitude parameter Pd from the initial 3 sec of the P waveforms. At a given site, an earthquake magnitude could be determined from τc and the peak ground-motion velocity (PGV) could be estimated from Pd. In this method, incoming strong motion acceleration signals are recursively converted to ground velocity and displacement. A P-wave trigger is constantly monitored. When a trigger occurs, τc and Pd are computed. The earthquake magnitude and the on-site ground-motion intensity could be estimated and the warning could be issued. In an ideal situation, such warnings would be available within 10 sec of the origin time of a large earthquake whose subsequent ground motion may last for tens of seconds.
机译:随着世界范围内城市化的发展,地震严重威胁着陆地或俯冲带主要活动断层附近城市地区的生命和财产安全。如果城市和地震源之间的空间关系有利于预警,并且他们的公民都经过适当培训以响应地震预警信息,那么地震预警(EEW)可以成为减少地震危害的有用工具。 EEW系统会预告即将发生强烈震动的市区,通常会有几秒到几十秒的警告时间,即在强烈地面运动的破坏性S波部分到达之前。提前几秒钟的预警时间对于各种关键设施(例如快速运输车辆和高速列车)的预先制定的紧急措施将很有用,以避免潜在的脱轨;对于有序关闭天然气管道以最大程度地减少火灾隐患,对高科技制造运营进行有控制的关闭以减少潜在损失以及对计算机设施进行安全防护以避免重要数据库的丢失,这也将很有用。我们使用地震动周期参数τ c 和从P波形的最初3秒起的高通滤波垂直位移幅度参数Pd探索了一种可行的EEW方法。在给定的位置,可以根据τ 确定地震震级,并且可以根据Pd估算地震动峰值速度(PGV)。在这种方法中,将传入的强运动加速度信号递归转换为地面速度和位移。持续监控P波触发器。发生触发时,将计算τ c 和Pd。可以估计地震的震级和现场的地面运动强度,并可以发出警告。在理想情况下,此类警告将在大地震发生后的10秒内发出,随后的地震动可能会持续数十秒。

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