首页> 外文期刊>Physics and chemistry of the earth, Part C. Solar-terrestrial and planetary science >The Low-Frequency Seismic Signal Foregoing a Main Shock as a Sign of the Last Stage of Earthquake Preparation or Preliminary Rupture
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The Low-Frequency Seismic Signal Foregoing a Main Shock as a Sign of the Last Stage of Earthquake Preparation or Preliminary Rupture

机译:低频地震信号放弃了主震反应,标志着地震准备或初步破裂的最后阶段

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The existance of low-frequency foregoing signals (LFFS) just before the main shock was described by Ihmle and Jordan (1991, 1993, 1994), Brevdo (1998), Levin and Sassorova (1994, 1995, 2000), Umeda (1999). The LFFS may be considered as a local sign of the last stage of the earthquake preparation or as a signal of the preliminary rupture process which preceded the main shock. These signals have a period from 3 to 200 s and forecast time before P-wave arrival in area from 5s to 1.5 hours. The LFFS were detected only for the events with epicenter distance no more than 1000 km. The LFFS parameters depend on the regional characteristics (the oscillator size, features of the environment, structure of the Earth crust). The LFFS properties connected with the same region, such as a period, foregoing time duration, signal structure vary insignificantly. The classification of the foregoing signals was proposed and the connection between the signal type, and the event localization was noted. It was shown that faint seismic signals radiated from an earthquake source and acoustic signals preceded a rupture in laboratory experiments can be written by common empirical relationship (the dependence of the period of radiated waves on the size of oscillation zone). The dispersion law for the signal emitted by the destruction source area is suggested, based on the laboratory experiments and field observations.
机译:Ihmle和Jordan(1991、1993、1994),Brevdo(1998),Levin和Sassorova(1994、1995、2000),梅田(1999)描述了主震之前的低频前述信号(LFFS)的存在。 。 LFFS可以看作是地震准备工作的最后阶段的局部信号,也可以看作是主震之前的初步破裂过程的信号。这些信号的周期为3到200 s,在P波到达该区域之前的预测时间为5 s至1.5个小时。仅在震中距离不超过1000 km的事件中才检测到LFFS。 LFFS参数取决于区域特征(振荡器大小,环境特征,地壳结构)。与相同区域相连的LFFS属性,例如周期,上述持续时间,信号结构,变化不大。提出了上述信号的分类,并指出了信号类型与事件定位之间的联系。结果表明,在实验室实验中,从地震源发出的微弱地震信号和破裂之前的声音信号可以通过共同的经验关系来表示(辐射波的周期与振荡区的大小有关)。根据实验室实验和现场观察,提出了由破坏源区域发出的信号的色散定律。

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