Scuderi M M, Marone C, Tinti E, Di Stefano G, Collettini C
Dipartimento di Scienze della Terra, La Sapienza Università di Roma, Piaz. Aldo Moro 5, 00185 Rome Italy; Istituto Nazionale di Geofisica e Vulcanologia (INGV), Via di Vigna Murata 605, 00143 Rome Italy.
Department of Geoscience, The Pennsylvania State University, University Park, PA 16802.
Nat Geosci. 2016 Sep;9(9):695-700. doi: 10.1038/ngeo2775. Epub 2016 Aug 8.
Temporal changes in seismic velocity during the earthquake cycle have the potential to illuminate physical processes associated with fault weakening and connections between the range of fault slip behaviors including slow earthquakes, tremor and low frequency earthquakes1. Laboratory and theoretical studies predict changes in seismic velocity prior to earthquake failure2, however tectonic faults fail in a spectrum of modes and little is known about precursors for those modes3. Here we show that precursory changes of wave speed occur in laboratory faults for the complete spectrum of failure modes observed for tectonic faults. We systematically altered the stiffness of the loading system to reproduce the transition from slow to fast stick-slip and monitored ultrasonic wave speed during frictional sliding. We find systematic variations of elastic properties during the seismic cycle for both slow and fast earthquakes indicating similar physical mechanisms during rupture nucleation. Our data show that accelerated fault creep causes reduction of seismic velocity and elastic moduli during the preparatory phase preceding failure, which suggests that real time monitoring of active faults may be a means to detect earthquake precursors.
地震周期中地震波速度的时间变化有可能揭示与断层弱化相关的物理过程,以及包括慢地震、震颤和低频地震在内的断层滑动行为范围之间的联系。实验室和理论研究预测了地震发生前地震波速度的变化,然而构造断层以一系列模式发生破裂,对于这些模式的前兆知之甚少。在此我们表明,在实验室断层中,对于构造断层所观察到的完整破裂模式谱,波速会出现前兆变化。我们系统地改变加载系统的刚度,以重现从慢到快的粘滑转变,并在摩擦滑动过程中监测超声波速度。我们发现,慢地震和快地震在地震周期中弹性性质都有系统变化,这表明在破裂成核过程中有相似的物理机制。我们的数据表明,在破裂前的准备阶段,加速的断层蠕动会导致地震波速度和弹性模量降低,这表明对活动断层进行实时监测可能是检测地震前兆的一种手段。