van der Elst Nicholas J, Delorey Andrew A, Shelly David R, Johnson Paul A
Earthquake Science Center, US Geological Survey, Pasadena, CA 91106;
Geophysics Group, Los Alamos National Laboratory, Los Alamos, NM 87545;
Proc Natl Acad Sci U S A. 2016 Aug 2;113(31):8601-5. doi: 10.1073/pnas.1524316113. Epub 2016 Jul 18.
Earth tides modulate tremor and low-frequency earthquakes (LFEs) on faults in the vicinity of the brittle-ductile (seismic-aseismic) transition. The response to the tidal stress carries otherwise inaccessible information about fault strength and rheology. Here, we analyze the LFE response to the fortnightly tide, which modulates the amplitude of the daily tidal stress over a 14-d cycle. LFE rate is highest during the waxing fortnightly tide, with LFEs most strongly promoted when the daily stress exceeds the previous peak stress by the widest margin. This pattern implies a threshold failure process, with slip initiated when stress exceeds the local fault strength. Variations in sensitivity to the fortnightly modulation may reflect the degree of stress concentration on LFE-producing brittle asperities embedded within an otherwise aseismic fault.
地球潮汐会调制脆性-韧性(地震-无震)过渡带附近断层上的震颤和低频地震(LFEs)。对潮汐应力的响应携带了有关断层强度和流变学的其他难以获取的信息。在这里,我们分析了LFEs对半月潮的响应,半月潮在14天的周期内调制每日潮汐应力的幅度。LFEs发生率在半月潮渐强期间最高,当每日应力超过先前峰值应力的幅度最大时,LFEs受到的促进作用最强。这种模式意味着存在一个阈值破坏过程,当应力超过局部断层强度时就会引发滑动。对半月调制的敏感性变化可能反映了嵌入在无震断层内产生LFEs的脆性凸起上应力集中的程度。