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Hydrologically-driven crustal stresses and seismicity in the New Madrid Seismic Zone

机译:新马德里地震带的水文地质应力和地震活动

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摘要

The degree to which short-term non-tectonic processes, either natural and anthropogenic, influence the occurrence of earthquakes in active tectonic settings or ‘stable’ plate interiors, remains a subject of debate. Recent work in plate-boundary regions demonstrates the capacity for long-wavelength changes in continental water storage to produce observable surface deformation, induce crustal stresses and modulate seismicity rates. Here we show that a significant variation in the rate of microearthquakes in the intraplate New Madrid Seismic Zone at annual and multi-annual timescales coincides with hydrological loading in the upper Mississippi embayment. We demonstrate that this loading, which results in geodetically observed surface deformation, induces stresses within the lithosphere that, although of small amplitude, modulate the ongoing seismicity of the New Madrid region. Correspondence between surface deformation, hydrological loading and seismicity rates at both annual and multi-annual timescales indicates that seismicity variations are the direct result of elastic stresses induced by the water load.
机译:短期的非构造过程(自然的和人为的)对活动构造环境或“稳定”的板块内部地震发生的影响程度仍是一个争论的话题。板块边界区域的最新研究表明,大陆性储水中长波变化的能力能够产生可观测的表面变形,诱发地壳应力并调节地震活动率。在这里,我们表明,在每年和多年的时间尺度内,新马德里板块内板块微地震发生率的显着变化与密西西比河上游上游水文负荷一致。我们证明,这种载荷导致大地测量的表面变形,在岩石圈内引起应力,尽管振幅很小,但可以调节新马德里地区正在进行的地震活动。在年尺度和多年尺度上,地表变形,水文负荷和地震活动率之间的对应关系表明,地震活动性变化是由水负荷引起的弹性应力的直接结果。

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