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岩浆超压在抑制地震和地形形成中的作用:全球实例。

The role of magma overpressure in suppressing earthquakes and topography: worldwide examples.

出版信息

Science. 1991 Sep 20;253(5026):1399-402. doi: 10.1126/science.253.5026.1399.

Abstract

In an extending terrane basaltic magma supplied at a pressure greater than the least principal stress (overpressure) may be capable of suppressing normal faulting and the earthquakes and topographic relief that commonly accompany normal faulting. As vertical dikes intrude, they press against their walls in the direction opposite the least principal stress and increase its magnitude. The emplacement of tabular intrusions causes the internal magma pressure to act selectively in opposition to tectonic stresses. This process tends to equalize the stresses and thus diminishes the deviatoric stress (difference between maximum and minimum stresses) that creates faults and causes earthquakes. Observations of the pattern of seismicity and magmatism worldwide indicate that magmatism commonly supplants large earthquakes as the primary mechanism for accommodating tectonic extension. Recognizing the extent of magmatic stress accommodation is important in assessing seismic and volcanic risks.

摘要

在伸展环境中,当基性岩浆的压力大于最小主应力(超压)时,可能会抑制正断层的形成以及通常伴随正断层的地震和地形抬升。当垂直岩脉侵入时,它们会沿着与最小主应力相反的方向挤压其围岩,并增大最小主应力的大小。板状侵入体的就位使得内部岩浆压力选择性地作用于构造应力。这个过程趋向于均衡这些应力,从而减小产生断层和地震的偏差应力(最大和最小应力之间的差异)。对全球地震活动和岩浆活动模式的观测表明,岩浆活动通常取代大地震,成为适应构造伸展的主要机制。认识到岩浆应力的容纳程度对于评估地震和火山风险非常重要。

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