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Slab temperature controls on the Tonga double seismic zone and slab mantle dehydration

机译:汤加双地震带的板坯温度控制和板坯地幔脱水

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摘要

Double seismic zones are two-layered distributions of intermediate-depth earthquakes that provide insight into the thermomechanical state of subducting slabs. We present new precise hypocenters of intermediate-depth earthquakes in the Tonga subduction zone obtained using data from local island–based, ocean-bottom, and global seismographs. The results show a downdip compressional upper plane and a downdip tensional lower plane with a separation of about 30 km. The double seismic zone in Tonga extends to a depth of about 300 km, deeper than in any other subduction system. This is due to the lower slab temperatures resulting from faster subduction, as indicated by a global trend toward deeper double seismic zones in colder slabs. In addition, a line of high seismicity in the upper plane is observed at a depth of 160 to 280 km, which shallows southward as the convergence rate decreases. Thermal modeling shows that the earthquakes in this “seismic belt” occur at various pressures but at a nearly constant temperature, highlighting the important role of temperature in triggering intermediate-depth earthquakes. This seismic belt may correspond to regions where the subducting mantle first reaches a temperature of ~500°C, implying that metamorphic dehydration of mantle minerals in the slab provides water to enhance faulting.
机译:双地震带是中深度地震的两层分布,可深入了解俯冲板的热力学状态。我们提供了汤加俯冲带中深度地震的新的精确震源,这些震源是使用本地的基于海岛的,海底的和全球的地震仪获得的。结果表明,下倾压力上平面和下倾张力下平面之间的距离约为30 km。汤加的双重地震带的深度约300公里,比其他任何俯冲系统都深。这是由于更快的俯冲作用导致了较低的板坯温度,这反映了冷板坯向更深的双重地震带发展的全球趋势。另外,在上平面的深度为160至280 km处观察到了一条高地震线,随着收敛速度的降低,该线向南变浅。热模型表明,该“地震带”中的地震发生在各种压力下,但温度几乎保持恒定,突出了温度在触发中深度地震中的重要作用。该地震带可能对应于俯冲地幔首先达到约500°C的温度的区域,这意味着平板中地幔矿物的变质脱水会提供水以增强断层作用。

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