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Seismotectonics beneath the Tokyo metropolitan area, Japan: Effect of slab-slab contact and overlap on seismicity

机译:日本东京都会区以下的地震构造:平板-平板接触和重叠对地震活动的影响

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We first determine the configuration of the upper surface of the Pacific (PAC) slab beneath Kanto, Japan, from the distribution of interplate earthquakes relocated by an appropriate 1-D velocity model. Then, traveltime tomography is carried out to estimate three-dimensional seismic velocity structures around Kanto using 735,520 P wave and 444,049 S wave arrival times from 6508 local earthquakes. The obtained results suggest that the Philippine Sea (PHS) slab is subducting to depths of 130-140 km without a gap, even to the northwest of the Izu collision zone. We subsequently define the lateral extent of the contact zone between the bottom of the PHS slab and the upper surface of the PAC slab (PHS-PAC interface) and reveal that the slab contact zone underlies a wider area beneath Kanto in harmony with the Kanto plain. The downdip limit of interplate (thrust-type) earthquakes on the PAC slab is deepened by ~30 km locally under the slab contact zone. This deepening is probably caused by a lower-temperature environment in the PAC slab, resulting from the overlap with the PHS slab subducting above and consequent thermal shielding by the PHS slab from the hot mantle wedge. We detect an extremely low-velocity anomaly in the easternmost portion of the PHS slab, which is probably attributable to serpentinization of mantle peridotite. Interplate earthquakes are almost absent along the PHS-PAC interface overlain by the serpentinized mantle in the PHS slab, suggesting that ductile deformation takes place along the interface because of low viscosity of the serpentine.
机译:我们首先根据适当的一维速度模型重新定位的板间地震的分布来确定日本关东下方的太平洋(PAC)平板上表面的构造。然后,进行旅行时间层析成像,以使用来自6508次本地地震的735,520 P波和444,049 S波到达时间估算关东附近的三维地震速度结构。所得结果表明,菲律宾海(PHS)平板正在俯冲到130-140 km的深度而没有间隙,甚至到伊豆碰撞带的西北部。随后,我们定义了PHS平板底部与PAC平板上表面(PHS-PAC界面)之间的接触区的横向范围,并揭示了该平板接触区位于关东下方的更宽区域内,与关东平原一致。 PAC平板上的板间(逆冲型)地震的下倾极限在平板接触带下方局部加深了约30 km。这种加深可能是由于PAC平板中温度较低的环境引起的,这是由于与PHS平板重叠而在上方俯冲而导致PHS平板对热幔楔的热屏蔽。我们在PHS板的最东部检测到一个极低速度的异常,这可能归因于地幔橄榄岩的蛇纹石化。在PHS平板中,蛇形化的地幔覆盖的PHS-PAC界面几乎没有板间地震,这表明由于蛇纹石的粘度较低,沿界面发生了延性变形。

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