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首页> 外文期刊>Geophysical Research Letters >Anomalous low-velocity zone and linear alignment of seismicity along it in the subducted Pacific slab beneath Kanto, Japan: Reactivation of subducted fracture zone?
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Anomalous low-velocity zone and linear alignment of seismicity along it in the subducted Pacific slab beneath Kanto, Japan: Reactivation of subducted fracture zone?

机译:日本关东以下俯冲太平洋板块中的异常低速带及其沿地震活动的线性对准:俯冲断裂带是否重新激活?

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[ 1] A detailed investigation of the hypocenter distribution beneath Kanto, Japan, reveals a NW-SE-trending linear alignment of seismicity within the subducted Pacific slab. We estimate the 3D seismic velocity structure in the Pacific slab to understand the factors controlling the genesis of such intraslab earthquakes. A narrow low-velocity zone is imaged within the subducted slab over a length of similar to 150 km, which partly penetrates into the mantle portion of the slab. The low-velocity zone correlates in space with the NW-SE-trending earthquake cluster. A reactivation of hydrated fracture zone formed prior to subduction is probably related to the low-velocity anomaly. Dehydration reactions of the hydrated oceanic mantle as well as the oceanic crust might lower the seismic velocity along the fossil fracture zone, accompanied by intraslab earthquakes. These observations support the hypothesis of dehydration embrittlement as the most viable mechanism for generating intraslab earthquakes.
机译:[1]对日本关东以下震源分布的详细调查显示,俯冲太平洋板块内地震活动呈西北向东南趋势。我们估计了太平洋板块的3D地震速度结构,以了解控制此类板内地震成因的因素。在俯冲的平板中,一个狭窄的低速区域在类似于150 km的长度上成像,该区域部分穿透了平板的地幔部分。低速带在空间上与西北向东南走向的地震群相关。俯冲之前形成的水合断裂带的重新活化可能与低速异常有关。水合的海洋地幔以及海洋地壳的脱水反应可能会降低沿化石破裂带的地震速度,并伴有平板内地震。这些观察结果支持脱水脆性是产生板内地震最可行机制的假设。

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