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首页> 外文期刊>Gondwana research: international geoscience journal >Tomographic imaging of hydrated crust and mantle in the subducting Pacific slab beneath Hokkaido, Japan: Evidence for dehydration embrittlement as a cause of intraslab earthquakes
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Tomographic imaging of hydrated crust and mantle in the subducting Pacific slab beneath Hokkaido, Japan: Evidence for dehydration embrittlement as a cause of intraslab earthquakes

机译:日本北海道下方俯冲太平洋板块中水合壳和地幔的断层成像:由于板内地震而引起的脆性脱水

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摘要

We estimate detailed three-dimensional seismic velocity structures in the subducting Pacific slab beneath Hokkaido, Japan, using a large number of arrival-time data from 6902 local earthquakes. A remarkable low-velocity layer with a thickness of similar to 10 km is imaged at the uppermost part of the slab and is interpreted as hydrated oceanic crust. The layer gradually disappears at depths of 70-80 km, suggesting the breakdown of hydrous minerals there. We find prominent low-velocity anomalies along the lower plane of the double seismic zone and above the aftershock area of the 1993 Kushiro-oki earthquake (M7.8). Since seismic velocities of unmetamorphosed peridotite are much higher than the observations. hydrous minerals are expected to exist in the lower plane as well as the hypocentral area of the 1993 earthquake. On the other hand, regions between the upper and lower planes, where seismic activity is not so high compared to the both planes, show relatively high velocities comparable to those of unmetamorphosed peridotite. Our observations suggest that intermediate-depth earthquakes occur mainly in regions with hydrous minerals, which support dehydration embrittlement hypothesis as a cause of earthquake in the subducting slab.
机译:我们使用来自6902场当地地震的大量到达时间数据,估算了日本北海道以下俯冲太平洋板块中详细的三维地震速度结构。一块厚约10 km的低速低层成像在板的最上部,被解释为水化的地壳。该层在70-80 km的深度处逐渐消失,表明那里的含水矿物分解。我们在双重地震带的下平面和1993年Ku路-冲木地震(M7.8)的余震区上方发现了明显的低速异常。由于未变质橄榄岩的地震速度远高于观测结果。含水矿物预计将存在于1993年地震的下平面以及震中区域。另一方面,上,下平面之间的区域,与两个平面相比,地震活动性都不高,与未变质的橄榄岩相比,具有较高的速度。我们的观察结果表明,中深度地震主要发生在含水矿物质的地区,这些地区支持脱水脆化假说是俯冲板中地震的原因。

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