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Existence of low-velocity zones under the source areas of the 2004 Chuetsu and 2007 Chuetsu-oki earthquakes inferred from travel-time tomography

机译:根据旅行时间断层扫描推断的2004年Chuetsu和2007年Chuetsu-oki地震震源区的低速带的存在

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Travel-time tomography reveals the presence of highly heterogeneous seismic velocity structures around the source areas of the 2004 Chuetsu and 2007 Chuetsu-oki earthquakes. A prominent low-velocity zone present below the Moho under the source areas of the two events is probably formed by fluids being conveyed through a small-scale upwelling in the mantle wedge. A low-velocity zone distributed in the lower crust below each source area is attributable to fluids supplied from the uppermost mantle to the source area. Since this region with these two Source areas is exceptional in that the low-velocity zone is distributed in the uppermost mantle but no Quaternary volcanoes are formed at the surface, a relatively large amount Of fluids may be stored below the source areas. These localized fluids may have reduced the strength in the lower crust as well as in the fault zones in the upper crust and, consequently, have promoted a brittle failure in the seismogenic layer. Relocated hypocenters of aftershocks of the two events become several kilometers shallower than the original locations determined by the Japan Meteorological Agency, suggesting the importance of using the three-dimensional velocity model in locating the hypocenter.
机译:行进时间层析成像揭示了2004年中越地震源和2007年中越冲木地震震源周围高度不均匀的地震速度结构。在这两个事件的源区之下,在莫霍面以下的一个显着的低速带可能是由流体通过地幔楔的小规模上升流输送形成的。分布在每个源区下方的下部地壳中的低速带归因于从最上层地幔向源区供应的流体。由于具有这两个源区的区域是例外的,因为低速区分布在最上层的地幔中,但在地表上没有形成第四纪火山,因此可能在源区下方存储了相对大量的流体。这些局部的流体可能降低了下地壳以及上地壳断层带的强度,因此导致了地震发生层的脆性破坏。与日本气象厅确定的原始位置相比,两次地震余震的重震中心变浅了几公里,这表明使用三维速度模型定位震源的重要性。

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