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Seismic evidence for thermally-controlled dehydration reaction in subducting oceanic crust

机译:俯冲洋壳热控脱水反应的地震证据

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摘要

We perform travel-time tomography to estimate detailed seismic velocity structures in the crust of the Pacific slab from northeastern (NE) Japan to the Kanto district, Japan, and reveal that the depth extent of the low-velocity (hydrated) oceanic crust varies along the arc. The low-velocity oceanic crust is subducting to depths of 120-150 km beneath Kanto, which is 40-70 km deeper compared to NE Japan. Such deeper preservation of the low-velocity oceanic crust beneath Kanto can be explained by lower-temperature conditions in the Pacific slab as a result of the subduction of the Philippine Sea slab immediately above it. These observations suggest that dehydration reactions accompanied by large velocity changes are controlled principally by temperatures, not by pressures. We also find spatial correspondence between intensive seismicity in the oceanic crust and the disappearance depth of the low-velocity oceanic crust, suggesting that breakdown of hydrous minerals triggers earthquakes in the oceanic crust. Citation: Nakajima, J., Y. Tsuji, and A. Hasegawa (2009), Seismic evidence for thermally-controlled dehydration reaction in subducting oceanic crust, Geophys.
机译:我们进行旅行时层析成像以估计从日本东北(NE)到日本关东地区的太平洋板壳的详细地震速度结构,并揭示出低速(水化)洋壳的深度范围随弧线。低速洋壳俯冲至关东下方120-150 km,比日本东北部深40-70 km。关东下方低速洋壳的这种更深层的保存可以用太平洋板块的低温条件来解释,这是由于其上方的菲律宾海板块被俯冲所致。这些观察结果表明,伴随着大的速度变化的脱水反应主要由温度而不是压力控制。我们还发现大洋地壳的强烈地震活动与低速大洋地壳的消失深度之间存在空间对应关系,这表明含水矿物的破裂会触发大洋地壳中的地震。引文:Nakajima,J.,Y。Tsuji和A. Hasegawa(2009),俯冲大洋地壳中热控脱水反应的地震证据,Geophys。

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