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Crustal heterogeneity around the Nagamachi-Rifu fault, northeastern Japan, as inferred from travel-time tomography

机译:从旅行时间断层扫描法推断,日本东北长町-日府断裂附近的地壳非均质性

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An M=5 earthquake occurred on September 15, 1998, in the Nagamachi-Rifu fault (NRF), northeastern Japan. In the aftermath of this event, many seismograph stations were constructed temporarily around the fault, forming a dense network of stations with a spatial separation of 5 kin. We report here our estimation of the three-dimensional velocity structures of the P and S waves using arrival-time data recorded at these stations with the aim of understanding the heterogeneous structure around the NRF. Low-Velocity and high Poisson's ratio anomalies are imaged in the lower crust beneath the volcanic area, which are probably associated with the partially molten materials conveyed through the upwelling flow in the mantle wedge. A distinct low-velocity anomaly, which is explainable by the existence of H2O-filled pores, is observed in the mid crust at the deeper extension of the NRF. Two low-velocity anomalies that are probably associated with the remnants of magmatic activity that formed the Shirasawa caldera and with the existence of thick late-Cenozoic sedimentary layers are observed at depths shallower than 10 km in the hanging wall of the NRF. Our results successfully characterize the major features of the complex velocity structure around the NRF, with implications for the existence of fluid-rich regions in the mid to lower crust.
机译:1998年9月15日,日本东北部的长町-理府断裂(NRF)发生了M = 5地震。地震发生后,在断层周围临时建造了许多地震台,形成了间隔为5 kin的密集台网。我们在这里报告我们使用记录在这些台站的到达时间数据对P波和S波的三维速度结构的估计,目的是了解NRF周围的非均质结构。低速高泊松比异常出现在火山区下方的下地壳中,这可能与通过地幔楔上升流输送的部分熔融物质有关。在NRF的更深延伸的中地壳中观察到了明显的低速异常,这可以解释为存在H2O填充的孔隙。在NRF的悬挂壁中,在小于10 km的深度观察到了两个低速异常,这可能与形成Shirasawa破火山口的岩浆活动残余有关,并且与厚的新生代沉积层存在有关。我们的结果成功地表征了NRF周围复杂速度结构的主要特征,这暗示着中下地壳富液区的存在。

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