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Postseismic deformation following the 2016 Kumamoto earthquake detected by ALOS-2/PALSAR-2

机译:由Alos-2 / Palsar-2检测到2016年熊球地震后发后变形

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摘要

Abstract I have been conducting a study of postseismic deformation following the 2016 Kumamoto earthquake using ALOS-2/PALSAR-2 acquired till 2018. I apply ionospheric correction to interferograms of ALOS-2/PALSAR-2. L-band SAR gives us high coherence enough to reveal surface deformation even in vegetated or mountainous area for pairs of images acquired more than 2 years. Postseismic deformation following the Kumamoto earthquake exceeds 10 cm during 2 years at some spots in and around Kumamoto city and Aso caldera. Westward motion of ~ 6 cm/year was dominant on the southeast side of the Hinagu fault, while westward shift was detected on both sides of the Futagawa fault. The area of latter deformation seems to have correlation with distribution of pyroclastic flow deposits. Significant uplift was found around the eastern Futagawa fault and on the southwestern frank of Aso caldera, whose rate reaches 4 cm/year. There are sharp changes across several coseismic surface ruptures such as Futagawa, Hinagu, and Idenokuchi faults. Rapid subsidence between Futagawa and Idenokuchi faults also found. It is confirmed that local subsidence continued along the Suizenji fault, which newly appeared during the mainshock in Kumamoto City. Subsidence with westward shift of up to 4 cm/year was also found in Aso caldera. Time constant of postseismic decay ranges from 1 month to 600 days at selected points, but that postseismic deformation during the first epochs or two is dominant at point in the Kumamoto Plain. This result suggests multiple source of deformation. Westward motion around the Hinagu fault may be explained with right lateral afterslip on the shallow part of this fault. Subsidence along the Suizenji fault can be attributed to normal faulting on dipping westward. Deformation around the Hinagu and Idenokuchi faults cannot be explained with right lateral afterslip of Futagawa fault, which requires other sources. Deformation in northern part of Aso caldera might be the result of right lateral afterslip on a possible buried fault.
机译:摘要我一直在2016年熊球地震之后使用Alos-2 / Palsar-2在2018年之前进行了分后变形。我将电离层校正施加到Alos-2 / Palsar-2的干扰图。 L频段SAR使我们足够高的连贯性,即使在超过2年的图像成对的图像中也能露出表面变形。在熊本市及其周围地区的熊本市后熊本地震后熊球地震后的经后变形超过10厘米。向西6厘米/年的举动在辛基遗址的东南部占据主导地位,而福切川故障两侧检测到向西转移。后一种变形面积似乎具有与吡焦流量沉积物的分布相关的相关性。在东部Futagawa断层和亚欧火山岛西南部的弗兰克·弗兰克(Aso Caldera)的速度达到了4厘米/年。几个电影表面破裂的变化急剧变化,如福牌,欣朗和idenokuchi断层。 Futagawa和Idenokuchi断层的迅速沉降也发现。证实,当地沉降沿着Suizenji断层持续,这在熊本市的主席期间新出现了。在ASO Caldera也发现了在ASO Caldera的沉降最多4厘米/年。后期衰减的时间常数在选定点的1个月至600天范围内,但是在第一个时期或两者期间的后近变形在熊本平原的点处于显着。该结果表明多个变形源。 Hinagu故障周围的向西运动可以在这个故障的浅层上用右侧横向缺点解释。沿着Suizenji Fault的沉降可以归因于向西浸的正常断层。在福切故障的右侧横向余量中无法解释Hinagu和Idenokuchi故障周围的变形,这需要其他来源。 ASO Caldera北部的变形可能是可能埋地断层的右侧止损的结果。

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  • 作者

    Manabu Hashimoto;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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