首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >SAR-revealed slip partitioning on a bending fault plane for the 2014 Northern Nagano earthquake at the northern Itoigawa-Shizuoka tectonic line
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SAR-revealed slip partitioning on a bending fault plane for the 2014 Northern Nagano earthquake at the northern Itoigawa-Shizuoka tectonic line

机译:SAR展示了在北部北部北方静电构造线的北长野地震的弯曲断层平面上滑倒分区

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摘要

By applying conventional cross-track synthetic aperture radar interferometry (InSAR) and multiple aperture InSAR techniques to ALOS-2 data acquired before and after the 2014 Northern Nagano, central Japan, earthquake, a three-dimensional ground displacement field has been successfully mapped. Crustal deformation is concentrated in and around the northern part of the Kamishiro Fault, which is the northernmost section of the Itoigawa-Shizuoka tectonic line. The full picture of the displacement field shows contraction in the northwest-southeast direction, but northeastward movement along the fault strike direction is prevalent in the northeast portion of the fault, which suggests that a strike-slip component is a significant part of the activity of this fault, in addition to a reverse faulting. Clear displacement discontinuities are recognized in the southern part of the source region, which falls just on the previously known Kamishiro Fault trace. We inverted the SAR and GNSS data to construct a slip distribution model; the preferred model of distributed slip on a two-plane fault surface shows a combination of reverse and left-lateral fault motions on a bending east-dipping fault surface with a dip of 30 degrees in the shallow part and 50 degrees in the deeper part. The hypocenter falls just on the estimated deeper fault plane where a left-lateral slip is inferred, whereas in the shallow part, a reverse slip is predominant, which causes surface ruptures on the ground. The slip partitioning may be accounted for by shear stress resulting from a reverse fault slip with left-lateral component at depth, for which a left-lateral slip is suppressed in the shallow part where the reverse slip is inferred. The slip distribution model with a bending fault surface, instead of a single fault plane, produces moment tensor solution with a non-double couple component, which is consistent with the seismically estimated mechanism.
机译:通过将传统的横轨合成孔径雷达干涉测量法(INSAR)和多个孔径INSAR技术应用于2014年北纳戈纳北部,中部地震,地震,地震,三维地位移场之前和多个孔径INSAR技术已经成功映射。卡姆沙洛故障北部的地壳变形集中在北部的北部,这是IToigawa-Shizuoka构造线的最北端。位移场的完整图案显示了西北 - 东南方向的收缩,但沿着故障触摸方向的东北运动在故障的东北部分普遍存在,这表明防滑组件是活动的重要组成部分此故障,除了反向故障之外。清除位移不连续性在源区的南部识别,其刚刚落在先前已知的Kamishiro故障跟踪中。我们倒置了SAR和GNSS数据来构建滑动分配模型;双平面故障表面上的分布式滑动的优选模型显示了弯曲的东倾倾倾倾倾倾倾逆膜上的逆向和左侧故障运动的组合,浅段在浅部分中的30度和更深部分中的50度。该低速度落在估计的更深的断层平面上,其中左侧滑动被推断出来,而在浅部分中,反向滑动是主要的,这导致地面上的表面破裂。滑移分配可以通过剪切应力来占据由倒侧部件处的逆端部件产生的剪切应力,在该浅侧滑动在推断出反向滑动的浅部分中被抑制左侧滑动。具有弯曲故障面的滑动分配模型,而不是单个断层平面,产生具有非双重夫妇组分的力矩张解溶液,这与地震估计的机制一致。

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