1923 年日本关东大地震引发的山体滑坡的空间分布分析

Ryo ENDO, Junko IWAHASHI
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摘要

据报道,1923 年 9 月 1 日发生在日本关东地区南部的关东大地震引发了大量滑坡(在 86.32 平方公里的面积上发生了 89 080 多处斜坡崩塌)。本研究调查了此次地震引发的滑坡与地貌、地质、土壤、地震地面运动和共震变形之间的关系。我们发现,较高的滑坡密度主要与较大的绝对曲率和较高的坡角以及几个地质单元(新元古代深成岩、增生棱岩和变质岩)有关。此外,我们还进行了决策树分析,结果表明坡角、地质和同震变形依次与滑坡密度相关。然而,在滑坡密度与地震地面运动之间没有发现明显的相关性。这些结果表明,在强震动足以引发滑坡的地区,坡角大或地质脆弱的地区滑坡密度更大。
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Analysis of the spatial distribution of the landslides triggered by the 1923 Great Kanto Earthquake, Japan

The Great Kanto Earthquake that occurred in the southern part of Kanto district, Japan, on September 1, 1923, was reported to have triggered numerous landslides (over 89,080 slope failures over an area of 86.32 km2). This study investigated the relationship between the landslide occurrence caused by this earthquake and geomorphology, geology, soil, seismic ground motion, and coseismic deformation. We found that a higher landslide density was mainly related to a larger absolute curvature and a higher slope angle, as well as to several geological units (Neogene plutonic rock, accretionary prism, and metamorphic rocks). Moreover, we performed decision tree analyses, which showed that slope angle, geology, and coseismic deformation were correlated to landslide density in that order. However, no clear correlation was found between landslide density and seismic ground motion. These results suggest that landslide density was greater in areas of large slope angle or fragile geology in the area with strong shaking enough to trigger landslides.

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